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User:Chris Szalwinski

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<td class="role" style="padding: 0.2em; line-height: 1.3em; vertical-align: middle; font-size: 90%;">Seneca College <br /> School of Computer Studies Information and Communications Technology <br /> Faculty</td>
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<td class="" style="padding: 0.2em; line-height: 1.3em; vertical-align: middle; font-size: 90%;">416.491.5050 ext 336433634</td>
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<th style="padding: 0.2em 1em 0.2em 0.2em; background: transparent none repeat scroll 0% 0%; line-height: 1.2em; text-align: left; font-size: 90%;vertical-align: top;">ICT Home Page</th><td class="" style="padding: 0.2em; line-height: 1.3em; vertical-align: middle; font-size: 90%;">https://csscs.senecac.on.ca/~chris.szalwinski/</td>
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[mailto:chris.szalwinski@senecac.onsenecacollege.ca chris dot szalwinski at senecac dot on senecacollege dot ca]</td>
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'''Chris Szalwinski''' is a Professor at the [https://csscs.senecac.on.ca/ School of Computer Studies at Information and Communications Technology] (ICT) of Seneca College]and an independent scientific researcher.He teaches C, C++ and Parallel Programming. He has taught Game Programming (DirectX) and Human Computer Interaction and has published comprehensive web sites that contain his course materials. He currently leads the programming faculty and is updating its course material for the C and C++, diploma and degree subjects. He does research on soft matter mechanics in his spare time.
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In fall 2012, Chris introduced an ICT course in parallel programming on heterogeneous computers using Nvidia's CUDA technology; that is, a course on how to use your desktop as your very own supercomputer. He teaches C++ICT students to harness the processing power available on today's desktop graphics cards for computing tasks that benefit from high performance hardware. Students who finish this course should find themselves well-positioned to assist employers and clients in solving embarrassingly data-parallel programming problems.</p><p>This winter (2014), Chris taught an intermediate successor course in parallel computing. This new course covered a variety of parallel algorithms and platforms.</p><p>Chris is interested in supervising applied research initiatives in task-parallel and data-parallel programming that provide students who have completed his courses with opportunities to apply and refine their skill set on heterogeneous applications. He is interested in joint collaboration with academia, business, and industry on research projects that will advance the state of this technology and better prepare his students for the challenges and opportunities that are arising in the field of accelerated computing. </p></td><td>[[Image:NV_CUDA_Teaching_Center_Small.jpg]]</td></tr></table><p>Before joining Seneca College, Game Programming Chris incorporated cutting-edge software within engineering firms and Human Computer Interactiongovernment departments and introduced cutting-edge technology into graduate programs at several top-tier academic institutions.</p><p>Chris maintains a personal interest, outside his Seneca College duties, in developing and modelling constitutive relations for soft granular matter. He finds this a fascinating, emerging field, which he believes presents numerous opportunities for innovative programming.
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== Courses ===== ICT Courses Taught ===<h5>IPC144 - Introduction to Programming Using C</h5><dl style="margin-bottom:0.5em;margin-top:0.2em;line-height:1.5em;"><dd><i>Further information: [https://scs.senecac.on.ca/~ipc144 IPC144 Web Site]</i></dl><h4h5>OOP244 - Introduction to Object-Oriented ProgrammingUsing C++</h5><dl style="margin-bottom:0.5em;margin-top:0.2em;line-height:1.5em;"><dd><i>Further information: [https://scs.senecac.on.ca/~oop244 OOP244 Web Site]</i></dl><h5>OOP344 - Object-Oriented Programming Using C++</h5><dl style="margin-bottom:0.5em;margin-top:0.2em;line-height:1.5em;"><dd><i>Further information: [https://scs.senecac.on.ca/~oop344 OOP344 Web Site]</i></dl><h5>BTP100 - Programming Fundamentals Using C</h4h5>
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<i>Further information: [https://csscs.senecac.on.ca/~oop244 OOP244 btp100 BTP100 Web Site]</i>
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<h4h5>BTP200 - The Object-Oriented Paradigm using C++</h4h5>
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<i>Further information: [https://csscs.senecac.on.ca/~btp200 BTP200 Web Site]</i>
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<h4h5>BTP300 - Object-Oriented Software Development I - C++</h4h5>
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<i>Further information: [https://csscs.senecac.on.ca/~btp300 BTP300 Web Site] [http://zenit.senecac.on.ca/wiki/index.php/BTP300 BTP300 Wiki]</i>
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<h4h5>BTH740 - Human Computer Interaction</h4h5>
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<i>Further information: [https://csscs.senecac.on.ca/~bth740 BTH740 Web Site] [http://zenit.senecac.on.ca/wiki/index.php/BTH740 BTH740 Wiki]</i>
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<h4h5>GAM666, DPS901 - Introduction to 3D Game Programming</h4h5>
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<i>Further information: [https://csscs.senecac.on.ca/~gam666 GAM666 and DPS901 Web Site] [http://zenit.senecac.on.ca/wiki/index.php/GAM666/DPS901 GAM666 and DPS901 Wiki]</i>
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<h4h5>GAM670, DPS905 - 3D Game Programming Techniques</h4h5>
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<i>Further information: [https://csscs.senecac.on.ca/~gam670 GAM670 and DPS905 Web Site] [http://zenit.senecac.on.ca/wiki/index.php/GAM670/DPS905 GAM670 and DPS905 Wiki]</i></dl><h5>GPU610, DPS915 - Introduction to Parallel Programming</h5><dl style="margin-bottom:0.5em;margin-top:0.2em;line-height:1.5em;"><dd><i>Further information: [https://scs.senecac.on.ca/~gpu610 GPU610 and DPS915 Web Site] [http://zenit.senecac.on.ca/wiki/index.php/GPU610/DPS915 GPU610 and DPS915 Wiki]</i>
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== Applied Research ===== General Interests ===* heterogeneous computing (CPU + GPU) for scientific applications* joint collaborations with academia, business, and industry === Domain Expertise ===* mathematical applications: numerical methods: direct solution techniques (frontal)* scientific and engineering applications: non-linear finite elements: elasto-plastic constitutive relations: friction and partial-slip in contact problems* game programming: instructional frameworks* GPU programming == Cross-References ==* [http://zenit.senecac.on.ca/wiki/index.php/Programming_Stream ICT Programming Stream Pages]
== External links ==
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[https://csscs.senecac.on.ca/~chris.szalwinski/timetable.html Chris' Current Teaching Schedule]
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[https://csscs.senecac.on.ca/~chris.szalwinski/ Chris' ICT Home Page]</li><li>[http://fwks.senecac.on.ca Faculty Initiatives Page]
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== Publications ==
* ---- (2013). Programming Computers Using C. Seneca College. June 2014 Edition.* ---- (2013). Introduction to Object-Oriented Programming Using C++11. Seneca College November 2013 Edition.* Anastasiade, J., and Szalwinski, C. ---- (2010). Building Computer-Based Tutors to Help Learners Solve Ill-Structured Problems. In [http://aace.org/conf/edmedia Proceedings of the World Conference on Educational Multimedia, Hypermedia and Telecommunications 2010]. Toronto, Ontario, Canada: Association for the Advancement of Computing in Education. pp.3726-3732.* Szalwinski, C. ---- (2010). Introduction to C++ for C Programmers. Seneca College ISBN 0889000191647.* ---- (1983). Flexibility of a contact area of an isotropic elastic body, Journal of Applied Mechanics 52, 62.* ---00036-71716(1983). The particle stress tensor, Geotechnique 33, 181.=== Monographs ===* -3--- (1984). The Frontal Solution Technique - University of Cambridge, England* ---- (1976). Engineering Approximations: the finite element method in structural mechanics - University of Toronto=== Applications Software ======== For Structural Engineers =====* ---- (1989). TIMECOST - Time-keeping, job-costing, client-billing accounting package - dBase IV* ---- (1987). SLABDESN - Reinforced concrete slab analysis and design program* ---- (1985). FRANV4 - Elastic analysis of hi-rise structures with many degrees of freedom* ---- (1976). PRSN - Properties of irregular sections with shear center* ---- (1975). LLOAD - Live load reduction program for structural engineers* ---- (1974). CONCBM - Analysis, design and detailing of reinforced concrete beams* ---- (1972). EARQ - Earthquake analysis for structural engineers* ---- (1972). DEFLCTN - Long-term deflections of reinforced concrete beams ===== For Research Engineers and Academia =====* ---- (1974). FRONTAL - A software library for efficient solution of symmetric systems of element based simultaneous equations* ---- (1976). FEASVOMO - Finite Element Framework for developing and testing new and innovative elements* ---- (1983). FEASAS - Finite Element System for the analysis of reinforced earth embankments

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