Master the Science of Energy with Clarity, Precision, and Visual Guidance.
Built from the ground up for first- and second-year students, this self-contained textbook cuts through dense academic jargon to offer a highly engaging, example-driven blueprint for mastery. Author connects abstract mathematical equations directly to physical reality using intuitive, clear schematics and a disciplined, structured approach. Instead of demanding rote formula memorization, each of the 43 chapters unpacks exactly why a topic matters, how the core principles apply to real-world devices
Spanning 11 comprehensive parts, the text guides readers effortlessly from foundational principles such as control volumes, equations of state, and boundary work-to advanced, modern territories including psychrometrics, combustion stoichiometry, and statistical mechanics. It also provides an up-to-date look at the thermodynamic design of emerging renewable systems like solar thermal, geothermal energy, green hydrogen, and fuel cells.
11-Part Roadmap:
Foundations: Systems, properties of matter, pure substances, and equations of state.
The First Law: Energy balances for closed systems, control volumes, and engineering devices.
The Limits of Energy: Entropy, the Second Law, the Carnot ceiling, and Exergy analysis.
Power and Gas Cycles: Rankine, Brayton, Otto, Diesel, Stirling, and Ericsson cycles.
Refrigeration & HVAC: Vapor-compression, absorption refrigeration, and psychrometrics.
Combustion: Stoichiometry, heating values, flame temperatures, and emissions control.
Property Relations: Partial derivatives, potentials, and the Maxwell equations.
Mixtures: Mass/mole fractions, Dalton's law, and gas-vapor modeling.
Renewable Energy: Solar thermal, geothermal systems, wind, hydro, ocean engineering, and the hydrogen economy.
Advanced Frontiers: Statistical thermodynamics, information entropy, kinetic theory, and cryogenics.
"Sinopsis" puede pertenecer a otra edición de este libro.
Librería: Grand Eagle Retail, Bensenville, IL, Estados Unidos de America
Paperback. Condición: new. Paperback. Master the Science of Energy with Clarity, Precision, and Visual Guidance.Built from the ground up for first- and second-year students, this self-contained textbook cuts through dense academic jargon to offer a highly engaging, example-driven blueprint for mastery. Author connects abstract mathematical equations directly to physical reality using intuitive, clear schematics and a disciplined, structured approach. Instead of demanding rote formula memorization, each of the 43 chapters unpacks exactly why a topic matters, how the core principles apply to real-world devicesSpanning 11 comprehensive parts, the text guides readers effortlessly from foundational principles such as control volumes, equations of state, and boundary work-to advanced, modern territories including psychrometrics, combustion stoichiometry, and statistical mechanics. It also provides an up-to-date look at the thermodynamic design of emerging renewable systems like solar thermal, geothermal energy, green hydrogen, and fuel cells.Key Features: Unrivaled Visual Pedagogy: Every single law, state posture, and thermodynamic cycle is illustrated with clear, intuitive diagrams, flowchart workflows, and property charts ($P\text{-}V$, $T\text{-}v$, and $T\text{-}s$) that bridge theory and calculation.Step-by-Step Worked Examples: Every chapter includes at least three fully worked math problems that never skip intermediate arithmetic steps, unit conversion tracking, or algebraic rearrangements.Bulletproof Calculation Routines: Introduces students to a reliable, universal 5-step engineering routine to prevent common conversion slips, dimensional homogeneity issues, and false sig-fig precision.Active Learning Checks: Loaded with real-world Concept Checks, quick-reference Method Summaries, Common Mistake Warnings, and concise chapter Cheat Sheets to accelerate study sessions and exam preparation.Graded Practice & Full Solutions: Includes beginner, intermediate, and advanced textbook exercises, an elite Challenge Problem, and a comprehensive, fully worked Answer Key at the end of every chapter with independently verified data.11-Part Roadmap: Foundations: Systems, properties of matter, pure substances, and equations of state.The First Law: Energy balances for closed systems, control volumes, and engineering devices.The Limits of Energy: Entropy, the Second Law, the Carnot ceiling, and Exergy analysis.Power and Gas Cycles: Rankine, Brayton, Otto, Diesel, Stirling, and Ericsson cycles.Refrigeration & HVAC: Vapor-compression, absorption refrigeration, and psychrometrics.Combustion: Stoichiometry, heating values, flame temperatures, and emissions control.Property Relations: Partial derivatives, potentials, and the Maxwell equations.Mixtures: Mass/mole fractions, Dalton's law, and gas-vapor modeling.Renewable Energy: Solar thermal, geothermal systems, wind, hydro, ocean engineering, and the hydrogen economy.Advanced Frontiers: Statistical thermodynamics, information entropy, kinetic theory, and cryogenics. A visual, example-driven textbook from core foundational concepts to advanced frontiers.The Book bypasses tedious memorization through intuitive diagrams, step-by-step worked examples, common-mistake alerts, and complete problem answer keys. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Nº de ref. del artículo: 9798256173364
Cantidad disponible: 1 disponibles
Librería: California Books, Miami, FL, Estados Unidos de America
Condición: New. Nº de ref. del artículo: I-9798256173364
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Librería: PBShop.store UK, Fairford, GLOS, Reino Unido
PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000. Nº de ref. del artículo: L2-9798256173364
Cantidad disponible: Más de 20 disponibles
Librería: CitiRetail, Stevenage, Reino Unido
Paperback. Condición: new. Paperback. Master the Science of Energy with Clarity, Precision, and Visual Guidance.Built from the ground up for first- and second-year students, this self-contained textbook cuts through dense academic jargon to offer a highly engaging, example-driven blueprint for mastery. Author connects abstract mathematical equations directly to physical reality using intuitive, clear schematics and a disciplined, structured approach. Instead of demanding rote formula memorization, each of the 43 chapters unpacks exactly why a topic matters, how the core principles apply to real-world devicesSpanning 11 comprehensive parts, the text guides readers effortlessly from foundational principles such as control volumes, equations of state, and boundary work-to advanced, modern territories including psychrometrics, combustion stoichiometry, and statistical mechanics. It also provides an up-to-date look at the thermodynamic design of emerging renewable systems like solar thermal, geothermal energy, green hydrogen, and fuel cells.Key Features: Unrivaled Visual Pedagogy: Every single law, state posture, and thermodynamic cycle is illustrated with clear, intuitive diagrams, flowchart workflows, and property charts ($P\text{-}V$, $T\text{-}v$, and $T\text{-}s$) that bridge theory and calculation.Step-by-Step Worked Examples: Every chapter includes at least three fully worked math problems that never skip intermediate arithmetic steps, unit conversion tracking, or algebraic rearrangements.Bulletproof Calculation Routines: Introduces students to a reliable, universal 5-step engineering routine to prevent common conversion slips, dimensional homogeneity issues, and false sig-fig precision.Active Learning Checks: Loaded with real-world Concept Checks, quick-reference Method Summaries, Common Mistake Warnings, and concise chapter Cheat Sheets to accelerate study sessions and exam preparation.Graded Practice & Full Solutions: Includes beginner, intermediate, and advanced textbook exercises, an elite Challenge Problem, and a comprehensive, fully worked Answer Key at the end of every chapter with independently verified data.11-Part Roadmap: Foundations: Systems, properties of matter, pure substances, and equations of state.The First Law: Energy balances for closed systems, control volumes, and engineering devices.The Limits of Energy: Entropy, the Second Law, the Carnot ceiling, and Exergy analysis.Power and Gas Cycles: Rankine, Brayton, Otto, Diesel, Stirling, and Ericsson cycles.Refrigeration & HVAC: Vapor-compression, absorption refrigeration, and psychrometrics.Combustion: Stoichiometry, heating values, flame temperatures, and emissions control.Property Relations: Partial derivatives, potentials, and the Maxwell equations.Mixtures: Mass/mole fractions, Dalton's law, and gas-vapor modeling.Renewable Energy: Solar thermal, geothermal systems, wind, hydro, ocean engineering, and the hydrogen economy.Advanced Frontiers: Statistical thermodynamics, information entropy, kinetic theory, and cryogenics. A visual, example-driven textbook from core foundational concepts to advanced frontiers.The Book bypasses tedious memorization through intuitive diagrams, step-by-step worked examples, common-mistake alerts, and complete problem answer keys. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Nº de ref. del artículo: 9798256173364
Cantidad disponible: 1 disponibles
Librería: AussieBookSeller, Truganina, VIC, Australia
Paperback. Condición: new. Paperback. Master the Science of Energy with Clarity, Precision, and Visual Guidance.Built from the ground up for first- and second-year students, this self-contained textbook cuts through dense academic jargon to offer a highly engaging, example-driven blueprint for mastery. Author connects abstract mathematical equations directly to physical reality using intuitive, clear schematics and a disciplined, structured approach. Instead of demanding rote formula memorization, each of the 43 chapters unpacks exactly why a topic matters, how the core principles apply to real-world devicesSpanning 11 comprehensive parts, the text guides readers effortlessly from foundational principles such as control volumes, equations of state, and boundary work-to advanced, modern territories including psychrometrics, combustion stoichiometry, and statistical mechanics. It also provides an up-to-date look at the thermodynamic design of emerging renewable systems like solar thermal, geothermal energy, green hydrogen, and fuel cells.Key Features: Unrivaled Visual Pedagogy: Every single law, state posture, and thermodynamic cycle is illustrated with clear, intuitive diagrams, flowchart workflows, and property charts ($P\text{-}V$, $T\text{-}v$, and $T\text{-}s$) that bridge theory and calculation.Step-by-Step Worked Examples: Every chapter includes at least three fully worked math problems that never skip intermediate arithmetic steps, unit conversion tracking, or algebraic rearrangements.Bulletproof Calculation Routines: Introduces students to a reliable, universal 5-step engineering routine to prevent common conversion slips, dimensional homogeneity issues, and false sig-fig precision.Active Learning Checks: Loaded with real-world Concept Checks, quick-reference Method Summaries, Common Mistake Warnings, and concise chapter Cheat Sheets to accelerate study sessions and exam preparation.Graded Practice & Full Solutions: Includes beginner, intermediate, and advanced textbook exercises, an elite Challenge Problem, and a comprehensive, fully worked Answer Key at the end of every chapter with independently verified data.11-Part Roadmap: Foundations: Systems, properties of matter, pure substances, and equations of state.The First Law: Energy balances for closed systems, control volumes, and engineering devices.The Limits of Energy: Entropy, the Second Law, the Carnot ceiling, and Exergy analysis.Power and Gas Cycles: Rankine, Brayton, Otto, Diesel, Stirling, and Ericsson cycles.Refrigeration & HVAC: Vapor-compression, absorption refrigeration, and psychrometrics.Combustion: Stoichiometry, heating values, flame temperatures, and emissions control.Property Relations: Partial derivatives, potentials, and the Maxwell equations.Mixtures: Mass/mole fractions, Dalton's law, and gas-vapor modeling.Renewable Energy: Solar thermal, geothermal systems, wind, hydro, ocean engineering, and the hydrogen economy.Advanced Frontiers: Statistical thermodynamics, information entropy, kinetic theory, and cryogenics. A visual, example-driven textbook from core foundational concepts to advanced frontiers.The Book bypasses tedious memorization through intuitive diagrams, step-by-step worked examples, common-mistake alerts, and complete problem answer keys. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Nº de ref. del artículo: 9798256173364
Cantidad disponible: 1 disponibles
Librería: preigu, Osnabrück, Alemania
Taschenbuch. Condición: Neu. Engineering Thermodynamics | The Complete Course A Visual, Example-Driven Guide for First- and Second-Year Students | Mir M Hossain | Taschenbuch | Mittelenglisch (1100-1500) | 2026 | Mir Publishing | EAN 9798256173364 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand. Nº de ref. del artículo: 136293930
Cantidad disponible: 5 disponibles