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		<title>MTH213 Past Questions</title>
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		<category><![CDATA[MTH213 Exams Summary]]></category>
		<category><![CDATA[MTH213 Past Questions]]></category>
		<category><![CDATA[MTH213 TMA]]></category>
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					<description><![CDATA[<p>MTH213 If \(\\mu\) is the mean operator, \ (\\mu^{2}=\) Answer: \\(1 +\\frac{\\delta^{2}}{4}\\) To find the solution vector \(x\) using the Gauss elimination method number of operations are required. Answer: W(\\frac{nA{3}K6}+nA{2H\frac{nK4}\\) Find the smallest positive root of \(2x\\ {\\mathrm{tan}x\\ }\\ =\\ 0\) by Newton- Raphson method, correct to 5 decimal places. Answer: 1.165561 Evaluate the differences [&#8230;]</p>
The post <a href="https://campusflava.com/blog/mth213-past-questions/">MTH213 Past Questions</a> first appeared on <a href="https://campusflava.com">Campusflava</a>.]]></description>
										<content:encoded><![CDATA[<p>MTH213</p>
<p>If \(\\mu\) is the mean operator, \ (\\mu^{2}=\)<br />
Answer: \\(1 +\\frac{\\delta^{2}}{4}\\)</p>
<p>To find the solution vector \(x\) using the Gauss elimination method	number of operations are required.<br />
Answer: W(\\frac{nA{3}K6}+nA{2H\frac{nK4}\\)</p>
<p>Find the smallest positive root of \(2x\\ {\\mathrm{tan}x\\ }\\ =\\ 0\) by Newton- Raphson method, correct to 5 decimal places.<br />
Answer: 1.165561</p>
<p>Evaluate the differences \(\\nablaA{3} [a_{3}xA{3}+a_{2}xA{2}+a_{1 }x\\ +\\ a_{0}]\).<br />
Answer: \\(a_{3}3!hA{2}\\)</p>
<p>If \(P_{n}\\left(x\\right)\) is a polynomial of degree n with leadingcoefficient an, and \ (x_{0}\) is an arbitrary point, then \ (Wmath rm{\\Delta}A{n+1 }P_{n+1 }(x_{0})\\ =\)<br />
Answer: \\(0\\)</p>
<p>Evaluate \(\\left|\\begin{array}{ccc}3 &amp; 3 &amp; 2\\\\2 &amp; -3 &amp; -1WW1 &amp; 4 &amp;1 \\end{array}\\right|\)<br />
Answer: 16</p>
<p>The Taylor series expansion of	is \(x-\\frac{xA{2}}{2}+\\frac{xA{3}K3}-\\frac{xA{4}K4}+\\dots\)J<br />
Answer: \\(\\mathrm{ln}\\left(1 +x\\right)\\)</p>
<p>If \(\\mu\) is the mean operator and \(\\delta\) is the central difference then, \ (\\mu\\delta=\)<br />
Answer: \\(\\frac{1}{2}\\left(\\mathrm{\\delta}\\mathrm{+}\\mathrm{\\na</p>
<p>The Taylor series expansion of is \(1 +x+xA{2}+xA{3}+\\dots\),<br />
Answer: \\(\\frac{1 }{1 -x}\\)</p>
<p>Find an approximate value of \(\\sqrt[3]{26}\) using the mean value theorem.<br />
Answer: 2.963</p>
<p>Find the eigenvalues of the matrix \ (\\left[\\begin{arrayXccc} 1 &amp; 0 &amp; OWW 0 &amp; 2 &amp; OUW 0 &amp; 0 &amp; 3 \\end{array}\\right]\)<br />
Answer: \\(\\left(1,2,3\\right)\\)</p>
<p>If \(a=\\left(\\begin{arrayKccc}1 &amp; 2 &amp; 6\\\\2 &amp; 4 &amp; 1WW7 &amp; 3 &amp; 2 \\end{array}\\right)\), find \ (\\mathrm{det}\\left(A\\right)\\ \)<br />
Answer: -13</p>
<p>If \(f(x)\\ =\\ xA{3}\), find the value of \(f[a,\\ b,W c]\)<br />
Answer: a+b+c</p>
<p>The formula \(x_{n+1}=\\frac{x_{n- 1 }f\\left(x_{n}\\right)-x_{n}f\\left(x_{n- 1 }\\right)Kt\\left(x_{n}\\right)-t\\left(x_{n- 1}\\right)}\)is called	method.<br />
Answer: secant</p>
<p>Supposed that the product two matrices A and B is equal to an identity matrix, then matrix Bis	of A<br />
Answer: inverse</p>
<p>If \(a=AA{T}\)the \(a\) is called matrix<br />
Answer: symmetric</p>
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