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	<title>EjerciciosFyQ</title>
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<item xml:lang="es">
		<title>[P(8526)] PAU Andaluc&#237;a: f&#237;sica (junio 2025) - bloque D - cuesti&#243;n b1 (8527)</title>
		<link>https://www.ejercicios-fyq.com/P-8526-PAU-Andalucia-fisica-junio-2025-bloque-D-cuestion-b1-8527</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/P-8526-PAU-Andalucia-fisica-junio-2025-bloque-D-cuestion-b1-8527</guid>
		<dc:date>2025-08-30T04:59:29Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>PAU</dc:subject>
		<dc:subject>Energ&#237;a enlace nuclear</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>EBAU</dc:subject>
		<dc:subject>Selectividad</dc:subject>

		<description>
&lt;p&gt;Clica sobre este enlace para ver el enunciado y las respuestas al problema que se resuelve en el v&#237;deo.&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/15-PAU-examenes-resueltos-de-anos-anteriores" rel="directory"&gt;15 - PAU: ex&#225;menes resueltos de a&#241;os anteriores&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/PAU" rel="tag"&gt;PAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Energia-enlace-nuclear" rel="tag"&gt;Energ&#237;a enlace nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EBAU-329" rel="tag"&gt;EBAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Selectividad" rel="tag"&gt;Selectividad&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;&lt;b&gt;&lt;a href='https://www.ejercicios-fyq.com/PAU-Andalucia-fisica-junio-2025-bloque-D-cuestion-b1-8526' class=&#034;spip_in&#034;&gt;Clica sobre este enlace&lt;/a&gt;&lt;/b&gt; para ver el enunciado y las respuestas al problema que se resuelve en el v&#237;deo.&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/-5tLnUuLDpE&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
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	</item>
<item xml:lang="es">
		<title>PAU Andaluc&#237;a: f&#237;sica (junio 2025) - bloque D - cuesti&#243;n b1 (8526)</title>
		<link>https://www.ejercicios-fyq.com/PAU-Andalucia-fisica-junio-2025-bloque-D-cuestion-b1-8526</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/PAU-Andalucia-fisica-junio-2025-bloque-D-cuestion-b1-8526</guid>
		<dc:date>2025-08-29T04:16:57Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>PAU</dc:subject>
		<dc:subject>Energ&#237;a enlace nuclear</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>EBAU</dc:subject>
		<dc:subject>Selectividad</dc:subject>
		<dc:subject>RESUELTO</dc:subject>

		<description>
&lt;p&gt;Un proyecto de investigaci&#243;n estudia producir la fisi&#243;n de mediante el bombardeo con neutrones para dar lugar a una part&#237;cula alfa y . i) Escribe la ecuaci&#243;n de la reacci&#243;n nuclear. ii) Calcula la energ&#237;a liberada cuando se forman 1.5 millones de n&#250;cleos de . &lt;br class='autobr' /&gt;
m() = 10.012937 u; m() = 7.016003 u; m() = 4.002603 u; = 1.008665 u; ;&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-Nuclear-2-o-Bach" rel="directory"&gt;F&#237;sica Nuclear (2.&#186; Bach)&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/PAU" rel="tag"&gt;PAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Energia-enlace-nuclear" rel="tag"&gt;Energ&#237;a enlace nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EBAU-329" rel="tag"&gt;EBAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Selectividad" rel="tag"&gt;Selectividad&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/RESUELTO" rel="tag"&gt;RESUELTO&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;Un proyecto de investigaci&#243;n estudia producir la fisi&#243;n de &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L29xH25/a08afa1a608844eb98daccc42098b102-8255c.png?1756441250' style='vertical-align:middle;' width='29' height='25' alt=&#034;\ce{^{10}_5B}&#034; title=&#034;\ce{^{10}_5B}&#034; /&gt; mediante el bombardeo con neutrones para dar lugar a una part&#237;cula alfa y &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L27xH25/52a1704607a18883d9e17a0dbdd22244-ae4a1.png?1756441250' style='vertical-align:middle;' width='27' height='25' alt=&#034;\ce{^7_3Li}&#034; title=&#034;\ce{^7_3Li}&#034; /&gt;. i) Escribe la ecuaci&#243;n de la reacci&#243;n nuclear. ii) Calcula la energ&#237;a liberada cuando se forman 1.5 millones de n&#250;cleos de &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L27xH25/52a1704607a18883d9e17a0dbdd22244-ae4a1.png?1756441250' style='vertical-align:middle;' width='27' height='25' alt=&#034;\ce{^7_3Li}&#034; title=&#034;\ce{^7_3Li}&#034; /&gt;.&lt;/p&gt;
&lt;p&gt;m(&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L29xH25/a08afa1a608844eb98daccc42098b102-8255c.png?1756441250' style='vertical-align:middle;' width='29' height='25' alt=&#034;\ce{^{10}_5B}&#034; title=&#034;\ce{^{10}_5B}&#034; /&gt;) = 10.012937 u; m(&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L27xH25/52a1704607a18883d9e17a0dbdd22244-ae4a1.png?1756441250' style='vertical-align:middle;' width='27' height='25' alt=&#034;\ce{^7_3Li}&#034; title=&#034;\ce{^7_3Li}&#034; /&gt;) = 7.016003 u; m(&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L25xH19/d2f3991ea7cefec6486bb554f38c1ce8-34f89.png?1733034244' style='vertical-align:middle;' width='25' height='19' alt=&#034;\ce{^4_2He}&#034; title=&#034;\ce{^4_2He}&#034; /&gt;) = 4.002603 u; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L32xH30/eed7e22b9b3ac190ea7e877a80334c33-4be1d.png?1756441250' style='vertical-align:middle;' width='32' height='30' alt=&#034;m_n&#034; title=&#034;m_n&#034; /&gt; = 1.008665 u; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L145xH19/4448d972b70264ea94fa38e0558dfce9-82ef8.png?1732969111' style='vertical-align:middle;' width='145' height='19' alt=&#034;1\ u = 1.66\cdot 10^{-27}\ kg&#034; title=&#034;1\ u = 1.66\cdot 10^{-27}\ kg&#034; /&gt;; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L155xH47/a4d0ba4bea70dc831994fd159c9fa57a-9a196.png?1732980356' style='vertical-align:middle;' width='155' height='47' alt=&#034;c = 3\cdot 10^8\ m\cdot s^{-1}&#034; title=&#034;c = 3\cdot 10^8\ m\cdot s^{-1}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;i) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/5613540c298cb667aefcf75b3940c640.png' style=&#034;vertical-align:middle;&#034; width=&#034;260&#034; height=&#034;37&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{10}_5B + ^1_0n -&gt; ^7_3Li + ^4_2He}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{10}_5B + ^1_0n -&gt; ^7_3Li + ^4_2He}}}}&#034; /&gt; &lt;br/&gt; ii) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/de525fe908edb8262281fbb166039c29.png' style=&#034;vertical-align:middle;&#034; width=&#034;212&#034; height=&#034;33&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\bm{E = -6.71\cdot 10^{-7}\ J}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\bm{E = -6.71\cdot 10^{-7}\ J}}}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;p&gt;&lt;u&gt;RESOLUCI&#211;N DEL PROBLEMA EN V&#205;DEO&lt;/u&gt;.&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/-5tLnUuLDpE&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>[P(2193)] EBAU Andaluc&#237;a: f&#237;sica (junio 2013) - ejercicio A.4 (8462)</title>
		<link>https://www.ejercicios-fyq.com/P-2193-EBAU-Andalucia-fisica-junio-2013-ejercicio-A-4-8462</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/P-2193-EBAU-Andalucia-fisica-junio-2013-ejercicio-A-4-8462</guid>
		<dc:date>2025-05-13T03:08:21Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>PAU</dc:subject>
		<dc:subject>Energ&#237;a enlace nuclear</dc:subject>
		<dc:subject>Defecto masa</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>EBAU</dc:subject>
		<dc:subject>Selectividad</dc:subject>
		<dc:subject>Fusi&#243;n nuclear</dc:subject>
		<dc:subject>EvAU</dc:subject>

		<description>
&lt;p&gt;Si haces clic en este enlace puedes ver el enunciado y las respuestas del ejercicio que se resuelve en el v&#237;deo.&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/15-PAU-examenes-resueltos-de-anos-anteriores" rel="directory"&gt;15 - PAU: ex&#225;menes resueltos de a&#241;os anteriores&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/PAU" rel="tag"&gt;PAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Energia-enlace-nuclear" rel="tag"&gt;Energ&#237;a enlace nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Defecto-masa" rel="tag"&gt;Defecto masa&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EBAU-329" rel="tag"&gt;EBAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Selectividad" rel="tag"&gt;Selectividad&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Fusion-nuclear" rel="tag"&gt;Fusi&#243;n nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EvAU" rel="tag"&gt;EvAU&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;&lt;b&gt;&lt;a href='https://www.ejercicios-fyq.com/EBAU-Andalucia-fisica-junio-2013-ejercicio-A-4-2193' class=&#034;spip_in&#034;&gt;Si haces clic en este enlace&lt;/a&gt;&lt;/b&gt; puedes ver el enunciado y las respuestas del ejercicio que se resuelve en el v&#237;deo.&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/3f-Rsd9qFnE&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>Constante de desintegraci&#243;n y actividad radiactiva de la desintegraci&#243;n alfa del radio (8455)</title>
		<link>https://www.ejercicios-fyq.com/Constante-de-desintegracion-y-actividad-radiactiva-de-la-desintegracion-alfa</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Constante-de-desintegracion-y-actividad-radiactiva-de-la-desintegracion-alfa</guid>
		<dc:date>2025-05-07T05:12:27Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Radiactividad</dc:subject>
		<dc:subject>Actividad radiactiva</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>RESUELTO</dc:subject>
		<dc:subject>Constante radiactiva</dc:subject>

		<description>
&lt;p&gt;Un n&#250;cleo de (radio-226) experimenta desintegraci&#243;n con una vida media a&#241;os, transform&#225;ndose en (rad&#243;n-222). &lt;br class='autobr' /&gt;
a) Escribe la reacci&#243;n nuclear correspondiente a este proceso. &lt;br class='autobr' /&gt;
b) Calcula la constante de desintegraci&#243;n (), expresada en . &lt;br class='autobr' /&gt;
c) Determina la actividad inicial de una muestra de 1.00 g de . &lt;br class='autobr' /&gt;
d) &#191;Cu&#225;nto tiempo tardar&#225; la muestra en reducir su actividad al del valor inicial, expresado en a&#241;os? &lt;br class='autobr' /&gt;
Datos: ; .&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-nuclear" rel="directory"&gt;F&#237;sica nuclear&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Radiactividad" rel="tag"&gt;Radiactividad&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Actividad-radiactiva" rel="tag"&gt;Actividad radiactiva&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&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/Constante-radiactiva" rel="tag"&gt;Constante radiactiva&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;Un n&#250;cleo de &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L51xH25/faa2d5db8064f763daddcc60cb9777d9-eaa89.png?1746595023' style='vertical-align:middle;' width='51' height='25' alt=&#034;^{226}_{88}\ce{Ra}&#034; title=&#034;^{226}_{88}\ce{Ra}&#034; /&gt; (radio-226) experimenta desintegraci&#243;n &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L18xH30/7b7f9dbfea05c83784f8b85149852f08-0bef3.png?1732958350' style='vertical-align:middle;' width='18' height='30' alt=&#034;\alpha&#034; title=&#034;\alpha&#034; /&gt; con una vida media &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L111xH20/2e3e8a09b218cc7f689238d55a6b44c4-67459.png?1746595023' style='vertical-align:middle;' width='111' height='20' alt=&#034;\tau = 1.6\cdot 10^3&#034; title=&#034;\tau = 1.6\cdot 10^3&#034; /&gt; a&#241;os, transform&#225;ndose en &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L52xH25/be51200bac8e8413c62601e3bcc53514-8dee3.png?1746595023' style='vertical-align:middle;' width='52' height='25' alt=&#034;^{222}_{86}\ce{Rn}&#034; title=&#034;^{222}_{86}\ce{Rn}&#034; /&gt; (rad&#243;n-222).&lt;/p&gt;
&lt;p&gt;a) Escribe la reacci&#243;n nuclear correspondiente a este proceso.&lt;/p&gt;
&lt;p&gt;b) Calcula la constante de desintegraci&#243;n (&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L18xH40/c6a6eb61fd9c6c913da73b3642ca147d-61502.png?1732970442' style='vertical-align:middle;' width='18' height='40' alt=&#034;\lambda&#034; title=&#034;\lambda&#034; /&gt;), expresada en &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L28xH20/12aeca6f151fa63be6365ff4b77c5cef-30eec.png?1733070831' style='vertical-align:middle;' width='28' height='20' alt=&#034;s^{-1}&#034; title=&#034;s^{-1}&#034; /&gt;.&lt;/p&gt;
&lt;p&gt;c) Determina la actividad inicial de una muestra de 1.00 g de &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L51xH20/6590ab38f9f4f5cb411625b8cfcfefb7-6f9ea.png?1746595023' style='vertical-align:middle;' width='51' height='20' alt=&#034;^{226}\ce{Ra}&#034; title=&#034;^{226}\ce{Ra}&#034; /&gt;.&lt;/p&gt;
&lt;p&gt;d) &#191;Cu&#225;nto tiempo tardar&#225; la muestra en reducir su actividad al &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L40xH19/6052316fbea45df4b6ba450703c0534b-46ab4.png?1732990643' style='vertical-align:middle;' width='40' height='19' alt=&#034;10\ \%&#034; title=&#034;10\ \%&#034; /&gt; del valor inicial, expresado en a&#241;os?&lt;/p&gt;
&lt;p&gt;Datos: &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L206xH24/0bd56e8344abb080dabf31e6ade0c83c-3f7c8.png?1746595023' style='vertical-align:middle;' width='206' height='24' alt=&#034;M_{^{226}\ce{Ra}} = 226\ g\cdot \text{mol}^{-1}&#034; title=&#034;M_{^{226}\ce{Ra}} = 226\ g\cdot \text{mol}^{-1}&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L218xH22/67982dbeba444f4f386b76da0f373513-606e4.png?1746595023' style='vertical-align:middle;' width='218' height='22' alt=&#034;N_A = 6.022\cdot 10^{23}\ \text{mol}^{-1}&#034; title=&#034;N_A = 6.022\cdot 10^{23}\ \text{mol}^{-1}&#034; /&gt;.&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;a) La desintegraci&#243;n &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/7b7f9dbfea05c83784f8b85149852f08.png' style=&#034;vertical-align:middle;&#034; width=&#034;18&#034; height=&#034;30&#034; alt=&#034;\alpha&#034; title=&#034;\alpha&#034; /&gt; del &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/faa2d5db8064f763daddcc60cb9777d9.png' style=&#034;vertical-align:middle;&#034; width=&#034;51&#034; height=&#034;25&#034; alt=&#034;^{226}_{88}\ce{Ra}&#034; title=&#034;^{226}_{88}\ce{Ra}&#034; /&gt; produce un n&#250;cleo de &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/be51200bac8e8413c62601e3bcc53514.png' style=&#034;vertical-align:middle;&#034; width=&#034;52&#034; height=&#034;25&#034; alt=&#034;^{222}_{86}\ce{Rn}&#034; title=&#034;^{222}_{86}\ce{Rn}&#034; /&gt; y una part&#237;cula alfa: &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/7aa369bb3e3045bf1a8ac789506b2a58.png' style=&#034;vertical-align:middle;&#034; width=&#034;258&#034; height=&#034;37&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{226}_{88}Ra -&gt; ^{222}_{86}Rn + ^4_2He}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{226}_{88}Ra -&gt; ^{222}_{86}Rn + ^4_2He}}}}&#034; /&gt;&lt;/p&gt; &lt;br/&gt; b) La vida media est&#225; relacionada con la constante de desintegraci&#243;n por medio de la ecuaci&#243;n: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/8689f1eebd704c4b34fdc40b0d3e8318.png' style=&#034;vertical-align:middle;&#034; width=&#034;171&#034; height=&#034;47&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{\tau = \frac{1}{\lambda}\ \to \lambda = \frac{1}{\tau}}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{\tau = \frac{1}{\lambda}\ \to \lambda = \frac{1}{\tau}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Debes expresar la vida media en segundos: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/77e8368265bce79969d9ed79cad2d74a.png' style=&#034;vertical-align:middle;&#034; width=&#034;585&#034; height=&#034;51&#034; alt=&#034;\tau = 1.6\cdot 10^3\ \cancel{a\tilde{n}os}\cdot \frac{365\ \cancel{d\acute{\imath}as}}{1\ \cancel{a\tilde{n}o}}\cdot \frac{24\ \cancel{h}}{1\ \cancel{d\acute{\imath}a}}\cdot \frac{3.6\cdot 10^3\ s}{1\ \cancel{h}} = \color[RGB]{0,112,192}{\bm{5.05\cdot 10^{10}\ s}}&#034; title=&#034;\tau = 1.6\cdot 10^3\ \cancel{a\tilde{n}os}\cdot \frac{365\ \cancel{d\acute{\imath}as}}{1\ \cancel{a\tilde{n}o}}\cdot \frac{24\ \cancel{h}}{1\ \cancel{d\acute{\imath}a}}\cdot \frac{3.6\cdot 10^3\ s}{1\ \cancel{h}} = \color[RGB]{0,112,192}{\bm{5.05\cdot 10^{10}\ s}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Sustituyes este valor y calculas la constante de desintegraci&#243;n: &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/d2ed4568cc8913f89e6aa726a615a674.png' style=&#034;vertical-align:middle;&#034; width=&#034;351&#034; height=&#034;45&#034; alt=&#034;\lambda = \frac{1}{5.05\cdot 10^{10}\ s} = \fbox{\color[RGB]{192,0,0}{\bm{1.98\cdot 10^{-11}\ s^{-1}}}}&#034; title=&#034;\lambda = \frac{1}{5.05\cdot 10^{10}\ s} = \fbox{\color[RGB]{192,0,0}{\bm{1.98\cdot 10^{-11}\ s^{-1}}}}&#034; /&gt;&lt;/p&gt; &lt;br/&gt; c) La actividad se define en funci&#243;n del n&#250;mero de n&#250;cleos radiactivos con la ecuaci&#243;n: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/ffea3bc7262493ad1b1743397b5bd46e.png' style=&#034;vertical-align:middle;&#034; width=&#034;102&#034; height=&#034;17&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{A = \lambda\cdot N}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{A = \lambda\cdot N}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Tienes que determinar el n&#250;mero de n&#250;cleos que est&#225;n contenidos en el gramo de radio de partida. Para ello, multiplicas los moles de radio por el n&#250;mero de Avogadro, seg&#250;n la ecuaci&#243;n: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/a1a4a6ee626ad714d8038dd8ce4edee3.png' style=&#034;vertical-align:middle;&#034; width=&#034;134&#034; height=&#034;43&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{N = \frac{m}{M}\cdot N_A}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{N = \frac{m}{M}\cdot N_A}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Sustituyes y calculas: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/e511226da4781bb795d75c96cdad2b7c.png' style=&#034;vertical-align:middle;&#034; width=&#034;657&#034; height=&#034;51&#034; alt=&#034;N = \frac{1.00\ \cancel{g}}{226\ \cancel{g}\cdot \cancel{\text{mol}^{-1}}}\cdot 6.022\cdot 10^{23}\ n\acute{u}cleos\cdot \cancel{\text{mol}^{-1}} = \color[RGB]{0,112,192}{\bm{2.66\cdot 10^{21}\ n\acute{u}cleos}}&#034; title=&#034;N = \frac{1.00\ \cancel{g}}{226\ \cancel{g}\cdot \cancel{\text{mol}^{-1}}}\cdot 6.022\cdot 10^{23}\ n\acute{u}cleos\cdot \cancel{\text{mol}^{-1}} = \color[RGB]{0,112,192}{\bm{2.66\cdot 10^{21}\ n\acute{u}cleos}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; La actividad inicial es: &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/a4fc6a67ba5b56418d6ead66947cb50f.png' style=&#034;vertical-align:middle;&#034; width=&#034;648&#034; height=&#034;34&#034; alt=&#034;{\color[RGB]{2,112,20}{\bm{A_0 = \lambda\cdot N}}} = 1.98\cdot 10^{-11}\ s^{-1}\cdot 2.66\cdot 10^{21}\ n\acute{u}cleos = \fbox{\color[RGB]{192,0,0}{\bm{5.27\cdot 10^{10}\ Bq}}}&#034; title=&#034;{\color[RGB]{2,112,20}{\bm{A_0 = \lambda\cdot N}}} = 1.98\cdot 10^{-11}\ s^{-1}\cdot 2.66\cdot 10^{21}\ n\acute{u}cleos = \fbox{\color[RGB]{192,0,0}{\bm{5.27\cdot 10^{10}\ Bq}}}&#034; /&gt;&lt;/p&gt; &lt;br/&gt; d) La actividad decae exponencialmente con el tiempo seg&#250;n la ecuaci&#243;n: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/8ebbddfa3071f0ce23c69ef8780097a3.png' style=&#034;vertical-align:middle;&#034; width=&#034;147&#034; height=&#034;25&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{A(t) = A_0 e^{-\lambda t}}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{A(t) = A_0 e^{-\lambda t}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Como la actividad debe ser el &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/6052316fbea45df4b6ba450703c0534b.png' style=&#034;vertical-align:middle;&#034; width=&#034;40&#034; height=&#034;19&#034; alt=&#034;10\ \%&#034; title=&#034;10\ \%&#034; /&gt; de la actividad inicial, la ecuaci&#243;n anterior queda como: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/a1afe34f416a44aaaa3383d2338b8d53.png' style=&#034;vertical-align:middle;&#034; width=&#034;357&#034; height=&#034;25&#034; alt=&#034;0.10 A_0 = A_0 e^{-\lambda t}\ \to\ \color[RGB]{2,112,20}{\bm{ln(0.10) = -\lambda t}}&#034; title=&#034;0.10 A_0 = A_0 e^{-\lambda t}\ \to\ \color[RGB]{2,112,20}{\bm{ln(0.10) = -\lambda t}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Despejas el valor de &#171;t&#187; y calculas: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/6687072d988c308ed68b6fd93cb4b62c.png' style=&#034;vertical-align:middle;&#034; width=&#034;472&#034; height=&#034;50&#034; alt=&#034;{\color[RGB]{2,112,20}{\bm{t = \frac{-\ln(0.10)}{\lambda}}}} = \frac{2.303}{1.98\cdot 10^{-11}\ s^{-1}} = \color[RGB]{0,112,192}{\bm{1.16\cdot 10^{11}\ s}}&#034; title=&#034;{\color[RGB]{2,112,20}{\bm{t = \frac{-\ln(0.10)}{\lambda}}}} = \frac{2.303}{1.98\cdot 10^{-11}\ s^{-1}} = \color[RGB]{0,112,192}{\bm{1.16\cdot 10^{11}\ s}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Lo &#250;ltimo que debes hacer es el cambio de unidades para expresar el tiempo en a&#241;os: &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/82aa0a5ce794278f96a2bd96de51634c.png' style=&#034;vertical-align:middle;&#034; width=&#034;469&#034; height=&#034;50&#034; alt=&#034;t = 1.16\cdot 10^{11}\ \cancel{s}\cdot \frac{1\ a\tilde{n}o}{3.154\cdot 10^7\ \cancel{s}} = \fbox{\color[RGB]{192,0,0}{\bm{3.68\cdot 10^3\ a\tilde{n}os}}}}&#034; title=&#034;t = 1.16\cdot 10^{11}\ \cancel{s}\cdot \frac{1\ a\tilde{n}o}{3.154\cdot 10^7\ \cancel{s}} = \fbox{\color[RGB]{192,0,0}{\bm{3.68\cdot 10^3\ a\tilde{n}os}}}}&#034; /&gt;&lt;/p&gt;
&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>[P(8417)] Desintegraci&#243;n alfa, energ&#237;a liberada y energ&#237;a cin&#233;tica de la part&#237;cula alfa (8418)</title>
		<link>https://www.ejercicios-fyq.com/P-8417-Desintegracion-alfa-energia-liberada-y-energia-cinetica-de-la-particula</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/P-8417-Desintegracion-alfa-energia-liberada-y-energia-cinetica-de-la-particula</guid>
		<dc:date>2025-03-21T05:44:29Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Defecto masa</dc:subject>
		<dc:subject>Radiactividad</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>

		<description>
&lt;p&gt;Para ver el enunciado y las soluciones del problema que se resuelve en el v&#237;deo, haz clic en este enlace.&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-nuclear-287" rel="directory"&gt;F&#237;sica nuclear&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Defecto-masa" rel="tag"&gt;Defecto masa&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Radiactividad" rel="tag"&gt;Radiactividad&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;Para ver el enunciado y las soluciones del problema que se resuelve en el v&#237;deo, &lt;b&gt;&lt;a href='https://www.ejercicios-fyq.com/Desintegracion-alfa-energia-liberada-y-energia-cinetica-de-la-particula-alfa' class=&#034;spip_in&#034;&gt;haz clic en este enlace&lt;/a&gt;&lt;/b&gt;.&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/mindgMsQ_vM&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>Energ&#237;a liberada en la fisi&#243;n del uranio-235 y reacci&#243;n de fisi&#243;n nuclear (8416)</title>
		<link>https://www.ejercicios-fyq.com/Energia-liberada-en-la-fision-del-uranio-235-y-reaccion-de-fision-nuclear-8416</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Energia-liberada-en-la-fision-del-uranio-235-y-reaccion-de-fision-nuclear-8416</guid>
		<dc:date>2025-03-18T05:09:18Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Defecto masa</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>Fisi&#243;n nuclear</dc:subject>
		<dc:subject>RESUELTO</dc:subject>

		<description>
&lt;p&gt;Un n&#250;cleo de uranio-235 () experimenta una fisi&#243;n nuclear y se divide en dos fragmentos, uno de los cuales es kript&#243;n-92 () y el otro es bario-141 (). Adem&#225;s, se emiten tres neutrones (3n) en el proceso. &lt;br class='autobr' /&gt;
a) Escribe la ecuaci&#243;n nuclear que describe esta reacci&#243;n de fisi&#243;n. &lt;br class='autobr' /&gt;
b) Calcula la energ&#237;a liberada en esta reacci&#243;n, expresada en MeV. &lt;br class='autobr' /&gt;
Datos: ; ; ;&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-nuclear" rel="directory"&gt;F&#237;sica nuclear&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Defecto-masa" rel="tag"&gt;Defecto masa&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Fision-nuclear" rel="tag"&gt;Fisi&#243;n nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/RESUELTO" rel="tag"&gt;RESUELTO&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;Un n&#250;cleo de uranio-235 (&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L39xH20/8ab43f4747a30d3726d9fca5ca8c07be-0f109.png?1742274782' style='vertical-align:middle;' width='39' height='20' alt=&#034;^{235}\text{U}&#034; title=&#034;^{235}\text{U}&#034; /&gt;) experimenta una fisi&#243;n nuclear y se divide en dos fragmentos, uno de los cuales es kript&#243;n-92 (&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L40xH19/1d0a92770ffc48a9f346adbaaff2d831-bb3b3.png?1742274782' style='vertical-align:middle;' width='40' height='19' alt=&#034;^{92}\text{Kr}&#034; title=&#034;^{92}\text{Kr}&#034; /&gt;) y el otro es bario-141 (&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L49xH20/3a7539a6427f0f4427c3af6f94d6e128-caa23.png?1742274782' style='vertical-align:middle;' width='49' height='20' alt=&#034;^{141}\text{Ba}&#034; title=&#034;^{141}\text{Ba}&#034; /&gt;). Adem&#225;s, se emiten tres neutrones (3n) en el proceso.&lt;/p&gt;
&lt;p&gt;a) Escribe la ecuaci&#243;n nuclear que describe esta reacci&#243;n de fisi&#243;n.&lt;/p&gt;
&lt;p&gt;b) Calcula la energ&#237;a liberada en esta reacci&#243;n, expresada en MeV.&lt;/p&gt;
&lt;p&gt;Datos: &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L192xH25/718325e67d98f10db3ea2036f4e4751b-7e784.png?1742274782' style='vertical-align:middle;' width='192' height='25' alt=&#034;m(^{235}\text{U}): 235.0439\ u&#034; title=&#034;m(^{235}\text{U}): 235.0439\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L182xH25/70ff49c9152c8731a15350c3ecd3a91d-2b62f.png?1742274782' style='vertical-align:middle;' width='182' height='25' alt=&#034;m(^{92}\text{Kr}): 91.9262\ u&#034; title=&#034;m(^{92}\text{Kr}): 91.9262\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L202xH25/75273c0effdb23246bdb71d6b68ea88a-3ecd4.png?1742274782' style='vertical-align:middle;' width='202' height='25' alt=&#034;m(^{141}\text{Ba}): 140.9144\ u&#034; title=&#034;m(^{141}\text{Ba}): 140.9144\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L124xH20/ac0387503621d6f26cbca30c81be7ce7-00e5b.png?1742274782' style='vertical-align:middle;' width='124' height='20' alt=&#034;m_n: 1.0087\ u&#034; title=&#034;m_n: 1.0087\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L205xH20/2d9859f0ef2e1aa42b58e4296d195898-8174f.png?1742274782' style='vertical-align:middle;' width='205' height='20' alt=&#034;1\ u = 931.5\ MeV\cdot c^{-2}&#034; title=&#034;1\ u = 931.5\ MeV\cdot c^{-2}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;a) La ecuaci&#243;n nuclear de la fisi&#243;n descrita en el enunciado es: &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/dac1ca764ebe80acdf0b09df6503e686.png' style=&#034;vertical-align:middle;&#034; width=&#034;371&#034; height=&#034;34&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{235}U + ^1n -&gt; ^{92}Kr + ^{141}Ba + 3^1n}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{235}U + ^1n -&gt; ^{92}Kr + ^{141}Ba + 3^1n}}}}&#034; /&gt;&lt;/p&gt; &lt;br/&gt; Un neutr&#243;n incide sobre el n&#250;cleo de uranio-235 y provoca su fisi&#243;n en los dos fragmentos mencionados, liberando tres neutrones adicionales. &lt;br/&gt; &lt;br/&gt; b) Para calcular la energ&#237;a liberada debes utilizar la ecuaci&#243;n de Einstein que relaciona el defecto de masa con la energ&#237;a: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/ef2fdb20f508ff2408089a515f209600.png' style=&#034;vertical-align:middle;&#034; width=&#034;127&#034; height=&#034;20&#034; alt=&#034;\color[RGB]{2,112,20}{\bm{E = \Delta m \cdot c^2}}&#034; title=&#034;\color[RGB]{2,112,20}{\bm{E = \Delta m \cdot c^2}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; Debes calcular la masa al inicio y al final de la reacci&#243;n: &lt;br/&gt; &lt;br/&gt; &lt;u&gt;Masa inicial&lt;/u&gt;: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/d15b898525cb0358e117e056c1bcb2ec.png' style=&#034;vertical-align:middle;&#034; width=&#034;577&#034; height=&#034;25&#034; alt=&#034;m_i = m(\ce{^{235}U}) + m(\ce{^1n}) = (235.0439 + 1.0087)\ u = \color[RGB]{0,112,192}{\bf 236.0526\ u}&#034; title=&#034;m_i = m(\ce{^{235}U}) + m(\ce{^1n}) = (235.0439 + 1.0087)\ u = \color[RGB]{0,112,192}{\bf 236.0526\ u}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; &lt;u&gt;Masa final&lt;/u&gt;: &lt;br/&gt; &lt;br/&gt; &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/5d15a83535d5acd6d197019ac328ac32.png' style=&#034;vertical-align:middle;&#034; width=&#034;824&#034; height=&#034;25&#034; alt=&#034;m_f = m(\ce{^{92}Kr}) + m(\ce{^{141}Ba}) + 3m(\ce{^1n}) = (91.9262 + 140.9144 + 3\cdot 1.0087)\ u = \color[RGB]{0,112,192}{\bf 235.8667\ u}&#034; title=&#034;m_f = m(\ce{^{92}Kr}) + m(\ce{^{141}Ba}) + 3m(\ce{^1n}) = (91.9262 + 140.9144 + 3\cdot 1.0087)\ u = \color[RGB]{0,112,192}{\bf 235.8667\ u}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; La energ&#237;a liberada es: &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/9b1d58d2b0387d0122950033253128d7.png' style=&#034;vertical-align:middle;&#034; width=&#034;860&#034; height=&#034;50&#034; alt=&#034;E = (m_f - m_i)\cdot c^2 = (235.8667 - 236.0526)\ \cancel{u}\cdot \cancel{c^2}\cdot \frac{931.5\ MeV\cdot \cancel{c^{-2}}}{1\ \cancel{u}}\ \to\ \fbox{\color[RGB]{192,0,0}{\bf E = -173.1\ MeV}}&#034; title=&#034;E = (m_f - m_i)\cdot c^2 = (235.8667 - 236.0526)\ \cancel{u}\cdot \cancel{c^2}\cdot \frac{931.5\ MeV\cdot \cancel{c^{-2}}}{1\ \cancel{u}}\ \to\ \fbox{\color[RGB]{192,0,0}{\bf E = -173.1\ MeV}}&#034; /&gt;&lt;/p&gt;
&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>Desintegraci&#243;n alfa, energ&#237;a liberada y energ&#237;a cin&#233;tica de la part&#237;cula alfa (8417)</title>
		<link>https://www.ejercicios-fyq.com/Desintegracion-alfa-energia-liberada-y-energia-cinetica-de-la-particula-alfa</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Desintegracion-alfa-energia-liberada-y-energia-cinetica-de-la-particula-alfa</guid>
		<dc:date>2025-03-17T06:06:14Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Defecto masa</dc:subject>
		<dc:subject>Radiactividad</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>RESUELTO</dc:subject>

		<description>
&lt;p&gt;Un n&#250;cleo de plutonio-239 () experimenta una desintegraci&#243;n alfa y se transforma en uranio-235 ). &lt;br class='autobr' /&gt;
a) Escribe la ecuaci&#243;n nuclear que describe esta desintegraci&#243;n alfa. &lt;br class='autobr' /&gt;
b) Calcula la energ&#237;a cin&#233;tica total liberada en la desintegraci&#243;n, expresada en MeV. &lt;br class='autobr' /&gt;
c) Suponiendo que el n&#250;cleo de uranio-235 y la part&#237;cula alfa comparten la energ&#237;a liberada, calcula la energ&#237;a cin&#233;tica de la part&#237;cula alfa. &lt;br class='autobr' /&gt;
Datos: ; ; ; ;&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-nuclear" rel="directory"&gt;F&#237;sica nuclear&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Defecto-masa" rel="tag"&gt;Defecto masa&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Radiactividad" rel="tag"&gt;Radiactividad&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/RESUELTO" rel="tag"&gt;RESUELTO&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;Un n&#250;cleo de plutonio-239 (&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L49xH20/323e4bd393b49e53c388df6ca5ec2157-f39dd.png?1742191782' style='vertical-align:middle;' width='49' height='20' alt=&#034;\ce{^{239}Pu}&#034; title=&#034;\ce{^{239}Pu}&#034; /&gt;) experimenta una desintegraci&#243;n alfa y se transforma en uranio-235 &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L45xH25/420ff84ac5fcaa318331e7d1ec628fba-b70cc.png?1742191782' style='vertical-align:middle;' width='45' height='25' alt=&#034;(\ce{^{235}U}&#034; title=&#034;(\ce{^{235}U}&#034; /&gt;).&lt;/p&gt;
&lt;p&gt;a) Escribe la ecuaci&#243;n nuclear que describe esta desintegraci&#243;n alfa.&lt;/p&gt;
&lt;p&gt;b) Calcula la energ&#237;a cin&#233;tica total liberada en la desintegraci&#243;n, expresada en MeV.&lt;/p&gt;
&lt;p&gt;c) Suponiendo que el n&#250;cleo de uranio-235 y la part&#237;cula alfa comparten la energ&#237;a liberada, calcula la energ&#237;a cin&#233;tica de la part&#237;cula alfa.&lt;/p&gt;
&lt;p&gt;Datos: &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L202xH25/9e38db3c7e50850eec349c49b4cabc74-2fb53.png?1742191782' style='vertical-align:middle;' width='202' height='25' alt=&#034;m(\ce{^{239}Pu}): 239.0522\ u&#034; title=&#034;m(\ce{^{239}Pu}): 239.0522\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L192xH25/4601e3c4f669bcaf8d2bb90de4952eac-cc67f.png?1742191782' style='vertical-align:middle;' width='192' height='25' alt=&#034;m(\ce{^{235}U}): 235.0439\ u&#034; title=&#034;m(\ce{^{235}U}): 235.0439\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L164xH25/3e123ecacbf30a057515a5585b19084a-2b458.png?1742191782' style='vertical-align:middle;' width='164' height='25' alt=&#034;m(\ce{^4He}): 4.0026\ u&#034; title=&#034;m(\ce{^4He}): 4.0026\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L145xH19/4448d972b70264ea94fa38e0558dfce9-82ef8.png?1732969111' style='vertical-align:middle;' width='145' height='19' alt=&#034;1\ u = 1.66\cdot 10^{-27}\ kg&#034; title=&#034;1\ u = 1.66\cdot 10^{-27}\ kg&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L155xH47/a4d0ba4bea70dc831994fd159c9fa57a-9a196.png?1732980356' style='vertical-align:middle;' width='155' height='47' alt=&#034;c = 3\cdot 10^8\ m\cdot s^{-1}&#034; title=&#034;c = 3\cdot 10^8\ m\cdot s^{-1}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;a) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/a3f7a5e096189aaeb546d693837c748f.png' style=&#034;vertical-align:middle;&#034; width=&#034;245&#034; height=&#034;34&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{239}Pu -&gt; ^{235}U + ^4He}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^{239}Pu -&gt; ^{235}U + ^4He}}}}&#034; /&gt; &lt;br/&gt; b) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/8aadca79bcf539c5ac0dc37624a936e7.png' style=&#034;vertical-align:middle;&#034; width=&#034;174&#034; height=&#034;28&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\bf E = -5.32\ MeV}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\bf E = -5.32\ MeV}}&#034; /&gt; &lt;br/&gt; c) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/16cbf2aed6a7c2a9bf33b8657f8fd68e.png' style=&#034;vertical-align:middle;&#034; width=&#034;220&#034; height=&#034;35&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\bm{E_C(\alpha) = 5.19\ MeV}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\bm{E_C(\alpha) = 5.19\ MeV}}}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;p&gt;&lt;u&gt;RESOLUCI&#211;N DEL PROBLEMA EN V&#205;DEO&lt;/u&gt;.&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/mindgMsQ_vM&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>[P(8337)] EBAU Andaluc&#237;a: f&#237;sica (junio 2024) - ejercicio D.1 (8338)</title>
		<link>https://www.ejercicios-fyq.com/P-8337-EBAU-Andalucia-fisica-junio-2024-ejercicio-D-1-8338</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/P-8337-EBAU-Andalucia-fisica-junio-2024-ejercicio-D-1-8338</guid>
		<dc:date>2024-11-09T05:16:12Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Soddy y Fajans</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>Fisi&#243;n nuclear</dc:subject>
		<dc:subject>EBAU</dc:subject>
		<dc:subject>Selectividad</dc:subject>
		<dc:subject>EvAU</dc:subject>

		<description>
&lt;p&gt;Clicando en este enlace podr&#225;s ver el enunciado y los resultados del problema que se resuelve en el v&#237;deo.&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/15-PAU-examenes-resueltos-de-anos-anteriores" rel="directory"&gt;15 - PAU: ex&#225;menes resueltos de a&#241;os anteriores&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Soddy-y-Fajans" rel="tag"&gt;Soddy y Fajans&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Fision-nuclear" rel="tag"&gt;Fisi&#243;n nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EBAU-329" rel="tag"&gt;EBAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Selectividad" rel="tag"&gt;Selectividad&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EvAU" rel="tag"&gt;EvAU&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;&lt;b&gt;&lt;a href='https://www.ejercicios-fyq.com/EBAU-Andalucia-fisica-junio-2024-ejercicio-D-1-8337' class=&#034;spip_in&#034;&gt;Clicando en este enlace&lt;/a&gt;&lt;/b&gt; podr&#225;s ver el enunciado y los resultados del problema que se resuelve en el v&#237;deo.&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/VsX8kTd8iK4&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
		</content:encoded>


		

	</item>
<item xml:lang="es">
		<title>EBAU Andaluc&#237;a: f&#237;sica (junio 2024) - ejercicio D.1 (8337)</title>
		<link>https://www.ejercicios-fyq.com/EBAU-Andalucia-fisica-junio-2024-ejercicio-D-1-8337</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/EBAU-Andalucia-fisica-junio-2024-ejercicio-D-1-8337</guid>
		<dc:date>2024-11-07T04:58:31Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Soddy y Fajans</dc:subject>
		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>Fisi&#243;n nuclear</dc:subject>
		<dc:subject>EBAU</dc:subject>
		<dc:subject>Selectividad</dc:subject>
		<dc:subject>RESUELTO</dc:subject>
		<dc:subject>EvAU</dc:subject>

		<description>
&lt;p&gt;a) Justifica, indicando los principios que aplica, cu&#225;l de las reacciones nucleares propuestas no produce los productos mencionados: &lt;br class='autobr' /&gt; b) i) Determina, indicando los principios aplicados, los valores de c y Z en la siguiente reacci&#243;n nuclear: &lt;br class='autobr' /&gt; &lt;br class='autobr' /&gt;
ii) Calcula la energ&#237;a liberada cuando se fisionan un mill&#243;n de n&#250;cleos de uranio siguiendo la reacci&#243;n anterior. &lt;br class='autobr' /&gt;
Datos: ; ; ; ; ;&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-Nuclear-2-o-Bach" rel="directory"&gt;F&#237;sica Nuclear (2.&#186; Bach)&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Soddy-y-Fajans" rel="tag"&gt;Soddy y Fajans&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Fision-nuclear" rel="tag"&gt;Fisi&#243;n nuclear&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/EBAU-329" rel="tag"&gt;EBAU&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/Selectividad" rel="tag"&gt;Selectividad&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/EvAU" rel="tag"&gt;EvAU&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;a) Justifica, indicando los principios que aplica, cu&#225;l de las reacciones nucleares propuestas no produce los productos mencionados:&lt;/p&gt;
&lt;p&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L226xH55/b343c462748d8fc498b2d10bcea36fac-c43ed.png?1732980356' style='vertical-align:middle;' width='226' height='55' alt=&#034;\left i)\ \ce{_7^{14}N + n -&gt; _6^{14}C + p} \atop ii)\ \ce{_{14}^{28}Si +} \alpha \ce{-&gt; _{15}^{29}P + n} \right&#034; title=&#034;\left i)\ \ce{_7^{14}N + n -&gt; _6^{14}C + p} \atop ii)\ \ce{_{14}^{28}Si +} \alpha \ce{-&gt; _{15}^{29}P + n} \right&#034; /&gt;&lt;/p&gt;
&lt;p&gt;b) i) Determina, indicando los principios aplicados, los valores de c y Z en la siguiente reacci&#243;n nuclear:&lt;/p&gt;
&lt;p&gt;
&lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L312xH25/cd48c2d53fe80c7b7e7c4013782320be-a04ff.png?1732980356' style='vertical-align:middle;' width='312' height='25' alt=&#034;\ce{_{92}^{235}U + _0^1n -&gt; _Z^{145}La + _{35}^{88}Br + c _0^1n}&#034; title=&#034;\ce{_{92}^{235}U + _0^1n -&gt; _Z^{145}La + _{35}^{88}Br + c _0^1n}&#034; /&gt;&lt;/p&gt;
&lt;/p&gt;
&lt;p&gt;ii) Calcula la energ&#237;a liberada cuando se fisionan un mill&#243;n de n&#250;cleos de uranio siguiendo la reacci&#243;n anterior.&lt;/p&gt;
&lt;p&gt;Datos: &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L223xH25/a01f026b763caf2ada4e6040a58e19fc-5e8fa.png?1732980356' style='vertical-align:middle;' width='223' height='25' alt=&#034;m(\ce{_{92}^{235}U}) = 235.043930\ u&#034; title=&#034;m(\ce{_{92}^{235}U}) = 235.043930\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L231xH25/9128a5711d7c561d5b63aace95082aee-7691a.png?1732980356' style='vertical-align:middle;' width='231' height='25' alt=&#034;m(\ce{_Z^{145}La}) = 144.921651\ u&#034; title=&#034;m(\ce{_Z^{145}La}) = 144.921651\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L212xH25/0375333151d5ea15eb3846d1b504bc58-98bf5.png?1732980356' style='vertical-align:middle;' width='212' height='25' alt=&#034;m(\ce{_{35}^{88}Br}) = 87.924074\ u&#034; title=&#034;m(\ce{_{35}^{88}Br}) = 87.924074\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L156xH20/25778d41e5f3ff87d12f18d501bc7931-6c34e.png?1732980356' style='vertical-align:middle;' width='156' height='20' alt=&#034;m_n= 1.008665\ u&#034; title=&#034;m_n= 1.008665\ u&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L187xH24/5251400d01f9811e3ec0e16b44753598-d6b1f.png?1732980356' style='vertical-align:middle;' width='187' height='24' alt=&#034;1\ u= 1.66\cdot 10^{-27}\ kg&#034; title=&#034;1\ u= 1.66\cdot 10^{-27}\ kg&#034; /&gt; ; &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L155xH47/a4d0ba4bea70dc831994fd159c9fa57a-9a196.png?1732980356' style='vertical-align:middle;' width='155' height='47' alt=&#034;c = 3\cdot 10^8\ m\cdot s^{-1}&#034; title=&#034;c = 3\cdot 10^8\ m\cdot s^{-1}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;a) &lt;b&gt;No cumple las leyes de Soddy y Fajans la reacci&#243;n ii)&lt;/b&gt; &lt;br/&gt; &lt;br/&gt; b) i) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/fc935cf348ab7396e3775775411efab4.png' style=&#034;vertical-align:middle;&#034; width=&#034;71&#034; height=&#034;27&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\bf c = 3}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\bf c = 3}}&#034; /&gt; y &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/b6ec60dec51baadda622a8ac3e65465e.png' style=&#034;vertical-align:middle;&#034; width=&#034;87&#034; height=&#034;28&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\bf Z = 57}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\bf Z = 57}}&#034; /&gt; &lt;br/&gt; ii) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/e89f4b29180bedb0e9f157a8a35687a9.png' style=&#034;vertical-align:middle;&#034; width=&#034;200&#034; height=&#034;33&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\bm{E = -2.7\cdot 10^{-5}\ J}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\bm{E = -2.7\cdot 10^{-5}\ J}}}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;
&lt;p&gt; &lt;br/&gt;&lt;/p&gt;
&lt;p&gt;&lt;u&gt;RESOLUCI&#211;N DEL PROBLEMA EN V&#205;DEO&lt;/u&gt;.&lt;/p&gt;
&lt;iframe width=&#034;560&#034; height=&#034;315&#034; src=&#034;https://www.youtube.com/embed/VsX8kTd8iK4&#034; title=&#034;YouTube video player&#034; frameborder=&#034;0&#034; allow=&#034;accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture&#034; allowfullscreen&gt;&lt;/iframe&gt;&lt;/div&gt;
		
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	</item>
<item xml:lang="es">
		<title>Ecuaciones de distintas desintegraciones nucleares (8065)</title>
		<link>https://www.ejercicios-fyq.com/Ecuaciones-de-distintas-desintegraciones-nucleares-8065</link>
		<guid isPermaLink="true">https://www.ejercicios-fyq.com/Ecuaciones-de-distintas-desintegraciones-nucleares-8065</guid>
		<dc:date>2023-10-04T06:53:28Z</dc:date>
		<dc:format>text/html</dc:format>
		<dc:language>es</dc:language>
		<dc:creator>F_y_Q</dc:creator>


		<dc:subject>Reacciones nucleares</dc:subject>
		<dc:subject>RESUELTO</dc:subject>

		<description>
&lt;p&gt;Escribe las ecuaciones que representan los siguientes casos: &lt;br class='autobr' /&gt; &lt;br class='autobr' /&gt;
a) Emisi&#243;n de una part&#237;cula del . &lt;br class='autobr' /&gt;
b) Emisi&#243;n de una part&#237;cula del . &lt;br class='autobr' /&gt;
c) Emisi&#243;n de una part&#237;cula del . &lt;br class='autobr' /&gt;
d) Emisi&#243;n de una part&#237;cula del .&lt;/p&gt;


-
&lt;a href="https://www.ejercicios-fyq.com/Fisica-Nuclear-2-o-Bach" rel="directory"&gt;F&#237;sica Nuclear (2.&#186; Bach)&lt;/a&gt;

/ 
&lt;a href="https://www.ejercicios-fyq.com/Reacciones-nucleares" rel="tag"&gt;Reacciones nucleares&lt;/a&gt;, 
&lt;a href="https://www.ejercicios-fyq.com/RESUELTO" rel="tag"&gt;RESUELTO&lt;/a&gt;

		</description>


 <content:encoded>&lt;div class='rss_texte'&gt;&lt;p&gt;Escribe las ecuaciones que representan los siguientes casos:&lt;/p&gt;
&lt;p&gt;
&lt;p class=&#034;spip&#034; style=&#034;text-align: center;&#034;&gt;&lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L235xH42/33251629fed693a33941d8cfed5c3351-6c16c.png?1733119478' style='vertical-align:middle;' width='235' height='42' alt=&#034;\begin{tabular}{|l|c|c|c|c|} \hline Z&amp;90&amp;36&amp;89&amp;95 \\\hline Elemento&amp;Th&amp;Kr&amp;Ac&amp;Am \\\hline \end{tabular}&#034; title=&#034;\begin{tabular}{|l|c|c|c|c|} \hline Z&amp;90&amp;36&amp;89&amp;95 \\\hline Elemento&amp;Th&amp;Kr&amp;Ac&amp;Am \\\hline \end{tabular}&#034; /&gt;&lt;/p&gt;
&lt;/p&gt;
&lt;p&gt;a) Emisi&#243;n de una part&#237;cula &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L18xH30/7b7f9dbfea05c83784f8b85149852f08-0bef3.png?1732958350' style='vertical-align:middle;' width='18' height='30' alt=&#034;\alpha&#034; title=&#034;\alpha&#034; /&gt; del &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L29xH20/fd8f54d7e8c809f6caf0d7daa61cff92-b46a1.png?1733119478' style='vertical-align:middle;' width='29' height='20' alt=&#034;\ce{^239_92U}&#034; title=&#034;\ce{^239_92U}&#034; /&gt;.&lt;/p&gt;
&lt;p&gt;b) Emisi&#243;n de una part&#237;cula &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L18xH30/7b7f9dbfea05c83784f8b85149852f08-0bef3.png?1732958350' style='vertical-align:middle;' width='18' height='30' alt=&#034;\alpha&#034; title=&#034;\alpha&#034; /&gt; del &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L26xH20/dc424012fd1c90b72b006be2f55ef0a5-08b71.png?1733119478' style='vertical-align:middle;' width='26' height='20' alt=&#034;\ce{^90_38Sr}&#034; title=&#034;\ce{^90_38Sr}&#034; /&gt;.&lt;/p&gt;
&lt;p&gt;c) Emisi&#243;n de una part&#237;cula &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L18xH40/b0603860fcffe94e5b8eec59ed813421-1166c.png?1732951711' style='vertical-align:middle;' width='18' height='40' alt=&#034;\beta&#034; title=&#034;\beta&#034; /&gt; del &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L36xH20/24012800afa864dd8b034c5ff8a405f3-ba593.png?1733119478' style='vertical-align:middle;' width='36' height='20' alt=&#034;\ce{^126_88Ra}&#034; title=&#034;\ce{^126_88Ra}&#034; /&gt;.&lt;/p&gt;
&lt;p&gt;d) Emisi&#243;n de una part&#237;cula &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L18xH40/b0603860fcffe94e5b8eec59ed813421-1166c.png?1732951711' style='vertical-align:middle;' width='18' height='40' alt=&#034;\beta&#034; title=&#034;\beta&#034; /&gt; del &lt;img src='https://www.ejercicios-fyq.com/local/cache-vignettes/L37xH20/9e349b1e84c26fe2c6611b20fd43d60b-b1279.png?1733119478' style='vertical-align:middle;' width='37' height='20' alt=&#034;\ce{^239_94Pu}&#034; title=&#034;\ce{^239_94Pu}&#034; /&gt;.&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		&lt;hr /&gt;
		&lt;div &lt;div class='rss_ps'&gt;&lt;p&gt;Solo debes tener en cuenta que las part&#237;culas alfa son &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/09588c09f9e9d72dd1da2dc32f6ded8e.png' style=&#034;vertical-align:middle;&#034; width=&#034;16&#034; height=&#034;19&#034; alt=&#034;^4_2\alpha&#034; title=&#034;^4_2\alpha&#034; /&gt; y que las part&#237;culas beta son &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/3a8f80b41a1bc82f14666fe7adfeb2ba.png' style=&#034;vertical-align:middle;&#034; width=&#034;34&#034; height=&#034;22&#034; alt=&#034;^0_{(-1)}\beta&#034; title=&#034;^0_{(-1)}\beta&#034; /&gt;. Las ecuaciones pedidas son: &lt;br/&gt; &lt;br/&gt; a) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/58d6972303aff3f2b06a353337b6c71f.png' style=&#034;vertical-align:middle;&#034; width=&#034;176&#034; height=&#034;28&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^239_92U -&gt; ^235_90Th + ^4_2\alpha}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^239_92U -&gt; ^235_90Th + ^4_2\alpha}}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; b) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/dc86ae7b5c410aae37fffc2e4c366662.png' style=&#034;vertical-align:middle;&#034; width=&#034;163&#034; height=&#034;28&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^90_38U -&gt; ^86_36Th + ^4_2\alpha}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^90_38U -&gt; ^86_36Th + ^4_2\alpha}}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; c) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/2d73399fb8bb14897e99445786ac1fcc.png' style=&#034;vertical-align:middle;&#034; width=&#034;203&#034; height=&#034;31&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^126_88Ra -&gt; ^126_89Ac + ^0_{(-1)}\beta}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^126_88Ra -&gt; ^126_89Ac + ^0_{(-1)}\beta}}}}&#034; /&gt; &lt;br/&gt; &lt;br/&gt; d) &lt;img src='https://www.ejercicios-fyq.com/local/cache-TeX/8c2e404afd1f3bbe122bb4cc316146e3.png' style=&#034;vertical-align:middle;&#034; width=&#034;211&#034; height=&#034;31&#034; alt=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^239_94Pu -&gt; ^239_95Am + ^0_{(-1)}\beta}}}}&#034; title=&#034;\fbox{\color[RGB]{192,0,0}{\textbf{\ce{^239_94Pu -&gt; ^239_95Am + ^0_{(-1)}\beta}}}}&#034; /&gt;&lt;/math&gt;&lt;/p&gt;&lt;/div&gt;
		
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