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	<title>EjerciciosFyQ</title>
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	<description>Ejercicios Resueltos, Situaciones de aprendizaje y V&#205;DEOS de F&#237;sica y Qu&#237;mica para Secundaria y Bachillerato</description>
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<item xml:lang="es">
		<title>Waves: relation between frequency and wavelength (3677)</title>
		<link>https://www.ejercicios-fyq.com/Waves-relation-between-frequency-and-wavelength-3677</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Waves-relation-between-frequency-and-wavelength-3677</guid>
		<dc:date>2016-08-23T08:44:14Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Propagation speed</dc:subject>
		<dc:subject>Wavelength</dc:subject>
		<dc:subject>SOLVED</dc:subject>

		<description>
&lt;p&gt;An electromagnetic wave is travelling through a vacuum. If its frequency is 1 MHz, what will be its wavelength?&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Waves" rel="directory"&gt;Waves&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Propagation-speed" rel="tag"&gt;Propagation speed&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Wavelength" rel="tag"&gt;Wavelength&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/SOLVED" rel="tag"&gt;SOLVED&lt;/a&gt;

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 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;An electromagnetic wave is travelling through a vacuum. If its frequency is 1 MHz, what will be its wavelength?&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;The propagation speed of a wave is the product between of its frequency and wavelength. You can solve for the wavelength using the equation: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/8e77d5ad636053e0a09966871bff61cd.png' style=&#034;vertical-align:middle;&#034; width=&#034;189&#034; height=&#034;43&#034; alt=&#034;v = \lambda \cdot \nu\ \to\ \color[RGB]{2,112,20}{\bm{\lambda= \frac{v}{\nu}}}&#034; title=&#034;v = \lambda \cdot \nu\ \to\ \color[RGB]{2,112,20}{\bm{\lambda= \frac{v}{\nu}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; The speed of an electromagnetic wave in a vacuum is the speed of light in a vacuum: &lt;br/&gt; &lt;br/&gt; &lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/b073e9156576cb6265a002b1f1427e7c.png' style=&#034;vertical-align:middle;&#034; width=&#034;305&#034; height=&#034;48&#034; alt=&#034;\lambda= \frac{3\cdot 10^8\ m\cdot \cancel{s^{-1}}}{10^6\ \cancel{s^{-1}}} = \fbox{\color[RGB]{192,0,0}{\bm{3\cdot 10^2\ m}}}&#034; title=&#034;\lambda= \frac{3\cdot 10^8\ m\cdot \cancel{s^{-1}}}{10^6\ \cancel{s^{-1}}} = \fbox{\color[RGB]{192,0,0}{\bm{3\cdot 10^2\ m}}}&#034; /&gt;&lt;/p&gt;
&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
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	</item>
<item xml:lang="es">
		<title>Time it takes for sunlight to reach the Earth (3165)</title>
		<link>https://www.ejercicios-fyq.com/Time-it-takes-for-sunlight-to-reach-the-Earth-3165</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Time-it-takes-for-sunlight-to-reach-the-Earth-3165</guid>
		<dc:date>2015-05-21T05:56:31Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>MRU</dc:subject>
		<dc:subject>Velocidad propagaci&#243;n</dc:subject>
		<dc:subject>RESUELTO</dc:subject>
		<dc:subject>Biling&#252;ismo</dc:subject>
		<dc:subject>EDICO</dc:subject>
		<dc:subject>Propagation speed</dc:subject>

		<description>
&lt;p&gt;There are 150 000 000 km between the Sun and the Earth. If the velocity of light in a vacuum is 300 000 km/s, how long does it take for light to reach the Earth?&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Forces-and-their-effects" rel="directory"&gt;Forces and their effects&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/MRU" rel="tag"&gt;MRU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Velocidad-propagacion" rel="tag"&gt;Velocidad propagaci&#243;n&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/RESUELTO" rel="tag"&gt;RESUELTO&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Bilinguismo" rel="tag"&gt;Biling&#252;ismo&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EDICO" rel="tag"&gt;EDICO&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Propagation-speed" rel="tag"&gt;Propagation speed&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;There are 150 000 000 km between the Sun and the Earth. If the velocity of light in a vacuum is 300 000 km/s, how long does it take for light to reach the Earth?&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;Clearing &lt;i&gt;time&lt;/i&gt; in the velocity equation (being &lt;i&gt;c&lt;/i&gt; the speed of light): &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/505db1472ee3c631a9a0c1c3557498b2.png' style=&#034;vertical-align:middle;&#034; width=&#034;157&#034; height=&#034;48&#034; alt=&#034;c = \frac{d}{t}\ \to\ \color[RGB]{2,112,20}{\bm{t = \frac{d}{c}}}&#034; title=&#034;c = \frac{d}{t}\ \to\ \color[RGB]{2,112,20}{\bm{t = \frac{d}{c}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Now is time to solve the equation: &lt;br/&gt; &lt;br/&gt; &lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/b7038729cafa3e52ad5b60d4e3eba687.png' style=&#034;vertical-align:middle;&#034; width=&#034;245&#034; height=&#034;58&#034; alt=&#034;t = \frac{1.5\cdot 10^8\ \cancel{km}}{3\cdot 10^5\frac{\cancel{km}}{s}}= \fbox{\color[RGB]{192,0,0}{\bf 500\ s}}&#034; title=&#034;t = \frac{1.5\cdot 10^8\ \cancel{km}}{3\cdot 10^5\frac{\cancel{km}}{s}}= \fbox{\color[RGB]{192,0,0}{\bf 500\ s}}&#034; /&gt;&lt;/p&gt;
&lt;/math&gt;&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;Descarga el enunciado y la resoluci&#243;n del problema en formato EDICO si lo necesitas&lt;/b&gt;.&lt;/p&gt;
&lt;div class='spip_document_1604 spip_document spip_documents spip_document_file spip_documents_center spip_document_center'&gt;
&lt;figure class=&#034;spip_doc_inner&#034;&gt;
&lt;a href='https://www.ejercicios-fyq.com/IMG/zip/ej_3165_edi.zip' class=&#034; spip_doc_lien&#034; title='Zip - 990 bytes' type=&#034;application/zip&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/plugins-dist/medias/prive/vignettes/zip.svg?1772792240' width='64' height='64' alt='' /&gt;&lt;/a&gt;
&lt;/figure&gt;
&lt;/div&gt;&lt;/div&gt;
		
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	</item>
<item xml:lang="es">
		<title>Relation between frequency and wavelength (3140)</title>
		<link>https://www.ejercicios-fyq.com/Relation-between-frequency-and-wavelength-3140</link>
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		<dc:date>2015-05-08T09:14:21Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Propagation speed</dc:subject>
		<dc:subject>Frequency</dc:subject>
		<dc:subject>Wavelength</dc:subject>
		<dc:subject>SOLVED</dc:subject>

		<description>
&lt;p&gt;A spring is producing waves with a frequency of 4 Hz and a wavelength 0.5 m. What is its velocity? What will be its wavelength if the frequency is doubled? What will be its wavelength if the frequency is reduced to half?&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Waves" rel="directory"&gt;Waves&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Propagation-speed" rel="tag"&gt;Propagation speed&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Frequency" rel="tag"&gt;Frequency&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Wavelength" rel="tag"&gt;Wavelength&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/SOLVED" rel="tag"&gt;SOLVED&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;A spring is producing waves with a frequency of 4 Hz and a wavelength 0.5 m. What is its velocity? What will be its wavelength if the frequency is doubled? What will be its wavelength if the frequency is reduced to half?&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;The wave's velocity is: &lt;br/&gt; &lt;br/&gt; &lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/01c027dfa14d6b8ca71d2cd5e077c506.png' style=&#034;vertical-align:middle;&#034; width=&#034;372&#034; height=&#034;37&#034; alt=&#034;{\color[RGB]{2,112,20}{\bm{v = \lambda \cdot \nu}}}\ \to\ v = 0.5\ m\cdot 4\ s^{-1} = \fbox{\color[RGB]{192,0,0}{\bm{2\ \frac{m}{s}}}}&#034; title=&#034;{\color[RGB]{2,112,20}{\bm{v = \lambda \cdot \nu}}}\ \to\ v = 0.5\ m\cdot 4\ s^{-1} = \fbox{\color[RGB]{192,0,0}{\bm{2\ \frac{m}{s}}}}&#034; /&gt;&lt;/p&gt; &lt;br/&gt; If velocity is constant, when the frequency is doubled, &lt;b&gt;the wavelength must be halved&lt;/b&gt;. &lt;br/&gt; &lt;br/&gt; Similarly, if the frequency is halved, &lt;b&gt;the wavelength must be doubled&lt;/b&gt;.&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
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	</item>
<item xml:lang="es">
		<title>Velocity of a wave (2911)</title>
		<link>https://www.ejercicios-fyq.com/Velocity-of-a-wave-2911</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Velocity-of-a-wave-2911</guid>
		<dc:date>2015-01-06T07:52:24Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Propagation speed</dc:subject>
		<dc:subject>SOLVED</dc:subject>

		<description>
&lt;p&gt;The wavelength of a wave is 0.00015 m and its frequency is 7 000 Hz. What is the velocity of the wave?&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Waves" rel="directory"&gt;Waves&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Propagation-speed" rel="tag"&gt;Propagation speed&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/SOLVED" rel="tag"&gt;SOLVED&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;The wavelength of a wave is 0.00015 m and its frequency is 7 000 Hz. What is the velocity of the wave?&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;The velocity of the wave is calculated using the formula: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/6fbb8a552bf0eb59c759959cd2c47a64.png' style=&#034;vertical-align:middle;&#034; width=&#034;88&#034; height=&#034;16&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{v= \lambda \cdot \nu}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{v= \lambda \cdot \nu}}&#034; /&gt;: &lt;br/&gt; &lt;br/&gt; Therefore, the velocity of the wave is: &lt;br/&gt; &lt;br/&gt; &lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/8c3c129abcc5c0597169cfc0e67a2722.png' style=&#034;vertical-align:middle;&#034; width=&#034;348&#034; height=&#034;37&#034; alt=&#034;v = 0.00015\ m\cdot 7\ 000\ Hz= \fbox{\color[RGB]{192,0,0}{\bm{1.05\ \frac{m}{s}}}}&#034; title=&#034;v = 0.00015\ m\cdot 7\ 000\ Hz= \fbox{\color[RGB]{192,0,0}{\bm{1.05\ \frac{m}{s}}}}&#034; /&gt;&lt;/p&gt;
&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>Refraction and speed of light (2759)</title>
		<link>https://www.ejercicios-fyq.com/Refraction-and-speed-of-light-2759</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Refraction-and-speed-of-light-2759</guid>
		<dc:date>2014-10-22T05:02:04Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Propagation speed</dc:subject>
		<dc:subject>Refractive index</dc:subject>
		<dc:subject>Refraction</dc:subject>
		<dc:subject>SOLVED</dc:subject>

		<description>
&lt;p&gt;The refractive index of green light in water is 1.42. What is its speed when it travels through water? &lt;br class='autobr' /&gt;
(Velocity of light in a vacuum is 300 000 km/s).&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Waves" rel="directory"&gt;Waves&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Propagation-speed" rel="tag"&gt;Propagation speed&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Refractive-index" rel="tag"&gt;Refractive index&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Refraction" rel="tag"&gt;Refraction&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/SOLVED" rel="tag"&gt;SOLVED&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;The refractive index of green light in water is 1.42. What is its speed when it travels through water?&lt;/p&gt;
&lt;p&gt;(Velocity of light in a vacuum is 300 000 km/s).&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;The formula for calculating the refractive index is: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/9393c9bdce5c7e01f166d3f9fe43976d.png' style=&#034;vertical-align:middle;&#034; width=&#034;63&#034; height=&#034;44&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{n = \frac{c}{v}}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{n = \frac{c}{v}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Solving the equation to determine the speed of light: &lt;br/&gt; &lt;br/&gt; &lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/94fb96afd2b467fe7d92b8bb49bdebbd.png' style=&#034;vertical-align:middle;&#034; width=&#034;358&#034; height=&#034;51&#034; alt=&#034;{\color[RGB]{2,112,20}{\bm{v = \frac{c}{n}}}} = \frac{300\ 000\ \frac{km}{s}}{1.42} = \fbox{\color[RGB]{192,0,0}{\bm{211\ 268\ \frac{km}{s}}}}&#034; title=&#034;{\color[RGB]{2,112,20}{\bm{v = \frac{c}{n}}}} = \frac{300\ 000\ \frac{km}{s}}{1.42} = \fbox{\color[RGB]{192,0,0}{\bm{211\ 268\ \frac{km}{s}}}}&#034; /&gt;&lt;/p&gt;
&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
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