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	<title>IE Mathematical Foundations in Architecture</title>
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		<title>IE Mathematical Foundations in Architecture</title>
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		<title>Questions</title>
		<link>http://iemfa.wordpress.com/2009/02/22/questions/</link>
		<comments>http://iemfa.wordpress.com/2009/02/22/questions/#comments</comments>
		<pubDate>Sun, 22 Feb 2009 11:22:08 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
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		<description><![CDATA[You can post me here the doubts you can have.<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=99&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>You can post me here the doubts you can have.</p>
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			<media:title type="html">Pablo Linares</media:title>
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		<title>A common mistake</title>
		<link>http://iemfa.wordpress.com/2009/01/31/a-common-mistake/</link>
		<comments>http://iemfa.wordpress.com/2009/01/31/a-common-mistake/#comments</comments>
		<pubDate>Sat, 31 Jan 2009 18:55:54 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Uncategorized]]></category>

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		<description><![CDATA[In fact this is not a mistake but it is something that most of you do and there is no reason to do in that way. The problem is when you want to guess the zeros of a polynomial such that                           As it is in a factorized form, if and only if or . [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=96&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>In fact this is not a mistake but it is something that most of you do and there is no reason to do in that way.</p>
<p>The problem is when you want to guess the zeros of a polynomial such that</p>
<p>                          <img src='http://s0.wp.com/latex.php?latex=%28x-3%29%28x-6%29&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='(x-3)(x-6)' title='(x-3)(x-6)' class='latex' /></p>
<p>As it is in a factorized form, <img src='http://s0.wp.com/latex.php?latex=%28x-3%29%28x-6%29%3D0&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='(x-3)(x-6)=0' title='(x-3)(x-6)=0' class='latex' /> if and only if <img src='http://s0.wp.com/latex.php?latex=x%3D3&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='x=3' title='x=3' class='latex' /> or <img src='http://s0.wp.com/latex.php?latex=x%3D6&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='x=6' title='x=6' class='latex' />.</p>
<p>The procedure I have seen in many ocasions is the following, you compute <img src='http://s0.wp.com/latex.php?latex=%28x-3%29%28x-6%29%3Dx%5E2-9x%2B18%3D0&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='(x-3)(x-6)=x^2-9x+18=0' title='(x-3)(x-6)=x^2-9x+18=0' class='latex' /> and then you solve it using the formula for a second order equation getting the values 3 and 6.</p>
<p>PLEASE don&#8217;t do things in that way. I would like you to come up with an example of this way of doing things in arquitecture.</p>
<p>Pablo.</p>
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		<title>Questions and problems.</title>
		<link>http://iemfa.wordpress.com/2009/01/31/questions-and-problems/</link>
		<comments>http://iemfa.wordpress.com/2009/01/31/questions-and-problems/#comments</comments>
		<pubDate>Sat, 31 Jan 2009 11:06:17 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Uncategorized]]></category>

		<guid isPermaLink="false">http://iemfa.wordpress.com/?p=87</guid>
		<description><![CDATA[First of all, I would like to remind you that the second practice is due to the day of the exam.                                  I WON&#8217;T TAKE EXERCISES LATER You can post here any problem or question you have. Answering to a question of Manuel, the integral of ex 5 in the group assessment (I think that [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=87&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>First of all, I would like to remind you that the second practice is due to the day of the exam.</p>
<p>                                 I WON&#8217;T TAKE EXERCISES LATER</p>
<p>You can post here any problem or question you have.</p>
<p>Answering to a question of Manuel, the integral of ex 5 in the group assessment (I think that was the one you can have problems with) is similar to that one we did in class. It is solved by a change</p>
<p>                     <img src='http://s0.wp.com/latex.php?latex=t%3D%5Ctan+x%2F2&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='t=&#92;tan x/2' title='t=&#92;tan x/2' class='latex' /></p>
<p>Pablo.</p>
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		<title>Second Assessment</title>
		<link>http://iemfa.wordpress.com/2008/12/28/second-assessment/</link>
		<comments>http://iemfa.wordpress.com/2008/12/28/second-assessment/#comments</comments>
		<pubDate>Sun, 28 Dec 2008 21:34:10 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Assessments]]></category>

		<guid isPermaLink="false">http://iemfa.wordpress.com/?p=78</guid>
		<description><![CDATA[1.- Exercises number 6 and 7 of lecture 5.   2.- Calculate the determinant of the matrix of the exercise 5 of lecture 6.   3.-  Find a candidate for the value of and prove using induction that your assumption is correct where:          4.- Solve, using Gauss method, the system of exercise number 1 [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=78&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>1.- Exercises number 6 and 7 of lecture 5.</p>
<p> </p>
<p>2.- Calculate the determinant of the matrix of the exercise 5 of lecture 6.</p>
<p> </p>
<p>3.-  Find a candidate for the value of <img src='http://s0.wp.com/latex.php?latex=A%5En&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='A^n' title='A^n' class='latex' /> and prove using induction that your assumption is correct where:</p>
<p>         <img class="alignnone size-full wp-image-81" title="matriz" src="http://iemfa.files.wordpress.com/2008/12/matriz.jpg?w=450" alt="matriz"   /></p>
<p>4.- Solve, using Gauss method, the system of exercise number 1 of <a href="http://www.math.uni-magdeburg.de/~werner/exercise8.pdf" target="_blank">this link</a>.</p>
<p>5.- Solve, using Crammer&#8217;s rule, the system of exercise number 1 of <a href="http://evlm.stuba.sk/~partner2/DBfiles/Numericalanalysis/problems/problems%20Gauss%20SLAU_EN.pdf" target="_blank">this other  link</a>.</p>
<p> 6.- Solve the problems of Lecture 9.</p>
<p>The value of the exercises is 1 Point (1, 2 and 3) 2 points (4 and 5) and 3 points (number 6).</p>
<p>Note: That problems are taken or adapted from problems appeared in the extensive literature on the subject.</p>
<p>Pablo.</p>
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			<media:title type="html">matriz</media:title>
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		<title>WARNING</title>
		<link>http://iemfa.wordpress.com/2008/12/18/warning/</link>
		<comments>http://iemfa.wordpress.com/2008/12/18/warning/#comments</comments>
		<pubDate>Thu, 18 Dec 2008 18:58:11 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
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		<description><![CDATA[JUST ONE OF THE WORKS YOU HAVE TO DO IS MEANT TO BE DONE IN GROUPS. AT THE FIRST SIGN OF EXERCISES DONE IN COMMON, THE MARK FOR EVERY STUDENT CHEATING WILL BE A ZERO.<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=71&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>JUST ONE OF THE WORKS YOU HAVE TO DO IS MEANT TO BE DONE IN GROUPS. AT THE FIRST SIGN OF EXERCISES DONE IN COMMON, THE MARK FOR EVERY STUDENT CHEATING WILL BE A ZERO.</p>
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		<title>Exercises</title>
		<link>http://iemfa.wordpress.com/2008/11/27/exercises/</link>
		<comments>http://iemfa.wordpress.com/2008/11/27/exercises/#comments</comments>
		<pubDate>Thu, 27 Nov 2008 15:50:43 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
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		<category><![CDATA[Exercises]]></category>

		<guid isPermaLink="false">http://iemfa.wordpress.com/?p=69</guid>
		<description><![CDATA[Hello As I told you at the begining of the course, my idea for the module is the following. We are based in the new program for Higher Education where the student is no longer passive but has be the main character in its own education. This means that I assume that you have to work [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=69&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>Hello</p>
<p>As I told you at the begining of the course, my idea for the module is the following. We are based in the new program for Higher Education where the student is no longer passive but has be the main character in its own education. This means that I assume that you have to work in your own (at least) as much as in the lectures. I also consider that you are mature enough to know the amount of work you need, I don&#8217;t see the point (at this age) to ask you to do 25 exercises of derivatives if you just need 10 and on the other way, if I ask 10 and you need 50, I think it is you the one who has to do the rest of the work.</p>
<p>Maybe I am making a mistake since I think that, in general, there is no much work done and you are not using much this blog (I will bet that there are people who still has not check the assessments). But it is a bigger mistake that you left mathematics for the last moment since the work you have done after the exam counts the same amount as the exam itself.</p>
<p>For those who need more exercises and don&#8217;t want to look for (or can&#8217;t find) them you have a web page with a lot of materials and exercises: <a href="http://www.sectormatematica.cl/educsuperior.htm">http://www.sectormatematica.cl/educsuperior.htm</a></p>
<p>I hope that this will be useful.</p>
<p>Pablo.</p>
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		<title>Every continuous function is integrable</title>
		<link>http://iemfa.wordpress.com/2008/11/10/every-continuous-function-is-integrable/</link>
		<comments>http://iemfa.wordpress.com/2008/11/10/every-continuous-function-is-integrable/#comments</comments>
		<pubDate>Mon, 10 Nov 2008 19:03:59 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Uncategorized]]></category>

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		<description><![CDATA[In the past lecture we saw this theorem without proof. I tried to prove a weaker version of this theorem: Every continuous monotonous function is integrable. Since I thought it could be done in few steps. My proof was incomplete and surfing the net I have found a simple (although not as simple as I [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=60&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>In the past lecture we saw this theorem without proof. I tried to prove a weaker version of this theorem:</p>
<blockquote><p>Every continuous monotonous function is integrable.</p></blockquote>
<p>Since I thought it could be done in few steps. My proof was incomplete and surfing the net I have found a simple (although not as simple as I thougth) of this fact where the continuity is not needed.</p>
<p>You can see the proof here: <a href="http://thales.cica.es/rd/Recursos/rd99/ed99-0244-01/integral2.html">http://thales.cica.es/rd/Recursos/rd99/ed99-0244-01/integral2.html</a></p>
<p>The site is in Spanish, sorry for that but I think that it is easy to understand although it need some time of reflection. I don&#8217;t think it deserves to be seen in class but you will be wellcome to ask me any doubt you have (furthermore, it will be taken into account).</p>
<p>Pablo.</p>
<p> </p>
<blockquote><p> </p></blockquote>
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		<title>Lecture 4</title>
		<link>http://iemfa.wordpress.com/2008/11/09/lecture-4/</link>
		<comments>http://iemfa.wordpress.com/2008/11/09/lecture-4/#comments</comments>
		<pubDate>Sun, 09 Nov 2008 13:06:39 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Lectures]]></category>

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		<description><![CDATA[You can ask questions about lecture 4 in this post. If we have time, I plan to devote the last lecture to solve problmes with the exercises of the assessments so It will be nice that you start working on them ASAP. Lecture 5 is in reprography and I hope to send Lecture 6 in [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=51&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>You can ask questions about lecture 4 in this post. If we have time, I plan to devote the last lecture to solve problmes with the exercises of the assessments so It will be nice that you start working on them ASAP.</p>
<p>Lecture 5 is in reprography and I hope to send Lecture 6 in due course.</p>
<p>Pablo.</p>
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		<title>Group assessment</title>
		<link>http://iemfa.wordpress.com/2008/11/09/group-assement/</link>
		<comments>http://iemfa.wordpress.com/2008/11/09/group-assement/#comments</comments>
		<pubDate>Sun, 09 Nov 2008 12:52:31 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Assessments]]></category>

		<guid isPermaLink="false">http://iemfa.wordpress.com/?p=53</guid>
		<description><![CDATA[You have to do this practise in groups, I think that you can chose the composition between 3,4,4 or 3,3,3,2. The maximun number of people in a group is 4 and of course the minimum is 2, I think that two groups of 4 and one of 3 is better since a group of 2 is in disadvantage. I post [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=53&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>You have to do this practise in groups, I think that you can chose the composition between 3,4,4 or 3,3,3,2. The maximun number of people in a group is 4 and of course the minimum is 2, I think that two groups of 4 and one of 3 is better since a group of 2 is in disadvantage.</p>
<p>I post now the exercises of the first part of the module (up to integrals) and I recommend you that you do them as soon as possible since you have another individual practise and half of this one. </p>
<p>1.- Prove using the definition that</p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Clim_%7Bx%5Cto+0%7Dx%5Csin+%5Cfrac%7B1%7D%7Bx%7D%3D0&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;lim_{x&#92;to 0}x&#92;sin &#92;frac{1}{x}=0' title='&#92;lim_{x&#92;to 0}x&#92;sin &#92;frac{1}{x}=0' class='latex' /></p>
<p>Hint: Use that <img src='http://s0.wp.com/latex.php?latex=%7C%5Csin+%5Cfrac%7B1%7D%7Bx%7D%7C%5Cleq+1.&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='|&#92;sin &#92;frac{1}{x}|&#92;leq 1.' title='|&#92;sin &#92;frac{1}{x}|&#92;leq 1.' class='latex' /></p>
<p>2.- Draw the graph of the function <img src='http://s0.wp.com/latex.php?latex=%5Csin+%5Cfrac%7B1%7D%7Bx%7D+for+&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;sin &#92;frac{1}{x} for ' title='&#92;sin &#92;frac{1}{x} for ' class='latex' />latex x&gt;0$. Use the graph representation this function and the definition of derivative to decide if the function <img src='http://s0.wp.com/latex.php?latex=f%28x%29%3D+%5Csin+x%5Cfrac%7B1%7D%7Bx%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)= &#92;sin x&#92;frac{1}{x}' title='f(x)= &#92;sin x&#92;frac{1}{x}' class='latex' /> for <img src='http://s0.wp.com/latex.php?latex=x%3E0&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='x&gt;0' title='x&gt;0' class='latex' /> and <img src='http://s0.wp.com/latex.php?latex=f%280%29%3D0&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(0)=0' title='f(0)=0' class='latex' /> is derivable at <img src='http://s0.wp.com/latex.php?latex=x%3D0&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='x=0' title='x=0' class='latex' />.</p>
<p>3.- Explain the geometrical interpretation of the operations with complex numbers (sum and multiplication of complex numbers, multiplication of a complex number times a real) and write several examples using the different representations of a complex number. Which one is better for each case?</p>
<p>4.- As we have seen, in a set, we can define operations giving the set an structure. These structures are called algebraic structures. List the principal algebraic structures with their properties and write examples. Prove that the set of complex numbers is a field (with the appropriate operations). </p>
<p>5.- Calculate:</p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Ccos%28lnx%29dx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;cos(lnx)dx' title='&#92;int &#92;cos(lnx)dx' class='latex' /></p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Cfrac%7B1%7D%7B1-2%5Csin+x%7Ddx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;frac{1}{1-2&#92;sin x}dx' title='&#92;int &#92;frac{1}{1-2&#92;sin x}dx' class='latex' /></p>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">I will go on editing this post with more exercises, so don&#8217;t forget to check it regularly. You can give me the solutions as the exercises appear or all together.</span></span></span></div>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"></span></div>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">6.- Prove that the space of polynomials of degree less or equal than n: </span></span></span></div>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">          <img src='http://s0.wp.com/latex.php?latex=%5C%7Bp_n%3A+p_n%28x%29%3Da_nx%5En%2Ba_%7Bn-1%7Dx%5E%7Bn-1%7D%5Cdots%2Ba_1x%2Ba_0%5C%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;{p_n: p_n(x)=a_nx^n+a_{n-1}x^{n-1}&#92;dots+a_1x+a_0&#92;}' title='&#92;{p_n: p_n(x)=a_nx^n+a_{n-1}x^{n-1}&#92;dots+a_1x+a_0&#92;}' class='latex' /></span></span></span></div>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">with the usual operation for the sum of polynomials and the multiplication by scalars, is a vector space.</span></span></span></div>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"></span></div>
<div></div>
<div><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:7.5pt;color:black;font-family:Verdana;" lang="EN-GB"><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">7.- Find information (the equation, the history, problem that solve) about the following curves: cycloid, catenary and tautochrone.</span></span></span></div>
<p><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">8.-Find the area of a stained glass window limited from above for a parabola and from below for and arch of a circunference (see picture). Hint the area of a sector of a circle or radious r and of angle <img src='http://s0.wp.com/latex.php?latex=%5Calpha&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;alpha' title='&#92;alpha' class='latex' /> (in radians) is <img src='http://s0.wp.com/latex.php?latex=%5Cfrac%7B1%7D%7B2%7Dr%5E2%5Cpi&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;frac{1}{2}r^2&#92;pi' title='&#92;frac{1}{2}r^2&#92;pi' class='latex' />.</span></p>
<p><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB"><img class="alignnone size-full wp-image-75" title="vidriera2" src="http://iemfa.files.wordpress.com/2008/11/vidriera2.jpg?w=450" alt="vidriera2"   /></span></p>
<p><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">The value of the exercises is 1 point exept the number 7 and 8 that worth 2 points.</span></p>
<p><span style="font-size:10pt;color:black;font-family:Verdana;" lang="EN-GB">Note: That problems are taken or adapted from problems appeared in the extensive literature on the subject.</span></p>
<p><span style="font-size:10pt;color:black;font-family:Verdana;">Pablo.</span></p>
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		<title>First Assessment</title>
		<link>http://iemfa.wordpress.com/2008/11/06/first-assessment/</link>
		<comments>http://iemfa.wordpress.com/2008/11/06/first-assessment/#comments</comments>
		<pubDate>Thu, 06 Nov 2008 17:51:59 +0000</pubDate>
		<dc:creator>Pablo Linares</dc:creator>
				<category><![CDATA[Assessments]]></category>

		<guid isPermaLink="false">http://iemfa.wordpress.com/?p=38</guid>
		<description><![CDATA[I will post here the exercises that you will have to give me as practice. This assessment will be done individually, there is another one individual an a group assessment. Recall that it counts the 30% of the total mark. The first two exercises consists of proving two identites using mathematical induction. One is that [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=iemfa.wordpress.com&amp;blog=5001069&amp;post=38&amp;subd=iemfa&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>I will post here the exercises that you will have to give me as practice. This assessment will be done individually, there is another one individual an a group assessment. Recall that it counts the 30% of the total mark.</p>
<p>The first two exercises consists of proving two identites using mathematical induction. One is that posted as a voluntary exercise, that will be removed from that cathegory due to the little success it had:</p>
<p>1.- <img src='http://s0.wp.com/latex.php?latex=1%2B2%2B%5Cdots+%2Bn%3D+%5Cfrac%7Bn%28n%2B1%29%7D%7B2%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='1+2+&#92;dots +n= &#92;frac{n(n+1)}{2}' title='1+2+&#92;dots +n= &#92;frac{n(n+1)}{2}' class='latex' /></p>
<p>And the other is the sum of the squares of the first n numbers:</p>
<p>2.- <img src='http://s0.wp.com/latex.php?latex=1%5E2%2B2%5E2%2B%5Cdots+%2Bn%5E2%3D+%5Cfrac%7B2n%5E3%2B3n%5E2%2Bn%7D%7B6%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='1^2+2^2+&#92;dots +n^2= &#92;frac{2n^3+3n^2+n}{6}' title='1^2+2^2+&#92;dots +n^2= &#92;frac{2n^3+3n^2+n}{6}' class='latex' /></p>
<p>3.- Solve the following optimization problem:</p>
<p>&#8220;Compute the dimensions of the isosceles triangle of maximum area that can be inscribed in a circle of radious 4&#8243;</p>
<p>4.- Give the points of discontinuity of each of the following functions:</p>
<p><img src='http://s0.wp.com/latex.php?latex=f%28x%29%3D%5Cfrac%7Bx%7D%7B%28x-2%29%28x-4%29%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)=&#92;frac{x}{(x-2)(x-4)}' title='f(x)=&#92;frac{x}{(x-2)(x-4)}' class='latex' /></p>
<p><img src='http://s0.wp.com/latex.php?latex=f%28x%29%3D%5Csqrt%7B%28x-3%29%28x-6%29%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)=&#92;sqrt{(x-3)(x-6)}' title='f(x)=&#92;sqrt{(x-3)(x-6)}' class='latex' /></p>
<p><img src='http://s0.wp.com/latex.php?latex=f%28x%29%3Dx%5E2+%5Csin+%281%2Fx%29&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)=x^2 &#92;sin (1/x)' title='f(x)=x^2 &#92;sin (1/x)' class='latex' /></p>
<p><img src='http://s0.wp.com/latex.php?latex=f%28x%29%3D%5Cfrac%7B1%7D%7B1%2B2%5Csin+x%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)=&#92;frac{1}{1+2&#92;sin x}' title='f(x)=&#92;frac{1}{1+2&#92;sin x}' class='latex' /></p>
<p>5.- Let f(x) be the function defined as <img src='http://s0.wp.com/latex.php?latex=2x-3&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='2x-3' title='2x-3' class='latex' /> if <img src='http://s0.wp.com/latex.php?latex=0%5Cleq+x+%5Cleq+2&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='0&#92;leq x &#92;leq 2' title='0&#92;leq x &#92;leq 2' class='latex' /> and <img src='http://s0.wp.com/latex.php?latex=x%5E2-3&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='x^2-3' title='x^2-3' class='latex' /> if <img src='http://s0.wp.com/latex.php?latex=2%3Cx%5Cleq+4&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='2&lt;x&#92;leq 4' title='2&lt;x&#92;leq 4' class='latex' />. Discuss the continuity and the derivability of the function in <img src='http://s0.wp.com/latex.php?latex=0%5Cleq+x+%5Cleq+4&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='0&#92;leq x &#92;leq 4' title='0&#92;leq x &#92;leq 4' class='latex' />.</p>
<p>6.- Use the rules of derivation to find the derivative of the function</p>
<p><img src='http://s0.wp.com/latex.php?latex=f%28x%29%3Dln%283x%5E2%2B%5Csqrt%7Bx%7D%5Ccdot+%5Cfrac%7B1%7D%7Bcos%28x%5E2%2B1%29%7D%29&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)=ln(3x^2+&#92;sqrt{x}&#92;cdot &#92;frac{1}{cos(x^2+1)})' title='f(x)=ln(3x^2+&#92;sqrt{x}&#92;cdot &#92;frac{1}{cos(x^2+1)})' class='latex' /></p>
<p>7.- Analyze and represent the graph of the function</p>
<p><img src='http://s0.wp.com/latex.php?latex=f%28x%29%3D%5Cfrac%7Bx%5E3%7D%7Bx%5E2-1%7D&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='f(x)=&#92;frac{x^3}{x^2-1}' title='f(x)=&#92;frac{x^3}{x^2-1}' class='latex' /></p>
<p>8.- Exercises 7, 8, 9, 10, 11, of lecture 4.</p>
<p>9.- Calculate</p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Cfrac%7B4x-2%7D%7Bx%5E3-x%5E2-2x%7Ddx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;frac{4x-2}{x^3-x^2-2x}dx' title='&#92;int &#92;frac{4x-2}{x^3-x^2-2x}dx' class='latex' /></p>
<p>Hint: Factorize first the polynomial on the denominator.</p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Cfrac%7Be%5E%7B%5Csqrt%7Bx%7D%7D%7D%7B%5Csqrt%7Bx%7D%7Ddx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;frac{e^{&#92;sqrt{x}}}{&#92;sqrt{x}}dx' title='&#92;int &#92;frac{e^{&#92;sqrt{x}}}{&#92;sqrt{x}}dx' class='latex' /></p>
<p>10.- Calculate</p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Cfrac%7B2x%7D%7B%5Csqrt%5B3%5D%7B6-5x%5E2%7D%7Ddx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;frac{2x}{&#92;sqrt[3]{6-5x^2}}dx' title='&#92;int &#92;frac{2x}{&#92;sqrt[3]{6-5x^2}}dx' class='latex' /></p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Cfrac%7Bln%28ln+x%29%7D%7Bx%7Ddx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;frac{ln(ln x)}{x}dx' title='&#92;int &#92;frac{ln(ln x)}{x}dx' class='latex' /></p>
<p><img src='http://s0.wp.com/latex.php?latex=%5Cint+%5Cfrac%7B%5Csin%282x%29%7D%7B%5Csqrt%7B%5Ccos%282x%29%7D%7Ddx&amp;bg=ffffff&amp;fg=333333&amp;s=0' alt='&#92;int &#92;frac{&#92;sin(2x)}{&#92;sqrt{&#92;cos(2x)}}dx' title='&#92;int &#92;frac{&#92;sin(2x)}{&#92;sqrt{&#92;cos(2x)}}dx' class='latex' /></p>
<p>I will go on editing this post with more exercises, so don&#8217;t forget to check it regularly. You can give me the solutions as the exercises appear or all together.</p>
<p>Note: That problems are taken or adapted from problems appeared in the extensive literature on the subject.</p>
<p>Pablo.</p>
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