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020 _a9783030204303
024 7 _a10.1007/978-3-030-20430-3
_2doi
040 _bspa
_cES-MaUEC
_dES-MaUEC
050 4 _aTJ265
_b2022 EB
100 1 _aSidebotham, George William
_eautor
_4aut
_4http://id.loc.gov/vocabulary/relators/aut
_9669749
245 1 3 _aAn Inductive Approach to Engineering Thermodynamics
_cby George Sidebotham
250 _a1st edition 2022
264 1 _aCham
_bSpringer International Publishing
_c2022
300 _a1 recurso en línea (XXVII, 782 páginas)
_b432 ilustraciones, 219 ilustraciones a color
336 _atexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _aarchivo de texto
_bPDF
490 0 _aMechanical Engineering Series
_x2192-063X
505 0 _a1. Newton's Apple -- 2. Thermodynamics of Collisions -- 3. Thermodynamic Cycles and Efficiencies 4. Liquid/Vapor Properties -- 5. Open Systems: Pumps and Turbines -- 6. Compressors and the Ideal Gas -- 7. An Idealized Model of a Throttled 4-Stroke Reciprocating Spark Ignition Engine -- 8. Vapor/Compression Refrigeration -- 9. Gas Turbines -- 10. Steam Turbine Cycles -- 11. Combined Cycles -- 12. Psychrometrics.
520 _aThis textbook provides an alternative, inductive treatment of traditional Engineering Thermodynamics, e.g. energy and its transformations in engineering systems, and emphasizes the notion of eXergy. The book begins with energy methods developed in mechanics and transitions to thermodynamics by introducing both 1st and 2nd Laws of Thermodynamics immediately, incorporating more-advanced concepts using practical applications. This methodology continues throughout the text, wherein consideration of a specific example leads to general conclusions. At the same time, the author introduces eXergy, also called "Availability," a measure of the potential of a substance to produce useful mechanical work in being brought from its current state to the conditions of the local environment. The book facilitates students' understanding with workshop problem statements and guided spreadsheets. It is appropriate for a sophomore- or junior-level first course in thermodynamics and is restricted to "simple compressible substances" with no formal chemical reaction development. Mechanical engineering applications are the primary target, where several follow-up courses would follow (fluid mechanics, heat transfer, and a 2nd thermodynamics course). Civil or electrical engineering students could benefit from just this course, and chemical engineering programs could develop chemically reacting and non-ideal applications in follow-up courses. Adopts an inductive approach in which practical examples are introduced and studied from a thermodynamic perspective Explains engineering thermodynamics iteratively,, from mechanics examples through complex thermal systems Introduces core concepts followed by "deeper dives" to allow for a variety of levels of study in a single resource.
988 _aSpringer_Engineering_2022
650 7 _2embne
_9139804
_aTermodinámica
776 0 8 _iPrinted edition:
_z9783030204297
776 0 8 _iPrinted edition:
_z9783030204310
776 0 8 _iPrinted edition:
_z9783030204327
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-030-20430-3
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
_cLE
998 _b12/2022
_dz
_eb
_zSI