Thermodynamics: An Engineering ApproachSchaum's outline series in mechanical and industrial engineering; Yunus A. Çengel, Michael A. Boles; 1994
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Thermodynamics: An Engineering ApproachSchaum's outline series in mechanical and industrial engineering Upplaga 2

av Yunus A. Çengel, Michael A. Boles
The book adopts the classical, or macroscopic, approach, with microscopic arguments serving in a supporting role where appropriate. This makes it easier for students to learn the subject matter. The software enables users to solve design problems: they can analyse steam and gas power cycles at different levels of complexity, perform combustion analysis of several fuels in closed steady-flow systems and evaluate the properties of air-water vapour mixtures and more.
The book adopts the classical, or macroscopic, approach, with microscopic arguments serving in a supporting role where appropriate. This makes it easier for students to learn the subject matter. The software enables users to solve design problems: they can analyse steam and gas power cycles at different levels of complexity, perform combustion analysis of several fuels in closed steady-flow systems and evaluate the properties of air-water vapour mixtures and more.
Upplaga: 2a upplagan
Utgiven: 1994
ISBN: 9780071132497
Förlag: McGraw-Hill
Format: Häftad
Språk: Engelska
Sidor: 987 st
The book adopts the classical, or macroscopic, approach, with microscopic arguments serving in a supporting role where appropriate. This makes it easier for students to learn the subject matter. The software enables users to solve design problems: they can analyse steam and gas power cycles at different levels of complexity, perform combustion analysis of several fuels in closed steady-flow systems and evaluate the properties of air-water vapour mixtures and more.
The book adopts the classical, or macroscopic, approach, with microscopic arguments serving in a supporting role where appropriate. This makes it easier for students to learn the subject matter. The software enables users to solve design problems: they can analyse steam and gas power cycles at different levels of complexity, perform combustion analysis of several fuels in closed steady-flow systems and evaluate the properties of air-water vapour mixtures and more.
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