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		<title>MTH423 Tma Solutions</title>
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		<dc:creator><![CDATA[Admin_Louis]]></dc:creator>
		<pubDate>Fri, 18 Jun 2021 13:47:41 +0000</pubDate>
				<category><![CDATA[National Open University of Nigeria]]></category>
		<category><![CDATA[MTH423 tma]]></category>
		<category><![CDATA[MTH423 TMA answers]]></category>
		<category><![CDATA[MTH423 tma questions and answers]]></category>
		<category><![CDATA[MTH423 TMA Solutions]]></category>
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					<description><![CDATA[<p>MTH423 Question: Which of the following function is a solution of the Volterra type integral equation \\( f(x)=x+ \\int_{0}^{x} sin (x-t) f(t)dt\\) ? Answer: \\(x- \\frac{x^3}{6}\\) Question: There is a continuous curve which does not have a point of self-intersection it is said as? Answer: Simple curve Question: What is the resolvent kernel for the [&#8230;]</p>
The post <a href="https://campusflava.com/blog/mth423-tma-solutions/">MTH423 Tma Solutions</a> first appeared on <a href="https://campusflava.com">Campusflava</a>.]]></description>
										<content:encoded><![CDATA[<p>MTH423</p>
<p>Question: Which of the following function is a solution of the Volterra type integral equation \\( f(x)=x+ \\int_{0}^{x} sin (x-t) f(t)dt\\) ?<br />
Answer: \\(x- \\frac{x^3}{6}\\)</p>
<p>Question: There is a continuous curve which does not have a point of self-intersection it is said as?<br />
Answer: Simple curve</p>
<p>Question: What is the resolvent kernel for the integral equation \\(u(x) = F(x) + \\int_{logâ¡2}^x u(t)dt.\\)<br />
Answer: 1</p>
<p>Question: Physially, integrating \\(\\int_{a}^{b} f(x)dx\\) means finding the<br />
Answer: area under the curve from a to b</p>
<p>Question: Write out the initial value problem corresponding to the integral equation \\(y(x) = 1+ \\int_{0}^{x} y(t)dt\\)<br />
Answer: \\(y^\&#8217;-y=0, y(0)=1\\)</p>
<p>Question: Find the eigen value, Î» of this Fredholm integral equation \\( y(x)=Î» \\int_{0}^{1} x^2 t y(t)dt \\)<br />
Answer: 4</p>
<p>Question: The mean value of a function \\( f(x)\\) from a to b is given by any of the following:<br />
Answer: \\(\\frac{\\int_{a}^{b} f(x)}dx}{b-a}\\)</p>
<p>Question: What is the value of \\(Î± \\)for which the integral equation \\( u(x)= Î± \\int_{0}^{1 }e^{x-t} u(t)dx\\) has a non â€“ trivial solution.<br />
Answer: 1</p>
<p>Question: For a continuous function \\(f(t)\\), \\(0â‰¤t â‰¤1\\), the integral equation \\(y(t) = f(t)+3 \\int_{0}^{1} t s y(s)ds\\) has<br />
Answer: infinity many solutions, if\\( \\int{0}^{1) s f(s)ds â‰ 0\\)</p>
<p>Question: The exact value of \\(\\int_{0.2}^{2.2} x e^x dx\\) is most nearly<br />
Answer: 11.807</p>
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