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	<id>https://sciencetheatre.kaedon.net/mediawiki/index.php?action=history&amp;feed=atom&amp;title=Photoelectric_Effect</id>
	<title>Photoelectric Effect - Revision history</title>
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	<updated>2026-07-31T09:46:20Z</updated>
	<subtitle>Revision history for this page on the wiki</subtitle>
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		<id>https://sciencetheatre.kaedon.net/mediawiki/index.php?title=Photoelectric_Effect&amp;diff=934&amp;oldid=prev</id>
		<title>imported&gt;Stwikiadmin at 16:04, 30 August 2016</title>
		<link rel="alternate" type="text/html" href="https://sciencetheatre.kaedon.net/mediawiki/index.php?title=Photoelectric_Effect&amp;diff=934&amp;oldid=prev"/>
		<updated>2016-08-30T16:04:50Z</updated>

		<summary type="html">&lt;p&gt;&lt;/p&gt;
&lt;table style=&quot;background-color: #fff; color: #202122;&quot; data-mw=&quot;interface&quot;&gt;
				&lt;col class=&quot;diff-marker&quot; /&gt;
				&lt;col class=&quot;diff-content&quot; /&gt;
				&lt;col class=&quot;diff-marker&quot; /&gt;
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				&lt;td colspan=&quot;2&quot; style=&quot;background-color: #fff; color: #202122; text-align: center;&quot;&gt;← Older revision&lt;/td&gt;
				&lt;td colspan=&quot;2&quot; style=&quot;background-color: #fff; color: #202122; text-align: center;&quot;&gt;Revision as of 16:04, 30 August 2016&lt;/td&gt;
				&lt;/tr&gt;&lt;tr&gt;&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot; id=&quot;mw-diff-left-l45&quot;&gt;Line 45:&lt;/td&gt;
&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot;&gt;Line 45:&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Why This Works ==&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Why This Works ==&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;−&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;&lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;&amp;lt;!--&lt;/del&gt;&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt; &lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;The &amp;#039;&amp;#039;Photoelectric Effect&amp;#039;&amp;#039; is the phenomenon when a photon with sufficiently high energy can strike an electron and free it, resulting in an electric charge. When Einstein introduced this idea, he was the first to suggest the idea of a &amp;#039;&amp;#039;Photon&amp;#039;&amp;#039;, which is a light wave behaving like a particle. Einstein suggested that a light wave of sufficiently high energy could strike an electron on a metal surface and free it, and that for this to happen the light wave would have to act similarly to a particle. He built this idea off of the work of Max Planck, who developed this formula for the energy of an emitted electron:&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;The &amp;#039;&amp;#039;Photoelectric Effect&amp;#039;&amp;#039; is the phenomenon when a photon with sufficiently high energy can strike an electron and free it, resulting in an electric charge. When Einstein introduced this idea, he was the first to suggest the idea of a &amp;#039;&amp;#039;Photon&amp;#039;&amp;#039;, which is a light wave behaving like a particle. Einstein suggested that a light wave of sufficiently high energy could strike an electron on a metal surface and free it, and that for this to happen the light wave would have to act similarly to a particle. He built this idea off of the work of Max Planck, who developed this formula for the energy of an emitted electron:&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot; id=&quot;mw-diff-left-l53&quot;&gt;Line 53:&lt;/td&gt;
&lt;td colspan=&quot;2&quot; class=&quot;diff-lineno&quot;&gt;Line 53:&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &amp;#039;&amp;#039;&amp;#039;K&amp;#039;&amp;#039;&amp;#039;&amp;lt;sub&amp;gt;max&amp;lt;/sub&amp;gt;: Max Kinetic Energy for emitted electron&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &amp;#039;&amp;#039;&amp;#039;K&amp;#039;&amp;#039;&amp;#039;&amp;lt;sub&amp;gt;max&amp;lt;/sub&amp;gt;: Max Kinetic Energy for emitted electron&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|-&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|-&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;−&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &#039;&#039;f&#039;&#039;: &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;Wavelength &lt;/del&gt;of incoming light&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &#039;&#039;f&#039;&#039;: &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;Frequency &lt;/ins&gt;of incoming light&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|-&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|-&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;−&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &#039;&#039;f&#039;&#039;&amp;lt;sub&amp;gt;0&amp;lt;/sub&amp;gt;: Minimum &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;wavelength &lt;/del&gt;of light needed&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &#039;&#039;f&#039;&#039;&amp;lt;sub&amp;gt;0&amp;lt;/sub&amp;gt;: Minimum &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;frequency &lt;/ins&gt;of light needed&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|-&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|-&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &amp;#039;&amp;#039;&amp;#039;ħ&amp;#039;&amp;#039;&amp;#039;: Planck Constant = &amp;#039;&amp;#039;h&amp;#039;&amp;#039;/2(pi)&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;| &amp;#039;&amp;#039;&amp;#039;ħ&amp;#039;&amp;#039;&amp;#039;: Planck Constant = &amp;#039;&amp;#039;h&amp;#039;&amp;#039;/2(pi)&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|}&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;|}&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;−&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;For this equation, the incoming light needs to be at a higher &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;wavelength &lt;/del&gt;than what is needed to free the electron. If it isn&#039;t, then the equation would give a negative value, which means that nothing would happen. From this &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;equation&lt;/del&gt;, Einstein proposed that the light waves would have to act like particles, &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;which means &lt;/del&gt;that the &#039;&#039;&lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;intensity&lt;/del&gt;&#039;&#039; of the light &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;would &lt;/del&gt;not &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;make &lt;/del&gt;a &lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;difference&lt;/del&gt;.  &lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;For this equation, the incoming light needs to be at a higher &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;frequency &lt;/ins&gt;than what is needed to free the electron. If it isn&#039;t, then the equation would give a negative value, which means that nothing would happen. From this &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;to happen&lt;/ins&gt;, Einstein proposed that the light waves would have to act like particles&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;. He called these light particles &#039;&#039;Photons&#039;&#039;&lt;/ins&gt;, &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;and proposed that only the higher energy photons would be able to strike an electron and free it, while low energy photons would be unable to do so. What made this idea revolutionary is &lt;/ins&gt;that &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;it is unaffected by the &#039;&#039;Intensity&#039;&#039; of the light, or how bright the light is, and only affected by &lt;/ins&gt;the &#039;&#039;&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;Wavelength&lt;/ins&gt;&#039;&#039;&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;, or color of the light.&lt;/ins&gt;&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;−&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #ffe49c; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;&lt;del style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;--&amp;gt;&lt;/del&gt;&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt; &lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td colspan=&quot;2&quot; class=&quot;diff-side-deleted&quot;&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;Our circuit setup has electrons ready to jump across the gap in the bulb, but they don&#039;t have enough energy to do so. By using the flashlight, one can show how the color &lt;/ins&gt;of the light &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;affects it, while the brightness of the light, which stays the same for both colors, does &lt;/ins&gt;not&lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;. The red photons have &lt;/ins&gt;a &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;longer wavelength, and therefore a lower frequency, which is why they cannot trigger the circuit&lt;/ins&gt;. &lt;ins style=&quot;font-weight: bold; text-decoration: none;&quot;&gt;The blue photons have a shorter wavelength, and therefore a higher frequency, which is why they can trigger the circuit!&lt;/ins&gt;&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td colspan=&quot;2&quot; class=&quot;diff-side-deleted&quot;&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot; data-marker=&quot;+&quot;&gt;&lt;/td&gt;&lt;td style=&quot;color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #a3d3ff; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt; &lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Additional Information ==&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;== Additional Information ==&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;br&gt;&lt;/td&gt;&lt;/tr&gt;
&lt;tr&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;* This demonstration is a part of the [[Quantum Mechanics Show]]&lt;/div&gt;&lt;/td&gt;&lt;td class=&quot;diff-marker&quot;&gt;&lt;/td&gt;&lt;td style=&quot;background-color: #f8f9fa; color: #202122; font-size: 88%; border-style: solid; border-width: 1px 1px 1px 4px; border-radius: 0.33em; border-color: #eaecf0; vertical-align: top; white-space: pre-wrap;&quot;&gt;&lt;div&gt;* This demonstration is a part of the [[Quantum Mechanics Show]]&lt;/div&gt;&lt;/td&gt;&lt;/tr&gt;

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	<entry>
		<id>https://sciencetheatre.kaedon.net/mediawiki/index.php?title=Photoelectric_Effect&amp;diff=933&amp;oldid=prev</id>
		<title>imported&gt;Stwikiadmin: Created page with &quot;{| class=&quot;wikitable&quot; style=&quot;color:black; background-color:#ddd; margin-left: auto; float:right&quot; | Physics: | Photoelectric Effect |- | Grade Range: | Elementary School, [...&quot;</title>
		<link rel="alternate" type="text/html" href="https://sciencetheatre.kaedon.net/mediawiki/index.php?title=Photoelectric_Effect&amp;diff=933&amp;oldid=prev"/>
		<updated>2016-08-29T16:08:58Z</updated>

		<summary type="html">&lt;p&gt;Created page with &amp;quot;{| class=&amp;quot;wikitable&amp;quot; style=&amp;quot;color:black; background-color:#ddd; margin-left: auto; float:right&amp;quot; | &lt;a href=&quot;/mediawiki/index.php/Physics&quot; title=&quot;Physics&quot;&gt;Physics&lt;/a&gt;: | Photoelectric Effect |- | Grade Range: | &lt;a href=&quot;/mediawiki/index.php/Elementary_School&quot; class=&quot;mw-redirect&quot; title=&quot;Elementary School&quot;&gt;Elementary School&lt;/a&gt;, [...&amp;quot;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt;{| class=&amp;quot;wikitable&amp;quot; style=&amp;quot;color:black; background-color:#ddd; margin-left: auto; float:right&amp;quot;&lt;br /&gt;
| [[Physics]]:&lt;br /&gt;
| Photoelectric Effect&lt;br /&gt;
|-&lt;br /&gt;
| Grade Range:&lt;br /&gt;
| [[Elementary School]], [[Middle School]], [[High School]]&lt;br /&gt;
|-&lt;br /&gt;
| Format:&lt;br /&gt;
| [[Stage]]&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
This demonstration is a part of the [[Quantum Mechanics Show]] This demonstration is not typically performed by itself, since it does require background knowledge in the topic to be understood. In the Quantum Mechanics Show, this demonstration is scripted, so although this write-up does not provide a script, one should be aware of the differences that happen between scripted and non-scripted demonstrations.&lt;br /&gt;
&lt;br /&gt;
== Materials ==&lt;br /&gt;
&lt;br /&gt;
* Variable Transformer&lt;br /&gt;
* Photoelectric Effect Circuit&lt;br /&gt;
* Small Flashlight&lt;br /&gt;
* Red and Blue Color Filters&lt;br /&gt;
* Small Balls (Red, Green, Blue)&lt;br /&gt;
* Power Strip&lt;br /&gt;
;Non-Scripted Show Optional:&lt;br /&gt;
* Einstein Wig&lt;br /&gt;
* Labcoat&lt;br /&gt;
&lt;br /&gt;
== Safety Precautions ==&lt;br /&gt;
&lt;br /&gt;
Please read the General Safety Precautions section of the [[Demonstration Safety]] page before performing this demonstration. This demonstration uses a variable transformer, and is capable of delivering a dangerous shock. &amp;lt;u&amp;gt;&amp;#039;&amp;#039;&amp;#039;Do not let the alligator clips touch while it is on!&amp;#039;&amp;#039;&amp;#039;&amp;lt;/u&amp;gt; If they touch, they can cause permanent damage to the transformer or to the outlet they are plugged into.&lt;br /&gt;
&lt;br /&gt;
This demonstration requires: Safety Glasses&lt;br /&gt;
&lt;br /&gt;
== Demonstration ==&lt;br /&gt;
&lt;br /&gt;
;Preparation:&lt;br /&gt;
* Set up the circuit: prop the circuit board against either a box or the transformer, with the wire ends facing up. Connect the alligator clips to the wires, being sure that the metal parts are not touching. Once connected, make sure the knob for the transformer is turned all the way down before plugging it into the power strip. Turn on the power strip, then turn on the transformer using the switch on the back.&lt;br /&gt;
* Calibrate the transformer: The variable transformer usually needs to &amp;quot;warm up&amp;quot; before the show, so first slowly turn the knob until you reach a voltage that triggers the circuit. Once that happens, turn the knob backwards about 10%, and leave the transformer on. wait 5 minutes to see if it starts triggering again, and if not then re-find the point where it triggers. Once you do, turn it back about 2-3% and leave it on. It should stay at that setting for the performance.&lt;br /&gt;
;Presentation:&lt;br /&gt;
# Introduce the demonstration by talking briefly about how light can act like a particle as well as a wave. If dressed like Einstein, talk about how you discovered this property by using an experiment similar to what is now set up.&lt;br /&gt;
# Use the balls to illustrate what happens with the photoelectric effect: The red and blue balls are different wavelengths of light, and the green ball is an electron. Hold the red and blue balls in one hand, and the green in the other. Hit the electron with the red and explain that it doesn&amp;#039;t move, because the red has low energy. Hit the electron with the blue ball and throw it, explaining that the blue has high energy.&lt;br /&gt;
# Show the circuit, and explain the parts of the circuit to the audience. There is the switch, a small red bulb with two metal plates in it. There is a resistor, to get the right voltage, and there is the small speaker, which will indicate if the circuit is triggered. Point out that the circuit is getting some power, but it isn&amp;#039;t enough to trigger it.&lt;br /&gt;
# Hold the flashlight and the red filter, and shine the red light on the switch. Nothing happens!&lt;br /&gt;
# Hold the flashlight and the blue filter, and shine the blue light on the switch. It triggers! Can anyone identify the sound? (Homer Simpson saying &amp;quot;Mmm, Burger&amp;quot;)&lt;br /&gt;
# Ask the audience to answer the following: why did the blue light trigger the switch, but not the red? Remind them that the intensity of the light was the same, since you used the same light source. The only thing you changed was the color of the light!&lt;br /&gt;
&lt;br /&gt;
&lt;br /&gt;
== Why This Works ==&lt;br /&gt;
&amp;lt;!--&lt;br /&gt;
The &amp;#039;&amp;#039;Photoelectric Effect&amp;#039;&amp;#039; is the phenomenon when a photon with sufficiently high energy can strike an electron and free it, resulting in an electric charge. When Einstein introduced this idea, he was the first to suggest the idea of a &amp;#039;&amp;#039;Photon&amp;#039;&amp;#039;, which is a light wave behaving like a particle. Einstein suggested that a light wave of sufficiently high energy could strike an electron on a metal surface and free it, and that for this to happen the light wave would have to act similarly to a particle. He built this idea off of the work of Max Planck, who developed this formula for the energy of an emitted electron:&lt;br /&gt;
&lt;br /&gt;
{| class=&amp;quot;wikitable&amp;quot; style=&amp;quot;color:black; background-color:#ddd; text-align: left; margin-right: auto&amp;quot;&lt;br /&gt;
| &amp;#039;&amp;#039;&amp;#039;K&amp;#039;&amp;#039;&amp;#039;&amp;lt;sub&amp;gt;max&amp;lt;/sub&amp;gt; = &amp;#039;&amp;#039;&amp;#039;ħ&amp;#039;&amp;#039;&amp;#039;(&amp;#039;&amp;#039;f&amp;#039;&amp;#039; - &amp;#039;&amp;#039;f&amp;#039;&amp;#039;&amp;lt;sub&amp;gt;0&amp;lt;/sub&amp;gt;)&lt;br /&gt;
|-&lt;br /&gt;
| &amp;#039;&amp;#039;&amp;#039;K&amp;#039;&amp;#039;&amp;#039;&amp;lt;sub&amp;gt;max&amp;lt;/sub&amp;gt;: Max Kinetic Energy for emitted electron&lt;br /&gt;
|-&lt;br /&gt;
| &amp;#039;&amp;#039;f&amp;#039;&amp;#039;: Wavelength of incoming light&lt;br /&gt;
|-&lt;br /&gt;
| &amp;#039;&amp;#039;f&amp;#039;&amp;#039;&amp;lt;sub&amp;gt;0&amp;lt;/sub&amp;gt;: Minimum wavelength of light needed&lt;br /&gt;
|-&lt;br /&gt;
| &amp;#039;&amp;#039;&amp;#039;ħ&amp;#039;&amp;#039;&amp;#039;: Planck Constant = &amp;#039;&amp;#039;h&amp;#039;&amp;#039;/2(pi)&lt;br /&gt;
|}&lt;br /&gt;
&lt;br /&gt;
For this equation, the incoming light needs to be at a higher wavelength than what is needed to free the electron. If it isn&amp;#039;t, then the equation would give a negative value, which means that nothing would happen. From this equation, Einstein proposed that the light waves would have to act like particles, which means that the &amp;#039;&amp;#039;intensity&amp;#039;&amp;#039; of the light would not make a difference. &lt;br /&gt;
--&amp;gt;&lt;br /&gt;
== Additional Information ==&lt;br /&gt;
&lt;br /&gt;
* This demonstration is a part of the [[Quantum Mechanics Show]]&lt;/div&gt;</summary>
		<author><name>imported&gt;Stwikiadmin</name></author>
	</entry>
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