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Thermodynamics / Mechanical engineering / Electromagnetic radiation / Heat conduction / State functions / Thermal radiation / Rapid thermal processing / Stefan–Boltzmann law / Radiosity / Heat transfer / Chemistry / Physics


Mathematics-in-Industry Case Studies Journal, Volume 3, ppA Radiation Model of a Rapid Thermal Processing System Abigail Wacher Abstract.
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Document Date: 2015-03-23 09:46:00


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File Size: 319,78 KB

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City

Vancouver / Durham / /

Company

Vortek Industries Limited / /

Country

Canada / United Kingdom / /

/

Facility

Durham University / University of British Columbia / /

IndustryTerm

recursive algorithm / radiative energy / Gas viscosity increases / Rapid thermal processing / cosine law / gas flowing / radiant energy equations results / energy reflections / radiant energy / gas constant / gas flows / The cooling gas / speed computation applications / reflective metal grid / explicit solution / symmetric rapid thermal processing chamber / radiant energy leaving surface / radiant energy leaving / energy leaving surface / energy / /

Organization

Department of Mathematics / Department of Mathematical Sciences / University of British Columbia / Durham University / /

Person

Brian R. Seymour / Abigail Wacher / Ai / /

Position

guard / model / first author / 2j σT24j Pm / /

Product

Newton / /

ProgrammingLanguage

R / K / /

ProvinceOrState

British Columbia / /

Technology

semiconductor / one technology / Radiation / semiconductors / rapid thermal processing / ATM / heat transfer / Rapid Thermal Processing System / simulation / recursive algorithm / /

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