Skip to main content

Humanities, Social Science and Language


Digital Products


Connect®
Course managementreporting, and student learning tools backed by great support.

McGraw Hill GO
Greenlight learning with the new eBook+

ALEKS®
Personalize learning and assessment

ALEKS® Placement, Preparation, and Learning
Achieve accurate math placement

SIMnet
Ignite mastery of MS Office and IT skills

McGraw Hill eBook & ReadAnywhere App
Get learning that fits anytime, anywhere

Sharpen: Study App
A reliable study app for students

Virtual Labs
Flexible, realistic science simulations

Services


Inclusive Access
Reduce costs and increase success

LMS Integration
Log in and sync up

Math Placement
Achieve accurate math placement

Content Collections powered by Create®
Curate and deliver your ideal content

Custom Courseware Solutions
Teach your course your way

Professional Services
Collaborate to optimize outcomes

Remote Proctoring
Validate online exams even offsite

Institutional Solutions
Increase engagement, lower costs, and improve access for your students

Support


General Help & Support Info
Customer Service & Tech Support contact information

Online Technical Support Center
FAQs, articles, chat, email or phone support

Support At Every Step
Instructor tools, training and resources for ALEKS, Connect & SIMnet

Instructor Sample Requests
Get step by step instructions for requesting an evaluation, exam, or desk copy

Platform System Check
System status in real time

Thermal Science
Thermal Science

Thermal Science, 1st Edition

ISBN10: 0071772359 | ISBN13: 9780071772358
By Erian Baskharone
© 2012

Format Options:

* The estimated amount of time this product will be on the market is based on a number of factors, including faculty input to instructional design and the prior revision cycle and updates to academic research-which typically results in a revision cycle ranging from every two to four years for this product. Pricing subject to change at any time.

Instructor Information

Quick Actions (Only for Validated Instructor Accounts):

A practical, illustrated guide to thermal science

A practical, illustrated guide to thermal science Written by a subject-matter expert with many years of academic and industrial experience, Thermal Science provides detailed yet concise coverage of thermodynamics, fluid mechanics, and heat transfer. The laws of thermodynamics are discussed with emphasis on their real-world applications.

This comprehensive resource clearly presents the flow-governing equations of fluid mechanics, including those of mass, linear momentum, and energy conservation. Flow behavior through turbomachinery components is also addressed. The three modes of heat transfer--conduction, convection, and radiation--are described along with practical applications of each.

Thermal Science covers:

  • Properties of pure substances and ideal gases
  • First and second laws of thermodynamics
  • Energy conversion by cycles
  • Power-absorbing cycles
  • Gas power cycles
  • Flow-governing equations
  • External and internal flow structures
  • Rotating machinery fluid mechanics
  • Variable-geometry turbomachinery stages
  • Prandtl-Meyer flow
  • Internal flow, friction, and pressure drop
  • Fanno flow process for a viscous flow field
  • Rayleigh flow
  • Heat conduction and convection
  • Heat exchangers
  • Transfer by radiation

Instructor material available for download from companion website

PART 1: THERMODYNAMICS
Ch 1. Foreword
Ch 2. Definitions
Ch 3. Properties of Pure Substances
Ch 4. Properties of Ideal Gases
Ch 6. Energy Conversion By Cycles
Ch 7. Gas Power Cycles

PART II: FLUID MECHANICS
Ch 8. Flow-Governing Equations
Ch 9. Sonic Speed in Ideal Gases
Ch 10. Introduction of the Critical Mach Number
Ch 11. Continuity in Terms of the Critical Mach Number
Ch 12. Isentropic Flow Through Varying-Area Passages
Ch 13. Rotating Machinery Fluid Mechanics
Ch 14. Velocity Diagrams
Ch 15. Cross-Flow Area Variation
Ch 16. Supersonic Stator Cascade
Ch 17. Normal Shocks
Ch 18. Fanno Flow Process for a Viscous Flow Field
Ch 19. Rayleigh Flow
Ch 20. Dynamic Similarity (Similitude) Theory
Ch 21. Radial Equilibrium Theory

PART III: HEAT TRANSFER
Ch 22. Introduction
Ch 23. Heat Conduction
Ch 24. Heat Convection
Ch 25. Lumped Parameter Analysis
Ch 26. Heat Transfer By Radiation

Appendix A: Analysis
Appendix B: Charts and Tables

About the Author

Erian Baskharone

Need support?   We're here to help - Get real-world support and resources every step of the way.