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<?xml-stylesheet type="text/xsl" media="screen" href="/~d/styles/atom10full.xsl"?><?xml-stylesheet type="text/css" media="screen" href="http://feeds.feedburner.com/~d/styles/itemcontent.css"?><feed xmlns="http://www.w3.org/2005/Atom" xmlns:openSearch="http://a9.com/-/spec/opensearch/1.1/" xmlns:georss="http://www.georss.org/georss" xmlns:gd="http://schemas.google.com/g/2005" xmlns:thr="http://purl.org/syndication/thread/1.0" xmlns:feedburner="http://rssnamespace.org/feedburner/ext/1.0" gd:etag="W/&quot;CUIEQXc9fSp7ImA9WhRVF04.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811</id><updated>2012-01-16T15:05:00.965-02:00</updated><category term="Apresentações" /><category term="Princípio das Incertezas" /><category term="laser" /><category term="Capítulo III" /><category term="Espectro Atômico" /><category term="massa de papel" /><category term="Interferência" /><category term="Experimento de J. J. Thomson" /><category term="diodo emissor de luz" /><category term="fissão nuclear" /><category term="Vídeos" /><category term="Pinça Ótica" /><category term="Carga do elétron" /><category term="Convite a Fisica" /><category term="fusão nuclear" /><category term="Teoria da Relatividade" /><category term="Espectro do Hidrogênio" /><category term="Constante de Planck" /><category term="Espectro" /><category term="pacote de onda" /><category term="quantum" /><category term="Efeito Fotoelétrico" /><category term="Modelo de Bohr" /><category term="corpo negro" /><category term="Reator nuclear" /><category term="Polarização" /><category term="difração de elétrons" /><category term="partículas elementares" /><category term="Teletransporte" /><category term="fotons" /><category term="Experimento de Rutherford" /><category term="Onde comprar" /><category term="premio Nobel de Física 2009" /><category term="dopagem" /><category term="Lei de Bragg" /><category term="experimento de Franck-Hertz" /><category term="fibras oticas" /><category term="lâmpada de gás." /><category term="química" /><category term="Spin" /><category term="videogame" /><category term="rede de difração" /><category term="superposição de ondas" /><category term="capítulo V" /><category term="Radioatividade" /><category term="plasmon" /><category term="LHC" /><category term="Efeito Fotovoltáico" /><category term="Texto Oficina Fisica Moderna" /><category term="Livro" /><category term="Banda de condução" /><category term="Difração de eletrons" /><category term="partícula numa caixa" /><category term="radiação infravermelha" /><category term="câmera de infravermelho." /><category term="complementaridade de Bohr" /><category term="Objetos Educacionais" /><category term="comprimento de onda" /><category term="estado excitado" /><category term="elementos pesados" /><category term="CD" /><category term="dissertação" /><category term="spaser" /><category term="fluorescência" /><category term="Condensado de Bose- Einstein" /><category term="orbitais" /><category term="professor" /><category term="Fototransistor" /><category term="espectro de leds" /><category term="Spínons e holons" /><category term="Schroerdinger" /><category term="leds" /><category term="fotos e imagens" /><category term="Leds Orgânicos" /><category term="Banda de Valência" /><category term="Radio Laser" /><category term="capítulo IV" /><category term="espectroscopia" /><category term="CD como rede de difração" /><category term="Césio 137" /><category term="radiação do corpo negro" /><category term="Física Moderna no Ensino Médio" /><category term="grafeno" /><category term="ondas" /><category term="potencial de corte" /><category term="Detector CCD" /><category term="Quantização de carga" /><category term="Amplitude" /><category term="emaranhados quanticos" /><category term="Proposta Experimental" /><category term="Difração em uma fenda" /><category term="Experimentos em Física Moderna" /><category term="Texto sobre a teoria de Bohr" /><category term="salto quântico" /><category term="Ondas Transversais" /><category term="Ressonancia Magnetica" /><category term="Energia" /><category term="espectro de absorção" /><category term="espectro de emissão" /><category term="Capítulo II" /><category term="área das curvas de radiância espectral" /><category term="Videos" /><category term="Levitação Quântica" /><category term="Museum do laboratório de Cavendish em Cambridge" /><category term="Noticias" /><category term="acidentes nucleares" /><category term="software gráfico" /><category term="Energia Solar" /><category term="imagem térmica" /><category term="Efeito Compton" /><category term="difração de raios x" /><category term="ondas X" /><category term="De Broglie" /><category term="notícias" /><category term="Célula solar caseira" /><category term="links complementares" /><category term="Ensino Fundamental" /><category term="Dualidade onda-partícula" /><category term="Carga específica do elétron" /><category term="Mecânica Quântica" /><category term="Detectando o infravermelho" /><category term="G.P Thomson" /><category term="Monografias" /><category term="Ondas Eletromagnéticas" /><category term="Semicondutores" /><category term="Lei de Stefan Boltzmann" /><category term="Experimento de Millikan" /><category term="Quantização de energia" /><category term="Planck" /><category term="tabela periódica" /><category term="tranparencias" /><category term="Método de Davisson e Germer" /><category term="animações" /><category term="trabalho de extração" /><category term="Errata" /><category term="radiação térmica" /><category term="natureza dual da matéria" /><category term="Resoluções" /><category term="Capítulo I" /><category term="impureza" /><category term="estado fundamental" /><category term="modelos atômicos" /><category term="Figura 3.1" /><category term="Simulações" /><category term="Energia Nuclear" /><category term="densidade de probabilidade" /><category term="termografia" /><category term="Artigos" /><category term="Colóquios" /><category term="Supercondutores" /><category term="Espectro por projeção" /><category term="espectroscopio manual" /><category term="difração da luz" /><category term="sensor" /><category term="função de onda" /><category term="Oficinas de Física" /><category term="Computador Quântico" /><category term="Lei de Wien" /><category term="Efeito Tunel" /><category term="Espectro Eletromagnético" /><category term="Apêndice" /><title>Livro Física Moderna Experimental</title><subtitle type="html">Este blog foi criado para possibilitar a publicação de material de apoio, tais como transparências, softwares, vídeos, dentre outros para o desenvolvimento das atividades  propostas no Livro Física Moderna Experimental (editora Manole) e propiciar um intercâmbio entre os leitores e as autoras.</subtitle><link rel="http://schemas.google.com/g/2005#feed" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/posts/default" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/" /><link rel="next" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default?start-index=26&amp;max-results=25&amp;redirect=false&amp;v=2" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><generator version="7.00" uri="http://www.blogger.com">Blogger</generator><openSearch:totalResults>182</openSearch:totalResults><openSearch:startIndex>1</openSearch:startIndex><openSearch:itemsPerPage>25</openSearch:itemsPerPage><atom10:link xmlns:atom10="http://www.w3.org/2005/Atom" rel="self" type="application/atom+xml" href="http://feeds.feedburner.com/LivroFisicaModernaExperimental" /><feedburner:info uri="livrofisicamodernaexperimental" /><atom10:link xmlns:atom10="http://www.w3.org/2005/Atom" rel="hub" href="http://pubsubhubbub.appspot.com/" /><feedburner:browserFriendly></feedburner:browserFriendly><entry gd:etag="W/&quot;CUIEQXczeSp7ImA9WhRVF04.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-4716582471150348468</id><published>2012-01-16T14:45:00.003-02:00</published><updated>2012-01-16T15:05:00.981-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2012-01-16T15:05:00.981-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="fusão nuclear" /><category scheme="http://www.blogger.com/atom/ns#" term="elementos pesados" /><title>Mais difícil que achar o Bóson de Higgs!</title><content type="html">&lt;img style="float:left; margin:0 10px 10px 0;cursor:pointer; cursor:hand;width: 320px; height: 172px;" src="http://4.bp.blogspot.com/-St3927qEB5M/TxRU4YWsbRI/AAAAAAAAARk/BeiOa9KYYsc/s320/elementos%2Bpesados.jpg" border="0" alt="" id="BLOGGER_PHOTO_ID_5698272756117564690" /&gt;&lt;div style="text-align: justify;"&gt;Você sabia que é possível criar elementos sintéticos a partir da fusão de outros elementos pesados? &lt;/div&gt;&lt;div style="text-align: justify;"&gt;Mas esse é um dos experimentos mais difíceis! &lt;/div&gt;&lt;div style="text-align: justify;"&gt;Leia mais! Clique na figura. &lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;O Centro Helmholtz&lt;span  &gt;&lt;span style="line-height: 16px;"&gt; &lt;/span&gt;&lt;/span&gt;de Pesquisas sobre íons pesados, na Alemanha, tem um laboratório quase tão grande quanto o LHC, mas dedicado à pesquisas nucleares. &lt;a href="http://www.gsi.de/portrait/heavyelements_e.html"&gt;Clique aqui para conhecer&lt;/a&gt;. &lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;Essa notícia pode contribuir para que sua aula seja mais interessante? faça comentários!!! &lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;div style="text-align: left;"&gt;&lt;span  &gt;&lt;span style="font-size: 12px; line-height: 16px;"&gt;&lt;b&gt;&lt;br /&gt;&lt;/b&gt;&lt;/span&gt;&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-4716582471150348468?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/4716582471150348468/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=4716582471150348468" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4716582471150348468?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4716582471150348468?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2012/01/mais-dificil-que-achar-o-boson-de-higgs.html" title="Mais difícil que achar o Bóson de Higgs!" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://4.bp.blogspot.com/-St3927qEB5M/TxRU4YWsbRI/AAAAAAAAARk/BeiOa9KYYsc/s72-c/elementos%2Bpesados.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;CEYAQ389fyp7ImA9WhRWFkQ.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-3874329532213427499</id><published>2012-01-04T13:49:00.000-02:00</published><updated>2012-01-04T13:49:02.167-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2012-01-04T13:49:02.167-02:00</app:edited><title>Nova entidade quântica é meio som e meio matéria</title><content type="html">&lt;a href="http://www.inovacaotecnologica.com.br/noticias/noticia.php?artigo=foniton-entidade-quantica-meio-som-meio-materia&amp;amp;id=010115120102#.TwRz7yJWKzZ.blogger"&gt;Nova entidade quântica é meio som e meio matéria&lt;/a&gt;: O fóniton, essa estranha entidade quântica híbrida, poderá ter utilidade em sensores, em computadores quânticos e em novas ferramentas para estudar o som e o calor.&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-3874329532213427499?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/3874329532213427499/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=3874329532213427499" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3874329532213427499?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3874329532213427499?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2012/01/nova-entidade-quantica-e-meio-som-e.html" title="Nova entidade quântica é meio som e meio matéria" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;AkUBRHk_eip7ImA9WhRXEkk.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-1393627722002489250</id><published>2011-12-18T20:36:00.004-02:00</published><updated>2011-12-18T20:44:15.742-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-12-18T20:44:15.742-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Física Moderna no Ensino Médio" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="LHC" /><title>Educador espanhol defende o ensino de física moderna nas escolas: por que não aproveitar o maior experimento da ciência recente, o LHC?</title><content type="html">&lt;div align="justify"&gt;&lt;a href="http://www.sbfisica.org.br/fne/Vol11/Num2/a06.pdf"&gt;&lt;img id="BLOGGER_PHOTO_ID_5687601149066420930" style="FLOAT: left; MARGIN: 0px 10px 10px 0px; WIDTH: 450px; CURSOR: hand; HEIGHT: 107px" alt="" src="http://2.bp.blogspot.com/-J4Q0oDafQQ0/Tu5rHGI1IsI/AAAAAAAAARY/xoM9AOIq4WI/s320/LHC.jpg" border="0" /&gt;&lt;/a&gt; Leia o artigo de Ramón Cid Manzano, professor no Departamento de Ciências Experimentais da Universidade de Santiago de Compostela (Galícia – Espanha). Manzano quer que os alunos, ainda adolescentes, tomem contato com a física moderna. Mais precisamente, com a física que está se praticando no famoso LHC. Clique na figura para acessar o artigo. Você conseguiria aplicar as ideias de Manzano? &lt;/div&gt;&lt;br /&gt;&lt;div align="justify"&gt;Venha discutir conosco! deixe seu comentário no blog! queremos saber sua opinião!!!&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-1393627722002489250?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/1393627722002489250/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=1393627722002489250" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1393627722002489250?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1393627722002489250?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/12/educador-espanhol-defende-o-ensino-de.html" title="Educador espanhol defende o ensino de física moderna nas escolas: por que não aproveitar o maior experimento da ciência recente, o LHC?" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://2.bp.blogspot.com/-J4Q0oDafQQ0/Tu5rHGI1IsI/AAAAAAAAARY/xoM9AOIq4WI/s72-c/LHC.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;D0YCQ3syeip7ImA9WhRQGUU.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-7205223287884115318</id><published>2011-12-15T19:35:00.004-02:00</published><updated>2011-12-15T19:39:22.592-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-12-15T19:39:22.592-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Simulações" /><category scheme="http://www.blogger.com/atom/ns#" term="Interferência" /><title>Simulador em Flash Interferencia fendas duplas de Young</title><content type="html">&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Este aplicativo em Flash permite:&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;&lt;br /&gt;
&lt;/span&gt;&lt;br /&gt;
&lt;ul style="text-align: left;"&gt;&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Observar a diferença de trajetos percorridos pelos raios&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Observar as ondas individualmente&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Observar a onda resultante&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Observar o resultado na tela decorrente da superposição da ondas&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Alterar o comprimento de onda&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Alterar a distancia entre as fendas&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Alterar a distancia das fendas à tela&lt;/span&gt;&lt;/li&gt;
&lt;li&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Alterar o "tempo de exposição" (incidência&amp;nbsp;na tela)&lt;/span&gt;&lt;/li&gt;
&lt;/ul&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Bastante didático!!! Divirtam-se.&amp;nbsp;&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;&lt;br /&gt;
&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Deixe aqui seus comentários.&amp;nbsp;&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;&lt;br /&gt;
&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Diga o que achou deste simulador.&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;&lt;br /&gt;
&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Você utilizaria em suas aulas? &lt;/span&gt;&lt;br /&gt;
&lt;br /&gt;
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&lt;br /&gt;
&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif; font-size: large;"&gt;&lt;a href="http://www.swfcabin.com/swf-files/1323980259.swf"&gt;Para visualizar em tela cheia clique aqui&lt;/a&gt;&amp;nbsp; &amp;nbsp; :)&lt;/span&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-7205223287884115318?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/7205223287884115318/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=7205223287884115318" title="1 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7205223287884115318?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7205223287884115318?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/12/simulador-em-flash-interferencia-fendas.html" title="Simulador em Flash Interferencia fendas duplas de Young" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>1</thr:total></entry><entry gd:etag="W/&quot;CU4MSX8yeCp7ImA9WhRQEks.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-6682482642550369645</id><published>2011-12-07T11:17:00.002-02:00</published><updated>2011-12-07T11:19:48.190-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-12-07T11:19:48.190-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Princípio das Incertezas" /><title>Simulador Principio das Incertezas</title><content type="html">&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Este simulador permite visualizar graficamente a distribuição de partículas que atingem uma tela quando se interpõe uma ou duas fendas a passagem destas partículas. Pode-se ajustar tanto a largura de cada fenda como a distancia entre elas.&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Numa primeira analise pode-se comparar o padrão gráfico observado para os elétrons com o padrão de distribuição das partículas provenientes de spray de gotas e verificar que os elétrons diferentemente do spray de gotas fornece um gráfico que reproduz diferentes padrões de interferência característico de um comportamento ondulatório. Este padrão é dependente da energia do feixe, da largura e distancia entre as fendas.&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Se, no entanto quisermos, no mesmo experimento “localizar” o elétron acompanhando sua trajetória da fenda até a tela, ligaremos a fonte de luz posicionada nesta região. Observe o que ocorre com o padrão de interferência quando esta lâmpada é ligada. Na tentativa de “localizar” a fenda através da qual o elétron atravessou, interferimos com o padrão de interferência observado na tela.&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;&lt;br /&gt;
&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Para acessar o material completo clique no link&amp;nbsp;&lt;a href="http://objetoseducacionais2.mec.gov.br/handle/mec/19202"&gt;http://objetoseducacionais2.mec.gov.br/handle/mec/19202&lt;/a&gt;&lt;/span&gt;&lt;/div&gt;&lt;br /&gt;
&lt;embed height="450" src="http://www.swfcabin.com/swf-files/1323259137.swf" type="application/x-shockwave-flash" width="640"&gt;&lt;/embed&gt;&lt;/div&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif; font-size: large;"&gt;&lt;a href="http://www.swfcabin.com/swf-files/1323259137.swf"&gt;Para visualizar em tela cheia clique aqui&lt;/a&gt;&lt;/span&gt;&lt;br /&gt;
&lt;br /&gt;
&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-6682482642550369645?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/6682482642550369645/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=6682482642550369645" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/6682482642550369645?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/6682482642550369645?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/12/simulador-principio-das-incertezas.html" title="Simulador Principio das Incertezas" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;A0ANQXc4eSp7ImA9WhRSGEw.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-2925321283889338759</id><published>2011-11-20T17:56:00.002-02:00</published><updated>2011-11-20T18:09:50.931-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-11-20T18:09:50.931-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Efeito Tunel" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="grafeno" /><category scheme="http://www.blogger.com/atom/ns#" term="Teoria da Relatividade" /><title>Grafeno: Por que é importante conhecer as propriedades físicas dessa substância?</title><content type="html">&lt;a href="http://4.bp.blogspot.com/-gZg7J66nhxs/TslbrkZmEyI/AAAAAAAAARA/PwS7ASYD0Oo/s1600/Grafeno.jpg" onblur="try {parent.deselectBloggerImageGracefully();} catch(e) {}"&gt;&lt;img style="float:left; margin:0 10px 10px 0;cursor:pointer; cursor:hand;width: 320px; height: 277px;" src="http://4.bp.blogspot.com/-gZg7J66nhxs/TslbrkZmEyI/AAAAAAAAARA/PwS7ASYD0Oo/s320/Grafeno.jpg" border="0" alt="" id="BLOGGER_PHOTO_ID_5677169609340752674" /&gt;&lt;/a&gt;&lt;ul&gt;&lt;li style="text-align: justify;"&gt;O texto do Blog "Contos Quânticos" explica com detalhes a física do grafeno. Entre as características que chamam a atenção estão: &lt;/li&gt;&lt;/ul&gt;&lt;div style="text-align: justify;"&gt;- os elétrons do grafeno estão confinados num mundo bidimensional, &lt;/div&gt;&lt;div style="text-align: justify;"&gt;- comportam-se como partículas sem massa, &lt;/div&gt;&lt;div style="text-align: justify;"&gt;- sofrem efeitos relativísticos mesmo à baixas velocidades,&lt;/div&gt;&lt;div style="text-align: justify;"&gt;- sofrem Efeito Tunel, e etc. &lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;As aplicações do grafeno em computação e eletrônica rápida são promissoras e logo estarão disponíveis em equipamentos acessíveis a todos. &lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;a href="http://cuentos-cuanticos.com/2011/07/23/grafeno/#more-356"&gt;Clique aqui&lt;/a&gt; para ler.  &lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-2925321283889338759?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/2925321283889338759/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=2925321283889338759" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/2925321283889338759?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/2925321283889338759?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/11/grafeno-por-que-e-importante-conhecer.html" title="Grafeno: Por que é importante conhecer as propriedades físicas dessa substância?" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://4.bp.blogspot.com/-gZg7J66nhxs/TslbrkZmEyI/AAAAAAAAARA/PwS7ASYD0Oo/s72-c/Grafeno.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;DkMBQnc5eip7ImA9WhRTEUo.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-418515398504311582</id><published>2011-10-29T14:38:00.007-02:00</published><updated>2011-11-01T17:07:33.922-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-11-01T17:07:33.922-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Levitação Quântica" /><category scheme="http://www.blogger.com/atom/ns#" term="Videos" /><category scheme="http://www.blogger.com/atom/ns#" term="Supercondutores" /><title>Levitação Quântica</title><content type="html">&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;span class="Apple-style-span" style="font-size: large;"&gt;&lt;b&gt;O que é e como funciona &amp;nbsp;&lt;/b&gt;&lt;/span&gt;&lt;br /&gt;
&lt;br /&gt;
&lt;span class="Apple-style-span" style="background-color: white; font-family: arial, helvetica, freesans, sans-serif; font-size: 12px; line-height: 12px;"&gt;&lt;/span&gt;&lt;br /&gt;
&lt;div style="background-attachment: initial; background-clip: initial; background-color: transparent; background-image: initial; background-origin: initial; outline-color: initial; outline-style: initial; outline-width: 0px; padding-bottom: 1.5em; padding-left: 0px; padding-right: 0px; padding-top: 0px;"&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="color: #333333; font-family: Verdana, sans-serif;"&gt;&lt;span class="Apple-style-span" style="letter-spacing: -0.02em; line-height: 1.45em;"&gt;E funciona assim: finas camadas de safira são revestidas com películas também bastante finas de ouro. O material é envolvido em um plástico &amp;nbsp;e congelado a temperaturas do&amp;nbsp;&lt;/span&gt;&lt;span class="Apple-style-span" style="line-height: 23px;"&gt;nitrogênio&lt;/span&gt;&lt;span class="Apple-style-span" style="letter-spacing: -0.02em; line-height: 1.45em;"&gt;&amp;nbsp;liquido.&amp;nbsp;&lt;/span&gt;&lt;/span&gt;&lt;/div&gt;&lt;/div&gt;&lt;div style="background-attachment: initial; background-clip: initial; background-image: initial; background-origin: initial; letter-spacing: -0.02em; outline-color: initial; outline-style: initial; outline-width: 0px; padding-bottom: 1.5em; padding-left: 0px; padding-right: 0px; padding-top: 0px;"&gt;&lt;div style="color: #333333; line-height: 1.45em; text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;&lt;span class="Apple-style-span" style="background-color: transparent;"&gt;Temos um&amp;nbsp;&lt;/span&gt;&lt;strong style="background-attachment: initial; background-clip: initial; background-color: transparent; background-image: initial; background-origin: initial; margin-bottom: 0px; margin-left: 0px; margin-right: 0px; margin-top: 0px; outline-color: initial; outline-style: initial; outline-width: 0px; padding-bottom: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px;"&gt;supercondutor&lt;/strong&gt;&lt;span class="Apple-style-span" style="background-color: transparent;"&gt;: &lt;/span&gt;&lt;span class="Apple-style-span" style="-webkit-text-size-adjust: none; background-color: white; color: black;"&gt;&lt;span class=""&gt;Supercondutividade e campo magnético não gostam uns dos outros.&amp;nbsp;&lt;/span&gt;&lt;/span&gt;&lt;span class="Apple-style-span" style="-webkit-text-size-adjust: none; background-color: white; color: black;"&gt;Quando possível,&lt;/span&gt;&lt;span class="Apple-style-span" style="-webkit-text-size-adjust: none; background-color: white; color: black;"&gt; o supercondutor vai expulsar todo o campo magnético do interior.&lt;/span&gt;&lt;/span&gt;&lt;/div&gt;&lt;div style="color: #333333; line-height: 1.45em; text-align: justify;"&gt;&lt;span class="Apple-style-span" style="background-color: white;"&gt;&lt;span class="Apple-style-span" style="-webkit-text-size-adjust: none; color: black; font-family: Verdana, sans-serif;"&gt;Isso ocorre de modo quantizado e em forma de tubos.&lt;/span&gt;&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="color: #333333; font-family: Verdana, sans-serif; line-height: 23px;"&gt;Os pesquisadores enfocam seus esforços sobretudo para&amp;nbsp;&lt;strong style="background-attachment: initial; background-clip: initial; background-color: transparent; background-image: initial; background-origin: initial; margin-bottom: 0px; margin-left: 0px; margin-right: 0px; margin-top: 0px; outline-color: initial; outline-style: initial; outline-width: 0px; padding-bottom: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px;"&gt;levar esta tecnologia aos transportes&lt;/strong&gt;. Em resumo, pense que em um trilho que ofereça a energia, para isso basta construir um trem que não use rodas, mas supercondutores que irão flutuar sem atrito algum, favorecendo em muito a conservação do veículo e, claro, à sua velocidade.&lt;/span&gt;&lt;/div&gt;&lt;/div&gt;&lt;div style="background-attachment: initial; background-clip: initial; background-color: transparent; background-image: initial; background-origin: initial; color: #333333; letter-spacing: -0.02em; line-height: 1.45em; outline-color: initial; outline-style: initial; outline-width: 0px; padding-bottom: 1.5em; padding-left: 0px; padding-right: 0px; padding-top: 0px;"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Veja o video abaixo e visite o site do projeto&lt;/span&gt;&lt;/div&gt;&lt;div style="background-attachment: initial; background-clip: initial; background-color: transparent; background-image: initial; background-origin: initial; color: #333333; font-family: inherit; font-size: 1.26em; letter-spacing: -0.02em; line-height: 1.45em; outline-color: initial; outline-style: initial; outline-width: 0px; padding-bottom: 1.5em; padding-left: 0px; padding-right: 0px; padding-top: 0px;"&gt;&lt;a href="http://www.quantumlevitation.com/levitation/Quantum_Levitation.html"&gt;http://www.quantumlevitation.com/levitation/Quantum_Levitation.html&lt;/a&gt;&lt;/div&gt;&lt;br /&gt;
&lt;br /&gt;
&lt;iframe allowfullscreen="" frameborder="0" height="400" src="http://www.youtube.com/embed/bE7_CnLz7rQ" width="700"&gt;&lt;/iframe&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-418515398504311582?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/418515398504311582/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=418515398504311582" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/418515398504311582?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/418515398504311582?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/10/levitacao-quantica.html" title="Levitação Quântica" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://img.youtube.com/vi/bE7_CnLz7rQ/default.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;CUUAQns4eyp7ImA9WhdaE0w.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-8594425319809229372</id><published>2011-10-22T17:47:00.003-02:00</published><updated>2011-10-22T17:54:03.533-02:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-10-22T17:54:03.533-02:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Efeito Fotovoltáico" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="Efeito Fotoelétrico" /><title>Como é possível? Um fóton pode excitar mais de um elétron?</title><content type="html">&lt;img style="float:left; margin:0 10px 10px 0;cursor:pointer; cursor:hand;width: 320px; height: 253px;" src="http://2.bp.blogspot.com/-Ym2oAxqttiI/TqMd7bnr0rI/AAAAAAAAAQw/D36cp8tVQIA/s320/Blog%2BEFV%2B1.jpg" border="0" alt="" id="BLOGGER_PHOTO_ID_5666405663025910450" /&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, Arial, Tahoma, Helvetica; font-size: 13px; background-color: rgb(255, 255, 255); "&gt;&lt;h1 style="margin-top: 0px; margin-right: 0px; margin-bottom: 0px; margin-left: 0px; padding-top: 10px; padding-right: 0px; padding-bottom: 5px; padding-left: 0px; font-weight: bold; font-size: 18px; color: rgb(4, 60, 150); font-family: Verdana, Arial, Helvetica, Tahoma; "&gt;Cientistas fazem milagre da multiplicação dos elétrons&lt;/h1&gt;&lt;div style="text-align: justify;"&gt;Esse é o título da notícia divulgada no sítio Inovação Tecnológica! &lt;/div&gt;&lt;/span&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, Arial, Tahoma, Helvetica; line-height: 16px; background-color: rgb(255, 255, 255); font-size: small; "&gt;Nas células solares normalmente ocorre o Efeito Fotovoltaico, isto é, cada fóton de luz que entra na célula produz um elétron livre. A soma de todos os elétrons liberados corresponde à quantidade de energia que a célula consegue gerar.&lt;/span&gt;&lt;div&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, Arial, Tahoma, Helvetica; line-height: 16px; background-color: rgb(255, 255, 255); font-size: small; "&gt;&lt;span class="Apple-style-span" style="font-size: 13px; "&gt;Mas cientistas do Laboratório Nacional Los Alamos, nos Estados Unidos, descobriram um fenômeno chamado "multiplicação das portadoras", no qual nanocristais semicondutores reagem a fótons produzindo múltiplos elétrons. O efeito é aplicável a uma gama muito maior de materiais do que se pensava até agora. Clique na figura para ler mais!&lt;/span&gt;&lt;/span&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-8594425319809229372?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/8594425319809229372/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=8594425319809229372" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/8594425319809229372?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/8594425319809229372?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/10/como-e-possivel-um-foton-pode-excitar.html" title="Como é possível? Um fóton pode excitar mais de um elétron?" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://2.bp.blogspot.com/-Ym2oAxqttiI/TqMd7bnr0rI/AAAAAAAAAQw/D36cp8tVQIA/s72-c/Blog%2BEFV%2B1.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;CE8BQ3k_cCp7ImA9WhdbFEs.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-1360454691592922286</id><published>2011-10-12T20:40:00.000-03:00</published><updated>2011-10-12T20:40:52.748-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-10-12T20:40:52.748-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Simulações" /><category scheme="http://www.blogger.com/atom/ns#" term="Mecânica Quântica" /><category scheme="http://www.blogger.com/atom/ns#" term="densidade de probabilidade" /><category scheme="http://www.blogger.com/atom/ns#" term="função de onda" /><title>Como localizar uma partícula na Mecânica Quântica? E se ela estiver confinada? Veja o aplicativo abaixo</title><content type="html">&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif; font-size: large;"&gt;Física Quântica - Schrödinger e a Função de Onda&amp;nbsp;&lt;/span&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;Todo os recursos, tais como teoria,&amp;nbsp;histórico, guia para o professor, disponível em &lt;/span&gt;&lt;a href="http://objetoseducacionais2.mec.gov.br/handle/mec/19200"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif;"&gt;http://objetoseducacionais2.mec.gov.br/handle/mec/1920&lt;/span&gt;0&lt;/a&gt;&lt;br /&gt;
&lt;span class="Apple-style-span" style="font-family: 'Helvetica Neue', Arial, Helvetica, sans-serif;"&gt;&lt;b&gt;&lt;br /&gt;
&lt;/b&gt;&lt;/span&gt;&lt;br /&gt;
&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: 'Helvetica Neue', Arial, Helvetica, sans-serif;"&gt;&lt;b&gt;Se quiser use o aplicativo&amp;nbsp;em Flash abaixo, clicando em cada uma das opções. Veja em cada opção o item ajuda lá&amp;nbsp;você&amp;nbsp;encontrará dicas de como operar com o aplicativo. Bom trabalho :).&amp;nbsp;&lt;/b&gt;&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" style="font-family: 'Helvetica Neue', Arial, Helvetica, sans-serif;"&gt;&lt;b&gt;Deixe seus&amp;nbsp;comentários&amp;nbsp;sobre o aplicativo. Será que conseguimos tratar este tema no Ensino Médio? &amp;nbsp;Este é o nosso desafio!&lt;/b&gt;&lt;/span&gt;&lt;/div&gt;&lt;/div&gt;&lt;embed height="450" src="http://www.swfcabin.com/swf-files/1318456713.swf" type="application/x-shockwave-flash" width="640"&gt;&lt;/embed&gt;&lt;br /&gt;
&lt;a href="http://www.swfcabin.com/swf-files/1318456713.swf"&gt;&lt;span class="Apple-style-span" style="font-family: Verdana, sans-serif; font-size: large;"&gt;Para acessar em tela cheia clique aqui&lt;/span&gt;&lt;/a&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-1360454691592922286?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/1360454691592922286/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=1360454691592922286" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1360454691592922286?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1360454691592922286?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/10/como-localizar-uma-particula-na.html" title="Como localizar uma partícula na Mecânica Quântica? E se ela estiver confinada? Veja o aplicativo abaixo" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;CEQNSX86fSp7ImA9WhdbFEs.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-3268762682099208400</id><published>2011-10-04T21:52:00.008-03:00</published><updated>2011-10-12T20:33:18.115-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-10-12T20:33:18.115-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="difração de elétrons" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="natureza dual da matéria" /><title>Explore o Objeto educacional! Dualidade da Matéria!</title><content type="html">&lt;div dir="ltr" style="text-align: left;" trbidi="on"&gt;&lt;a href="http://www.fisicavivencial.pro.br/sites/default/files/sf/737SF/index.htm"&gt;&lt;img alt="" border="0" id="BLOGGER_PHOTO_ID_5659805144959619202" src="http://3.bp.blogspot.com/-mUWJDWwzl2g/Touqyts_EII/AAAAAAAAAQo/BbtU4cc5nfE/s320/F%25C3%25ADsica%2Bvivnecial.JPG" style="float: left; height: 228px; margin-bottom: 10px; margin-left: 0pt; margin-right: 10px; margin-top: 0pt; width: 355px;" /&gt;&lt;/a&gt;São cinco recursos num único objeto educacional. Introdução teórica, Simulação da difração de elétrons, Mapa interativo, História da Ciência e Avaliação. Clique na figura.&lt;br /&gt;
&lt;br /&gt;
Use todos os recursos e conte-nos como poderia utiliza-los em suas aulas.&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-3268762682099208400?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/3268762682099208400/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=3268762682099208400" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3268762682099208400?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3268762682099208400?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/10/explore-o-objeto-educacional-dualidade.html" title="Explore o Objeto educacional! Dualidade da Matéria!" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://3.bp.blogspot.com/-mUWJDWwzl2g/Touqyts_EII/AAAAAAAAAQo/BbtU4cc5nfE/s72-c/F%25C3%25ADsica%2Bvivnecial.JPG" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;Ak4BR3k5eyp7ImA9WhdUEEk.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-7027765867436448805</id><published>2011-09-26T11:55:00.000-03:00</published><updated>2011-09-26T11:55:56.723-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-09-26T11:55:56.723-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Apresentações" /><title>Apresentação na VII Semana de Física na UFMA: Desafios no Ensino e Aprendizagem de Física no Seculo XXI</title><content type="html">&lt;div&gt;&lt;span class="Apple-style-span" style="font-size: large;"&gt;Para acessar a&amp;nbsp;apresentação, clique no link abaixo:&amp;nbsp;&lt;/span&gt;&lt;/div&gt;&lt;div&gt;&lt;br /&gt;
&lt;/div&gt;&lt;span class="Apple-style-span" style="font-size: large;"&gt;&lt;a href="http://www.slideboom.com/presentations/422566/UFMA_semanafisica"&gt;Desafios no Ensino e Aprendizagem de&amp;nbsp;Física&amp;nbsp;no Seculo XXI&lt;/a&gt;&lt;/span&gt;&lt;div&gt;&lt;br /&gt;
&lt;/div&gt;&lt;div&gt;&lt;br /&gt;
&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-7027765867436448805?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/7027765867436448805/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=7027765867436448805" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7027765867436448805?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7027765867436448805?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/09/apresentacao-na-vii-semana-de-fisica-na.html" title="Apresentação na VII Semana de Física na UFMA: Desafios no Ensino e Aprendizagem de Física no Seculo XXI" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;Ck4AQX0yfCp7ImA9WhdVF0Q.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-1582480446302484948</id><published>2011-09-19T23:17:00.004-03:00</published><updated>2011-09-23T12:15:40.394-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-09-23T12:15:40.394-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="espectro de absorção" /><category scheme="http://www.blogger.com/atom/ns#" term="espectro de leds" /><title>Uma atividade para estudo de espectros de absorção - Acervo da TV Escola</title><content type="html">&lt;div class="separator" style="clear: both; text-align: center;"&gt;&lt;a href="http://3.bp.blogspot.com/-QFzIEGlDqFA/Tnf3ene7VdI/AAAAAAAAEqE/RnyAnSFcfBQ/s1600/absor%25C3%25A7%25C3%25A3o%2Bleds.JPG" imageanchor="1" style="clear: left; float: left; margin-bottom: 1em; margin-right: 1em;"&gt;&lt;img border="0" height="204" src="http://3.bp.blogspot.com/-QFzIEGlDqFA/Tnf3ene7VdI/AAAAAAAAEqE/RnyAnSFcfBQ/s320/absor%25C3%25A7%25C3%25A3o%2Bleds.JPG" width="272" /&gt;&lt;/a&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;No episódio “Céu e Inferno”, Carl Sagan conduz uma interessante&amp;nbsp;discussão sobre grandes catástrofes que aconteceram na Terra e em&amp;nbsp;outros planetas e satélites do sistema solar. Choques com meteoros&amp;nbsp;que podem acontecer novamente. Sagan também coloca em&amp;nbsp;discussão a capacidade humana para provocar transformações na&amp;nbsp;Terra. A proposta de trabalho aborda a Física Moderna por meio de&amp;nbsp;uma atividade para compreensão dos espectros de absorção.&lt;/div&gt;&lt;span class="Apple-style-span" style="font-size: large;"&gt;&lt;a href="http://tvescola.mec.gov.br/images/stories/download_aulas_pdf/fichas_ok/ensino_medio/acervo/acervo_2009_ceu_e_inferno.pdf"&gt;Para ter acesso a esta atividade clique aqui&lt;/a&gt;&lt;/span&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-1582480446302484948?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/1582480446302484948/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=1582480446302484948" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1582480446302484948?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1582480446302484948?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/09/uma-atividade-para-estudo-de-espectros.html" title="Uma atividade para estudo de espectros de absorção - Acervo da TV Escola" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://3.bp.blogspot.com/-QFzIEGlDqFA/Tnf3ene7VdI/AAAAAAAAEqE/RnyAnSFcfBQ/s72-c/absor%25C3%25A7%25C3%25A3o%2Bleds.JPG" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;C0cBR3k8cSp7ImA9WhdQGUk.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-5855791324517512961</id><published>2011-08-21T12:28:00.005-03:00</published><updated>2011-08-21T12:37:36.779-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-08-21T12:37:36.779-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Dualidade onda-partícula" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="Polarização" /><title>Mais simuladores!!! entenda a polarização através de analogias!!!</title><content type="html">&lt;div style="text-align: justify;"&gt;&lt;a onblur="try {parent.deselectBloggerImageGracefully();} catch(e) {}" href="http://demonstrations.wolfram.com/UnderstandingPolarizationWithAnAnalogy/"&gt;&lt;img style="float:left; margin:0 10px 10px 0;cursor:pointer; cursor:hand;width: 320px; height: 318px;" src="http://3.bp.blogspot.com/--Hsnsdrg-kA/TlEknX-S2xI/AAAAAAAAAQg/CRkUOipGuRM/s320/polariza%25C3%25A7%25C3%25A3o.JPG" alt="" id="BLOGGER_PHOTO_ID_5643332066940738322" border="0" /&gt;&lt;/a&gt;O fenômeno da polarização de ondas é importantíssimo enquanto argumento para o caráter ondulatório da luz. Compreendê-lo nem sempre é fácil no ensino médio. Por isso, precisamos de analogias com o mundo macroscópico! Este simulador (clique na figura) faz parte do &lt;a href="http://demonstrations.wolfram.com/index.html"&gt;&lt;span style="font-weight: bold;"&gt;Wolfram Demonstrations Project&lt;/span&gt;&lt;/a&gt;.
&lt;br /&gt;
&lt;br /&gt;Confira o restante das simulações!!! O Ensino Médio precisa deste recurso para que as aulas de física sejam mais interessantes!!!
&lt;br /&gt;Comente conosco as reações dos estudantes!
&lt;br /&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-5855791324517512961?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/5855791324517512961/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=5855791324517512961" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/5855791324517512961?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/5855791324517512961?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/08/mais-simuladores-entenda-polarizacao.html" title="Mais simuladores!!! entenda a polarização através de analogias!!!" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://3.bp.blogspot.com/--Hsnsdrg-kA/TlEknX-S2xI/AAAAAAAAAQg/CRkUOipGuRM/s72-c/polariza%25C3%25A7%25C3%25A3o.JPG" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;C0YNRHs8eip7ImA9WhdRF0g.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-3777826654502244140</id><published>2011-08-07T17:06:00.005-03:00</published><updated>2011-08-07T18:06:35.572-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-08-07T18:06:35.572-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Apresentações" /><title>Física Moderna e a Modernidade no Ensino de Física: Como transmitir e receber sinais a distancia através de um LED, usando o Arduino e um radio</title><content type="html">&lt;span style="font-weight:bold;"&gt;Apresentação na VII Semana da Física da UFScar&lt;/span&gt;&lt;br /&gt;&lt;br /&gt;&lt;div style="width:640px;text-align:left"&gt;&lt;a style="font:14px Helvetica,Arial,Sans-serif;color: #0000CC;display:block;margin:12px 0 3px 0;text-decoration:underline;" href="http://www.slideboom.com/presentations/401997/UFScar_semanafisicablog" title="UFScar_semanafisicablog"&gt;UFScar_semanafisicablog&lt;/a&gt;&lt;object classid="clsid:d27cdb6e-ae6d-11cf-96b8-444553540000" codebase="http://fpdownload.macromedia.com/pub/shockwave/cabs/flash/swflash.cab#version=9,0,28,0" width="640" height="400" id="onlinePlayer401997"&gt;&lt;param name="movie" value="http://www.slideboom.com/player/player.swf?id_resource=401997"&gt;&lt;param name="allowScriptAccess" value="always"&gt;&lt;param name="quality" value="high"&gt;&lt;param name="bgcolor" value="#ffffff"&gt;&lt;param name="allowFullScreen" value="true"&gt;&lt;param name="flashVars" value=""&gt;&lt;embed src="http://www.slideboom.com/player/player.swf?id_resource=401997" width="640" height="400" name="onlinePlayer401997" type="application/x-shockwave-flash" pluginspage="http://www.macromedia.com/go/getflashplayer" allowscriptaccess="always" quality="high" bgcolor="#ffffff" allowfullscreen="true" flashvars=""&gt;&lt;/embed&gt;&lt;/object&gt;&lt;div style="font-size:11px;font-family:tahoma,arial;height:26px;padding-top:2px;"&gt;View &lt;a href="http://www.slideboom.com/" style="color: #0000CC;"&gt;more presentations&lt;/a&gt; or &lt;a href="http://www.slideboom.com/upload" style="color: #0000CC;"&gt;Upload&lt;/a&gt; your own.&lt;/div&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-3777826654502244140?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/3777826654502244140/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=3777826654502244140" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3777826654502244140?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3777826654502244140?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/08/fisica-moderna-e-modernidade-no-ensino.html" title="Física Moderna e a Modernidade no Ensino de Física: Como transmitir e receber sinais a distancia através de um LED, usando o Arduino e um radio" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;AkMHQnw4fCp7ImA9WhdSFko.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-721696774247009789</id><published>2011-07-25T19:11:00.004-03:00</published><updated>2011-07-26T08:07:13.234-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-07-26T08:07:13.234-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Mecânica Quântica" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="espectroscopia" /><category scheme="http://www.blogger.com/atom/ns#" term="modelos atômicos" /><category scheme="http://www.blogger.com/atom/ns#" term="química" /><title>"A espectroscopia é o germe para conhecimento da estrutura do átomo"</title><content type="html">&lt;a href="http://qnesc.sbq.org.br/online/qnesc03/historia.pdf"&gt;&lt;img style="float:left; margin:0 10px 10px 0;cursor:pointer; cursor:hand;width: 320px; height: 185px;" src="http://2.bp.blogspot.com/-wHpp9BJHPnU/Ti3q9FBiSoI/AAAAAAAAAQY/dEObt-qrXmE/s320/espectro%2Bqu%25C3%25ADmica.jpg" alt="" id="BLOGGER_PHOTO_ID_5633417043951897218" border="0" /&gt;&lt;/a&gt;&lt;div style="text-align: justify;"&gt;&lt;div style="text-align: justify;"&gt;Neste número a seção “História da Química” apresenta a história do desenvolvimento da espectroscopia e suas extraordinárias e imediatas conseqüências para a ciência, em particular para entendermos a estrutura da matéria. Os leitores vão deslocar-se para uma época — o final do século XIX, mais precisamente o ano de 1885 — quando inexistiam os conceitos de elétron, estrutura&lt;/div&gt;&lt;div style="text-align: justify;"&gt;atômica, transição eletrônica. Vão conhecer também a importante contribuição de um professor do ensino médio. Clique na figura para abrir. &lt;/div&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-721696774247009789?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/721696774247009789/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=721696774247009789" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/721696774247009789?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/721696774247009789?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/07/espectroscopia-e-o-germe-para.html" title="&quot;A espectroscopia é o germe para conhecimento da estrutura do átomo&quot;" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://2.bp.blogspot.com/-wHpp9BJHPnU/Ti3q9FBiSoI/AAAAAAAAAQY/dEObt-qrXmE/s72-c/espectro%2Bqu%25C3%25ADmica.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;DEQGQHwyfSp7ImA9WhdREkQ.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-4976669976325090705</id><published>2011-07-14T22:12:00.008-03:00</published><updated>2011-08-02T11:45:21.295-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-08-02T11:45:21.295-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Simulações" /><category scheme="http://www.blogger.com/atom/ns#" term="Dualidade onda-partícula" /><category scheme="http://www.blogger.com/atom/ns#" term="Difração de eletrons" /><category scheme="http://www.blogger.com/atom/ns#" term="De Broglie" /><title>Difração de G.P Thomson para eletrons</title><content type="html">&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;Este simulador permite alterar a distancia interplanar do cristal de grafite , variar a tensao de aceleração de um feixe de elétrons e até mesma criar um cristal com um dado valor de distancia interplanar!! &lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;A passagem do feixe pelo cristal gera uma figura de difração e em forma de aneis. Alterando o comprimento de onda associado ao eletron obtemos angulos de Bragg (para a interferencia contrutiva) diferentes e portanto variamos o raio do anel projetado na tela.&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;Uma figura muito semelhante a esta pode ser observada com um CD e incidindo um feixe de luz sobre a superficie refletora. Com uma lente e uma colimação circular adequada do feixe observa-se aneis cujos raios dependem do comprimento de onda da luz.&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;Varie o valor da tensão aplica e observe o que ocorre com o raio do anel. Aumenta? diminui? por que isso ocorre? &lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;Faça sugestões de como podemos utilizar este simulador em sala de aula.. Deixe aqui seus comentários.&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;Espero que curtam este simulador! Divirtam-se&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;Para conseguir observar os anéis você deve ligar as fontes de tensão variando o cursor. Uma delas altera a intensidade do feixe (altera a tensão de filamento) e a outra a tensão entre catodo e anodo para acelerar o feixe. &lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span class="Apple-style-span"&gt;O fenômeno só pode ser evidenciado quando as duas fontes apresentarem valores diferente de zero!&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;br /&gt;&lt;/div&gt;&lt;br /&gt;&lt;br /&gt;&lt;embed height="440" type="application/x-shockwave-flash" width="640" src="http://www.fileden.com/files/2010/3/4/2782968/Animacoes/difracaoeletron.swf"&gt;&lt;/embed&gt;&lt;br /&gt;&lt;br /&gt;&lt;a href="http://www.fileden.com/files/2010/3/4/2782968/Animacoes/difracaoeletron.swf"&gt;&lt;b&gt;Para visualizar em tela cheia clique aqui&lt;/b&gt;&lt;/a&gt;&lt;div&gt;&lt;br /&gt;&lt;div&gt;Se preferir baixar o aplicativo completo clique no link abaixo&amp;gt; descopacte a pasta e abra o arquivo "abertura. swf". Neste arquivo voce terá um resumo teorico, videos, e uma proposta experimental, alem de exercicios. Espero que gostem !! Até mais ver..&lt;br /&gt;&lt;br /&gt;&lt;iframe title="Preview" scrolling="no" marginheight="0" marginwidth="0" frameborder="0" style="width:98px;height:115px;padding:0;background-color:#fcfcfc;" src="https://skydrive.live.com/embedicon.aspx/UFRGS-2011/Simuladores/difra%c3%a7%c3%a3o%20de%20eletrons.rar?cid=247463ebb52e7e31&amp;amp;sc=documents"&gt;&lt;/iframe&gt;&lt;/div&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-4976669976325090705?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/4976669976325090705/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=4976669976325090705" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4976669976325090705?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4976669976325090705?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/07/difracao-de-gp-thomson-para-eletrons.html" title="Difração de G.P Thomson para eletrons" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;DkMAQ3c5eyp7ImA9WhZaGEU.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-7961516010329262341</id><published>2011-07-05T13:34:00.001-03:00</published><updated>2011-07-05T13:47:22.923-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-07-05T13:47:22.923-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="CD como rede de difração" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="espectroscopio manual" /><category scheme="http://www.blogger.com/atom/ns#" term="Experimentos em Física Moderna" /><category scheme="http://www.blogger.com/atom/ns#" term="Artigos" /><category scheme="http://www.blogger.com/atom/ns#" term="Ensino Fundamental" /><title>Que tal física moderna no Ensino Fundamental?</title><content type="html">&lt;div align="justify"&gt;&lt;a href="http://www.sbfisica.org.br/fne/Vol8/Num1/v08n01a02.pdf"&gt;&lt;img style="MARGIN: 0px 10px 10px 0px; WIDTH: 336px; FLOAT: left; HEIGHT: 112px; CURSOR: hand" id="BLOGGER_PHOTO_ID_5625909975475677010" border="0" alt="" src="http://3.bp.blogspot.com/-YjqlC5Nn0fc/ThM_ULqN51I/AAAAAAAAAQQ/bSVhD54n7gc/s320/nano.jpg" /&gt;&lt;/a&gt; Leia o artigo "&lt;a href="http://www.sbfisica.org.br/fne/Vol8/Num1/v08n01a02.pdf"&gt;Nanociência de baixo custo em casa e na escola&lt;/a&gt;" de Peter A. B. Schulz e veja como podemos ajudar os estudantes do Ensino Fundamental a ter noções de dimensões tão pequenas como a da trilha do CD que utilizamos para fazer o &lt;a href="http://fisicamodernaexperimental.blogspot.com/2009/07/espectro-dentro-de-uma-caixinha.html"&gt;espectroscópio caseiro&lt;/a&gt;. &lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-7961516010329262341?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/7961516010329262341/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=7961516010329262341" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7961516010329262341?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7961516010329262341?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/07/que-tal-fisica-moderna-no-ensino.html" title="Que tal física moderna no Ensino Fundamental?" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://3.bp.blogspot.com/-YjqlC5Nn0fc/ThM_ULqN51I/AAAAAAAAAQQ/bSVhD54n7gc/s72-c/nano.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;CE4DR3o7fCp7ImA9WhZbGEk.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-1593868061450508711</id><published>2011-06-23T12:21:00.004-03:00</published><updated>2011-06-23T12:29:36.404-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-06-23T12:29:36.404-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Videos" /><category scheme="http://www.blogger.com/atom/ns#" term="fibras oticas" /><title>Vamos conhecer um pouco mais sobre fibras ópticas? Um experimento simples..</title><content type="html">&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" &gt;Atualmente a comunicação atraves de fibras ópticas é algo muito comum. Ouvimos falar destas fibras até mesmo em propagandas na TV.Mas o que é uma fibra óptica? Como podemos fazer demostrações simples em sala de aula sobre este tema. Como é este processo de transmissão de informações? Qual o maior cabo de fibra óptica em funcionamento? Assista o vídeo abaixo para ver as respostas a estas questões. &lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" &gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;span class="Apple-style-span" &gt;Deixe aqui seus comentários. Diga o que achou deste vídeo? Forneça outras dicas sobre o assunto... &lt;/span&gt;&lt;/div&gt;&lt;br /&gt;&lt;br /&gt;&lt;iframe width="640" height="390" src="http://www.youtube.com/embed/0MwMkBET_5I" frameborder="0" allowfullscreen=""&gt;&lt;/iframe&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-1593868061450508711?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/1593868061450508711/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=1593868061450508711" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1593868061450508711?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/1593868061450508711?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/06/vamos-conhecer-um-pouco-mais-sobre.html" title="Vamos conhecer um pouco mais sobre fibras ópticas? Um experimento simples.." /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://img.youtube.com/vi/0MwMkBET_5I/default.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;DkUHRnk6fyp7ImA9WhZUEk8.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-4050683901105862117</id><published>2011-06-04T18:14:00.007-03:00</published><updated>2011-06-04T18:50:37.717-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-06-04T18:50:37.717-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Simulações" /><category scheme="http://www.blogger.com/atom/ns#" term="Espectro Eletromagnético" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><title>Conhece os conteúdos digitais do Acessa Física?</title><content type="html">&lt;a href="http://201.55.67.236/acessa_fisica/index.php/acessafisica"&gt;&lt;img id="BLOGGER_PHOTO_ID_5614476324609576866" style="FLOAT: left; MARGIN: 0px 10px 10px 0px; WIDTH: 320px; CURSOR: hand; HEIGHT: 266px" alt="" src="http://2.bp.blogspot.com/-a9nRm2p4nos/TeqgeHAxz6I/AAAAAAAAAPw/5Ox_XGy_vsA/s320/espectro.jpg" border="0" /&gt;&lt;/a&gt;&lt;div style="TEXT-ALIGN: justify"&gt;&lt;span class="Apple-style-span" style="COLOR: rgb(83,85,72); LINE-HEIGHT: 16pxfont-family:Helvetica, Arial, sans-serif;font-size:13;"&gt;São disponibilizados vídeos, &lt;/span&gt;&lt;span class="Apple-style-span" style="color: rgb(83, 85, 72); font-size: 13px; "&gt;áudios, experimentos e softwares que abordam os mais variados temas que compõem o ensino da Física. Eles trazem ideias e visões diferentes, inusitadas e curiosas, para &lt;/span&gt;&lt;span class="Apple-style-span" style="color: rgb(83, 85, 72); font-size: 13px; "&gt;colaborar em sua compreensão e oferecer novos estímulos.&lt;/span&gt;&lt;/div&gt;&lt;span class="Apple-style-span" style="color: rgb(83, 85, 72); font-size: 13px; "&gt;&lt;p style="margin-top: 0.5em; margin-right: 0px; margin-bottom: 0.5em; margin-left: 0px; line-height: 1.25em; text-align: justify; "&gt;&lt;br /&gt;&lt;/p&gt;&lt;p style="margin-top: 0.5em; margin-right: 0px; margin-bottom: 0.5em; margin-left: 0px; line-height: 1.25em; text-align: justify; "&gt;O professor vai encontrar recursos para enriquecer suas aulas e despertar o interesse dos alunos. Espera-se também ajudar os alunos a perceberem que a Física vai muito além das fórmulas: é um mundo inteiro a se desvendar e redescobrir. Clique na figura ao lado.&lt;/p&gt;&lt;p style="margin-top: 0.5em; margin-right: 0px; margin-bottom: 0.5em; margin-left: 0px; line-height: 1.25em; text-align: justify; "&gt;&lt;br /&gt;&lt;/p&gt;&lt;div&gt;&lt;span class="Apple-style-span" style="color: rgb(83, 85, 72); font-size: 13px; "&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div&gt;&lt;span class="Apple-style-span" style="color: rgb(83, 85, 72); font-size: 13px; "&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div&gt;&lt;span class="Apple-style-span" style="color: rgb(83, 85, 72); font-size: 13px; "&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;br /&gt;&lt;p style="margin-top: 0.5em; margin-right: 0px; margin-bottom: 0.5em; margin-left: 0px; line-height: 1.25em; "&gt;&lt;img src="http://1.bp.blogspot.com/-GzqThARSHWM/Teqm_PBsdEI/AAAAAAAAAQA/mblEyyYrQ3Y/s320/espectro%2B2.jpg" style="float:left; margin:0 10px 10px 0;cursor:pointer; cursor:hand;width: 320px; height: 176px;" border="0" alt="" id="BLOGGER_PHOTO_ID_5614483490766353474" /&gt;&lt;/p&gt;&lt;p style="margin-top: 0.5em; margin-right: 0px; margin-bottom: 0.5em; margin-left: 0px; "&gt;&lt;br /&gt;&lt;/p&gt;&lt;p style="margin-top: 0.5em; margin-right: 0px; margin-bottom: 0.5em; margin-left: 0px; line-height: 1.25em; "&gt;Confira o software que identifica espectros a partir da fonte de luz. &lt;a href="http://201.55.67.236/acessa_fisica/index.php/acessafisica/Midias/Software/Espectros-Eletromagneticos"&gt;Clique aqui&lt;/a&gt;.&lt;/p&gt;&lt;/span&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-4050683901105862117?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/4050683901105862117/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=4050683901105862117" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4050683901105862117?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4050683901105862117?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/06/conhece-os-conteudos-digitais-do-acessa.html" title="Conhece os conteúdos digitais do Acessa Física?" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://2.bp.blogspot.com/-a9nRm2p4nos/TeqgeHAxz6I/AAAAAAAAAPw/5Ox_XGy_vsA/s72-c/espectro.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;A0AEQ3g7eSp7ImA9WhZUEEw.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-4099141695670489362</id><published>2011-06-02T09:57:00.003-03:00</published><updated>2011-06-02T10:01:42.601-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-06-02T10:01:42.601-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="tabela periódica" /><category scheme="http://www.blogger.com/atom/ns#" term="Espectro do Hidrogênio" /><title>Tabela periodica em videos</title><content type="html">No site &lt;a href="http://www.tabelaperiodica.org/"&gt;http://www.tabelaperiodica.org/&lt;/a&gt; podemos encontrar videos sobre os elementos da tabela periodica.&lt;br /&gt;&lt;br /&gt;Os videos apresentam legendas em portugues e &lt;a href="http://www.tabelaperiodica.org/vendo-legendas-em-portugues-no-youtube/"&gt;clique aqui para sabe como visualiza-las &lt;/a&gt;.&lt;br /&gt;&lt;br /&gt;Para começar veja o video do primeiro elemento "Hidrogenio".&lt;br /&gt;&lt;br /&gt;&lt;br /&gt;&lt;br /&gt;&lt;iframe width="640" height="510" src="http://www.youtube.com/embed/fesgl5Cs5FY" frameborder="0" allowfullscreen&gt;&lt;/iframe&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-4099141695670489362?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/4099141695670489362/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=4099141695670489362" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4099141695670489362?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4099141695670489362?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/06/tabela-periodica-em-videos.html" title="Tabela periodica em videos" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://img.youtube.com/vi/fesgl5Cs5FY/default.jpg" height="72" width="72" /><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;C04CSX4zeCp7ImA9WhZVEUg.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-5997539625584606041</id><published>2011-05-20T19:05:00.004-03:00</published><updated>2011-05-23T08:59:28.080-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-05-23T08:59:28.080-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="acidentes nucleares" /><title>Acidente Nuclear no Japão: palestra do prof. Dr. Luís Antônio Albiac Terremoto</title><content type="html">&lt;div style="text-align: justify;"&gt;Saiba um pouco mais sobre reatores, algumas caracteristicas tecnicas e entenda melhor o acidente no Japão. Palestra proferida na PUC/SP no dia 19/05/2011, promovida pelo departamento de Física.&lt;/div&gt;&lt;div style="text-align: justify;"&gt;&lt;br /&gt;&lt;/div&gt;&lt;br /&gt;&lt;div style="width:640px;text-align:left"&gt;&lt;a style="font:14px Helvetica,Arial,Sans-serif;color: #0000CC;display:block;margin:12px 0 3px 0;text-decoration:underline;" href="http://www.slideboom.com/presentations/361154/ACIDENTE-NUCLEAR-NO-JAP%C3%83O" title="ACIDENTE NUCLEAR NO JAPÃO"&gt;ACIDENTE NUCLEAR NO JAPÃO&lt;/a&gt;&lt;object classid="clsid:d27cdb6e-ae6d-11cf-96b8-444553540000" codebase="http://fpdownload.macromedia.com/pub/shockwave/cabs/flash/swflash.cab#version=9,0,28,0" width="640" height="450" id="onlinePlayer361154"&gt;&lt;param name="movie" value="http://www.slideboom.com/player/player.swf?id_resource=361154"&gt;&lt;param name="allowScriptAccess" value="always"&gt;&lt;param name="quality" value="high"&gt;&lt;param name="bgcolor" value="#ffffff"&gt;&lt;param name="allowFullScreen" value="true"&gt;&lt;param name="flashVars" value=""&gt;&lt;embed src="http://www.slideboom.com/player/player.swf?id_resource=361154" width="640" height="450" name="onlinePlayer361154" type="application/x-shockwave-flash" pluginspage="http://www.macromedia.com/go/getflashplayer" allowscriptaccess="always" quality="high" bgcolor="#ffffff" allowfullscreen="true" flashvars=""&gt;&lt;/embed&gt;&lt;/object&gt;&lt;div style="font-size:11px;font-family:tahoma,arial;height:26px;padding-top:2px;"&gt;View &lt;a href="http://www.slideboom.com/" style="color: #0000CC;"&gt;more presentations&lt;/a&gt; or &lt;a href="http://www.slideboom.com/upload" style="color: #0000CC;"&gt;Upload&lt;/a&gt; your own.&lt;/div&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-5997539625584606041?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/5997539625584606041/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=5997539625584606041" title="2 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/5997539625584606041?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/5997539625584606041?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/05/acidente-nuclear-no-japao-palestra-do.html" title="Acidente Nuclear no Japão: palestra do prof. Dr. Luís Antônio Albiac Terremoto" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>2</thr:total></entry><entry gd:etag="W/&quot;DEQCRno5fyp7ImA9WhZSGE4.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-3877833159299220307</id><published>2011-04-03T10:06:00.005-03:00</published><updated>2011-04-03T10:12:47.427-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-04-03T10:12:47.427-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Radioatividade" /><category scheme="http://www.blogger.com/atom/ns#" term="fissão nuclear" /><category scheme="http://www.blogger.com/atom/ns#" term="notícias" /><category scheme="http://www.blogger.com/atom/ns#" term="Reator nuclear" /><title>Entenda porque o reator nuclear aquece tanto!</title><content type="html">O simulador abaixo mostra a fissão do urânio existente nas varetas do reator nuclear. Você pode primeiro entender a fissão de um único núcleo de urânio e a seguir, testar a reação em cadeia e o funcionamento do reator.&lt;br /&gt;&lt;br /&gt;&lt;div style="position: relative; width: 300px; height: 225px;"&gt;&lt;a href="http://phet.colorado.edu/sims/nuclear-physics/nuclear-fission_en.jnlp" style="text-decoration: none;"&gt;&lt;img src="http://phet.colorado.edu/sims/nuclear-physics/nuclear-fission-screenshot.png" alt="Nuclear Fission" style="border: none;" width="300" height="225"/&gt;&lt;div style="position: absolute; width: 200px; height: 80px; left: 50px; top: 72px; background-color: #FFF; opacity: 0.6; filter: alpha(opacity = 60);"&gt;&lt;/div&gt;&lt;table style="position: absolute; width: 200px; height: 80px; left: 50px; top: 72px;"&gt;&lt;tr&gt;&lt;td style="text-align: center; color: #000; font-size: 24px; font-family: Arial,sans-serif;"&gt;Click to Run&lt;/td&gt;&lt;/tr&gt;&lt;/table&gt;&lt;/a&gt;&lt;/div&gt;&lt;br /&gt;&lt;br /&gt;Aproveite para mostrar aos estudantes! há muita confusão gerada pela mídia televisiva e jornalística em torno da questão nuclear!&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-3877833159299220307?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/3877833159299220307/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=3877833159299220307" title="1 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3877833159299220307?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/3877833159299220307?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/04/entenda-porque-o-reator-nuclear-aquece.html" title="Entenda porque o reator nuclear aquece tanto!" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><thr:total>1</thr:total></entry><entry gd:etag="W/&quot;CUENQHczcSp7ImA9WhZSEkk.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-5159228444208515461</id><published>2011-03-27T13:18:00.005-03:00</published><updated>2011-03-27T13:34:51.989-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-03-27T13:34:51.989-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Videos" /><category scheme="http://www.blogger.com/atom/ns#" term="acidentes nucleares" /><category scheme="http://www.blogger.com/atom/ns#" term="Energia Nuclear" /><title>Quais as vantagens e desvantagens no uso da Energia Nuclear</title><content type="html">Reportagem Veja Ciencia:Prof. Luís Antônio Albiac Terremoto,pesquisador do IPEN, explica as vantagens e desvantagens da energia nuclear.&lt;br /&gt;&lt;br /&gt;&lt;iframe title="radiação" src="http://webtv.abril.sambatech.com.br/001FB7/account/1/10/50a6a11c6ab798eec61cb7b9ab0f0c3e/vj_pege_crise_nuclear_01.mp4" allowfullscreen="" frameborder="0" height="390" width="640"&gt;&lt;/iframe&gt;&lt;br /&gt;&lt;br /&gt;&lt;span style="font-size:130%;"&gt;&lt;a href="http://veja.abril.com.br/noticia/ciencia/especialistas-tiram-duvidas-sobre-energia-nuclear"&gt;Quer saber mais visite o site da Veja clicando aqui&lt;/a&gt;&lt;/span&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-5159228444208515461?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/5159228444208515461/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=5159228444208515461" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/5159228444208515461?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/5159228444208515461?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/03/quais-as-vantagens-e-desvantagens-no.html" title="Quais as vantagens e desvantagens no uso da Energia Nuclear" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;D0EHR30-fip7ImA9WhZSGE4.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-7287975351744677216</id><published>2011-03-23T09:40:00.006-03:00</published><updated>2011-04-03T10:00:36.356-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-04-03T10:00:36.356-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Simulações" /><category scheme="http://www.blogger.com/atom/ns#" term="laser" /><title>Funcionamento de um Laser: Um simulador</title><content type="html">&lt;div align="justify"&gt;&lt;span style="font-size:130%;"&gt;Este aplicativo permite verificar o principio basico de funcionamento de um laser. Segue aqui algumas dicas:&lt;br /&gt;&lt;strong&gt;a.&lt;/strong&gt; Comece com um átomo e com a lampada a esquerda (lampada de controle 1) verifique a cor do laser que vc quer produzir. Clique em "Dois" Niveis de Energia&lt;br /&gt;&lt;strong&gt;b.&lt;/strong&gt; Encontre o estado metaestavel ou o de meia vida mais longa. Varie a meia vida deste estado para verificar o que ocorre.&lt;br /&gt;&lt;strong&gt;c.&lt;/strong&gt; Adicione espelhos e verifique como estes espelhos permitem confinar a luz no interior da cavidade, ou seja amplificar a radiação&lt;br /&gt;&lt;strong&gt;d.&lt;/strong&gt; Reduza a meia vida e observe o que ocorre com a radiação. Voce consegue confina-la?&lt;br /&gt;&lt;strong&gt;e. &lt;/strong&gt;Adicione mais um estado de energia clicando em "três" e Reduza por completo a intensidade da luz que fica a esquerda.&lt;br /&gt;&lt;strong&gt;f. &lt;/strong&gt;Insira os espelhos. Varie a intensidade da lampada que fica acima até que voce consiga confinar o maior numero de atomos possiveis na cavidade. Mantenha os espelhos em 100% de reflexao.&lt;br /&gt;&lt;strong&gt;g.&lt;/strong&gt; Varie o % de reflexão do espelho para começar a liberar a radiação. Pronto este é seu feixe de laser!&lt;br /&gt;&lt;br /&gt;Depois destas etapas clique na opçao multiplos átomos. Insira espelhos e varie a meia vida do 2o estado. Veja como é importante a relação entre a meia vida destes estados para o aumento de probabilidade neste confinamento..&lt;br /&gt;&lt;br /&gt;&lt;/span&gt;&lt;/div&gt;&lt;div style="POSITION: relative; WIDTH: 503px; HEIGHT: 317px"&gt;&lt;p align="right"&gt;&lt;a style="TEXT-DECORATION: none" href="http://phet.colorado.edu/sims/lasers/lasers_pt.jnlp"&gt;&lt;img style="BORDER-BOTTOM: medium none; BORDER-LEFT: medium none; WIDTH: 498px; HEIGHT: 298px; BORDER-TOP: medium none; BORDER-RIGHT: medium none" alt="Lasers" src="http://phet.colorado.edu/sims/lasers/lasers-screenshot.png" width="400" height="300" /&gt;&lt;/p&gt;&lt;div style="POSITION: absolute; FILTER: alpha(opacity = 60); BACKGROUND-COLOR: #fff; WIDTH: 200px; HEIGHT: 80px; TOP: 69px; LEFT: 50px; opacity: 0.6"&gt;&lt;/div&gt;&lt;table style="POSITION: absolute; WIDTH: 200px; HEIGHT: 80px; TOP: 69px; LEFT: 50px"&gt;&lt;tbody&gt;&lt;tr&gt;&lt;td style="TEXT-ALIGN: center; FONT-FAMILY: Arial, sans-serif; COLOR: #000; FONT-SIZE: 24px"&gt;&lt;p align="center"&gt;Clique para rodar o aplicativo&lt;/p&gt;&lt;/td&gt;&lt;/tr&gt;&lt;/tbody&gt;&lt;/table&gt;&lt;/a&gt;&lt;/div&gt;&lt;br /&gt;&lt;div align="justify"&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;Faça uma brincadeira em sala!! &lt;/strong&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;strong&gt;&lt;span style="font-size:130%;"&gt;&lt;/span&gt;&lt;/strong&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;Veja quem consegue ou que grupo consegue produzir mais rapidamente o feixe de laser... &lt;/strong&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="justify"&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;&lt;/strong&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="center"&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;Divirta-se.. &lt;/strong&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="center"&gt;&lt;strong&gt;&lt;span style="font-size:130%;"&gt;&lt;/span&gt;&lt;/strong&gt;&lt;/div&gt;&lt;div align="center"&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;Brinque a vontade... &lt;/strong&gt;&lt;/span&gt;&lt;/div&gt;&lt;div align="center"&gt;&lt;strong&gt;&lt;span style="font-size:130%;"&gt;&lt;/span&gt;&lt;/strong&gt;&lt;/div&gt;&lt;div align="center"&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;Dê asas a imaginação!! &lt;/strong&gt;&lt;/span&gt;&lt;/div&gt;&lt;p&gt;&lt;span style="font-size:130%;"&gt;&lt;strong&gt;Depois nos conte como foi a recepção dos estudantes!&lt;/strong&gt;&lt;/span&gt;&lt;/p&gt;&lt;p&gt;&lt;strong&gt;&lt;span style="font-size:130%;"&gt;Deixe aqui seus comentários e sugestões!&lt;/span&gt;&lt;/strong&gt;&lt;/p&gt;&lt;p&gt;&lt;/p&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-7287975351744677216?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/7287975351744677216/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=7287975351744677216" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7287975351744677216?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/7287975351744677216?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/03/funcionamento-de-um-laser.html" title="Funcionamento de um Laser: Um simulador" /><author><name>Profa. Marisa Cavalcante</name><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="22" height="32" src="http://3.bp.blogspot.com/_MWt_Igo8aZc/SvsOKMi5BdI/AAAAAAAAD5M/jdzlcdBRwOU/S220/eu+perfil+2+(2).jpg" /></author><thr:total>0</thr:total></entry><entry gd:etag="W/&quot;D0MDQ3s5fSp7ImA9Wx9aFkw.&quot;"><id>tag:blogger.com,1999:blog-1513803613669820811.post-4935007956410636554</id><published>2011-03-08T16:59:00.009-03:00</published><updated>2011-03-08T17:17:52.525-03:00</updated><app:edited xmlns:app="http://www.w3.org/2007/app">2011-03-08T17:17:52.525-03:00</app:edited><category scheme="http://www.blogger.com/atom/ns#" term="Carga específica do elétron" /><category scheme="http://www.blogger.com/atom/ns#" term="animações" /><category scheme="http://www.blogger.com/atom/ns#" term="Objetos Educacionais" /><category scheme="http://www.blogger.com/atom/ns#" term="Experimento de J. J. Thomson" /><title>J. J. Thomson, o experimento da carga específica do elétron e a televisão: o que há de comum?</title><content type="html">&lt;div style="text-align: justify;"&gt;&lt;a onblur="try {parent.deselectBloggerImageGracefully();} catch(e) {}" href="http://www.fisica.ufpb.br/%7Eromero/objetosaprendizagem/Rived/25cRaiosCatodicos/index.html"&gt;&lt;img style="float: left; margin: 0pt 10px 10px 0pt; cursor: pointer; width: 320px; height: 192px;" src="http://4.bp.blogspot.com/-2rKDqmmL2Go/TXaLt2HwKtI/AAAAAAAAAPk/efGq8pMhXhE/s320/televis%25C3%25A3o.JPG" alt="" id="BLOGGER_PHOTO_ID_5581802407910714066" border="0" /&gt;&lt;/a&gt;&lt;span style="font-weight: bold;"&gt;Como a televisão pode nos ajudar a tratar temas da Física Moderna?&lt;/span&gt;&lt;br /&gt;Há muitos programas/documentários que tratam dessas questões mas me refiro ao equipamento em si: o tubo da TV!&lt;br /&gt;Confira o Objeto Educacional sugerido, clicando na figura. A deflexão de feixes de elétrons por campos elétricos e magnéticos foi largamente explorada por J. J. Thomson e permitiu determinar a relação carga/massa dessas entidades, isto é, permitiu estudar seu carater corpuscular! Mais tarde, toda a tecnologia usada no experimento foi aperfeiçoada e deu origem a uma das midias mais importantes do século XX: a televisão!&lt;br /&gt;Explore o Objeto Educacional! Que abordagem você adotaria para utilizá-lo nas aulas de Física Moderna? Como elemento introdutório? Apenas demonstração? Sugeriria aos estudantes que utilizem para estudar eletromagnetismo?&lt;br /&gt;Comente conosco as possibilidades!&lt;br /&gt;&lt;br /&gt;&lt;/div&gt;&lt;div class="blogger-post-footer"&gt;&lt;img width='1' height='1' src='https://blogger.googleusercontent.com/tracker/1513803613669820811-4935007956410636554?l=fisicamodernaexperimental.blogspot.com' alt='' /&gt;&lt;/div&gt;</content><link rel="replies" type="application/atom+xml" href="http://fisicamodernaexperimental.blogspot.com/feeds/4935007956410636554/comments/default" title="Postar comentários" /><link rel="replies" type="text/html" href="http://www.blogger.com/comment.g?blogID=1513803613669820811&amp;postID=4935007956410636554" title="0 Comentários" /><link rel="edit" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4935007956410636554?v=2" /><link rel="self" type="application/atom+xml" href="http://www.blogger.com/feeds/1513803613669820811/posts/default/4935007956410636554?v=2" /><link rel="alternate" type="text/html" href="http://fisicamodernaexperimental.blogspot.com/2011/03/j-j-thomson-o-experimento-da-carga.html" title="J. J. Thomson, o experimento da carga específica do elétron e a televisão: o que há de comum?" /><author><name>Cristiane Tavolaro</name><uri>http://www.blogger.com/profile/18392477635893628041</uri><email>noreply@blogger.com</email><gd:image rel="http://schemas.google.com/g/2005#thumbnail" width="24" height="32" src="http://2.bp.blogspot.com/_nf9Ez59ToKM/SOfenkbyc3I/AAAAAAAAAA0/4PNLuV4SrNM/S220/DSC01170.JPG" /></author><media:thumbnail xmlns:media="http://search.yahoo.com/mrss/" url="http://4.bp.blogspot.com/-2rKDqmmL2Go/TXaLt2HwKtI/AAAAAAAAAPk/efGq8pMhXhE/s72-c/televis%25C3%25A3o.JPG" height="72" width="72" /><thr:total>0</thr:total></entry></feed>

