mathematics
https://www.225.pitt.edu/taxonomy/term/91/all
enDrop Your Books, Win a Guy
https://www.225.pitt.edu/story/drop-your-books-win-guy
<a href="/category/story-categories/your-stories" class="taxonomy_image_links"><img src="https://www.225.pitt.edu/sites/default/files/imagecache/navigation_link/category_pictures/nav_yourStory2.jpg" alt="Your Stories" title="Sharing Pitt Memories" width="209" height="59" /></a>Your Stories<fieldset class="fieldgroup group-regular-layout"><div class="field field-type-text field-field-body">
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<p><strong>Dee Schwarzbach-Nestel (EDU ’63):</strong></p>
<p>As I hurried into German class, I noticed
my pencil was broken. I hurriedly put my books down and went to sharpen my
pencil, but my books slid off the desk. A tall, male engineering student
started to pick them up and noticed I was taking [the course] Differential Equations. He
asked me about the course and I told him it was why I was late; I didn't
understand the assignment and had stopped to talk to the instructor, and I was
mad at myself because I still didn't think I understood the problems. He
offered to explain it as he had had the course earlier and was using it in
other classwork. I met with him a couple of times about the math and we started
dating. We've been married for almost 48 years.</p><p> </p> </div>
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mathematicsYour StoriesThu, 01 Mar 2012 20:26:42 +0000entrekin523 at https://www.225.pitt.eduUsing Math to Open New Frontiers
https://www.225.pitt.edu/story/using-math-open-new-frontiers
<a href="/category/story-categories/sciencetechnology" class="taxonomy_image_links"><img src="https://www.225.pitt.edu/sites/default/files/imagecache/navigation_link/category_pictures/nav_science.jpg" alt="Science/Technology" title="Explorations in Science and Technology" width="209" height="59" /></a>Science/Technology<div class="field field-type-text field-field-summary">
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<p>Whether it involves solving a 400-year-old problem or understanding
neuronal activity in the brain, math at Pitt combines classical
and
applied mathematics to open new frontiers.</p> </div>
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<a href="http://www.math.pitt.edu/articles/cannonOverview.html">Read a summary of Hales’ proofs of the Kepler Conjecture and a problem of even greater antiquity, the Honeycomb Conjecture.</a> </div>
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<a href="http://sites.google.com/site/thalespitt/">Hales’ home page</a> </div>
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<a href="http://www.mathematics.pitt.edu/people/ermentrout.php">Ermentrout's home page</a> </div>
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<a href="http://www.math.pitt.edu/~bard/pubs/lab.html">Ermentrout's lab page</a> </div>
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<a href="http://www.chronicle.pitt.edu/?p=8375">Pitt Chronicle story about Caginalp</a> </div>
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<p>Whether it involves solving a 400-year-old problem or understanding neuronal activity in the brain, math at Pitt combines classical and
applied mathematics to open new frontiers.</p><p>Distinguished University Professor <strong>G. Bard Ermentrout</strong>,
for example, applies nonlinear dynamics to biological problems. His main
focus is in the area of mathematical neuroscience, in which he studies the patterns of activity in networks of neurons.</p><p>In 2005, Professor <strong>Thomas C. Hales</strong> astonished the mathematics world by proving Kepler's Conjecture, one of the world's great math problems. Named after the German astronomer-mathematician Johannes Kepler, who postulated it in 1611, Kepler’s Conjecture held that the most space-efficient way to pack solid spheres of equal size was in a pyramid shape, like a stack of oranges in a grocery store.</p><p>Sounds intuitively obvious, yet for nearly four centuries no one who tried (including Sir Isaac Newton) would prove it. But Hales—Pitt’s Andrew W. Mellon Professor of Mathematics—had access to tools that his predecessors lacked: powerful computers. He won the American Mathematical Society’s David P. Robbins Prize in 2007 for his proof.</p><p>Professors aren't the only Pitt mathematicians who have set the math world
abuzz. In fall 2010, a research paper coauthored by Pitt senior <strong>Carey Caginalp</strong> (A&S’ 11) and his
mentor, Professor <strong>Xinfu Chen</strong>, was
accepted by the French Academy of Sciences for publication in its
internationally renowned journal—shortly before Caginalp’s 17th birthday. The
paper described an application of the century-old Brownian motion theory to a
modern area of applied mathematics.</p>
<p>In 1997, Pitt sophomore <strong>Ovidu Savin</strong>
(A&S ’99) outscored more than 2,500 other math students in North America to
finish first in the William Lowell Putnam Mathematics Competition, the world’s
most prestigious competition for mathematics undergrads. Today an
associate professor of mathematics at Columbia University, the Romanian-born Savin
focuses on partial differential equations that describe such natural phenomena
as heat and wave propagation and elasticity.</p>
<p>Abstract mathematical work like Savin’s can lead to amazing applications.
For example, only pure mathematicians were interested in the theory of finite fields
until digital communications came along and scientists began using
finite-fields theory as a building block for error correction; everyone using a
cell phone today benefits. The theory of
partial differential equations itself provides the foundation to build
algorithms that lie at the heart of modern technological marvels ranging from
GPS to the control system in a hybrid vehicle.</p> </div>
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211 </div>
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accomplishmentsawardsmathematicsresearchScience/TechnologyTue, 20 Dec 2011 18:53:09 +0000admin247 at https://www.225.pitt.edu