Sale!

Orbital Mechanics for Engineering Students: Revised Reprint 4th Edition – PDF ebook

Orbital Mechanics for Engineering Students: Revised Reprint 4th Edition – PDF ebook Copyright: 2021, Edition: 4th, Author: Howard D. Curtis, Publisher: Elsevier Butterworth Heinemann, Print ISBN: 9780128240250, etext ISBN: 9781000257830, Format: PDF

Original price was: $99.00.Current price is: $23.00.

Buy Orbital Mechanics for Engineering Students: Revised Reprint 4th Edition PDF ebook by author Howard D. Curtis – published by Elsevier Butterworth Heinemann in 2021 and save up to 80%  compared to the print version of this textbook. With PDF version of this textbook, not only save you money, you can also highlight, add text, underline add post-it notes, bookmarks to pages, instantly search for the major terms or chapter titles, etc.
You can search our site for other versions of the Orbital Mechanics for Engineering Students: Revised Reprint 4th Edition PDF ebook. You can also search for others PDF ebooks from publisher Elsevier Butterworth Heinemann, as well as from your favorite authors. We have thousands of online textbooks and course materials (mostly in PDF) that you can download immediately after purchase.
Note: e-textBooks do not come with access codes, CDs/DVDs, workbooks, and other supplemental items.
eBook Details:

Full title: Orbital Mechanics for Engineering Students: Revised Reprint 4th Edition
Edition: 4th
Copyright year: 2021
Publisher: Elsevier Butterworth Heinemann
Author: Howard D. Curtis
ISBN: 9780128240250, 9781000257830
Format: PDF

Description of Orbital Mechanics for Engineering Students: Revised Reprint 4th Edition:
The seventh edition of this classic text outlines the fundamental physical principles of thermal radiation, as well as analytical and numerical techniques for quantifying radiative transfer between surfaces and within participating media. The textbook includes newly expanded sections on surface properties, electromagnetic theory, scattering and absorption of particles, and near-field radiative transfer, and emphasizes the broader connections to thermodynamic principles. Sections on inverse analysis and Monte Carlo methods have been enhanced and updated to reflect current research developments, along with new material on manufacturing, renewable energy, climate change, building energy efficiency, and biomedical applications. Features: Offers full treatment of radiative transfer and radiation exchange in enclosures. Covers properties of surfaces and gaseous media, and radiative transfer equation development and solutions. Includes expanded coverage of inverse methods, electromagnetic theory, Monte Carlo methods, and scattering and absorption by particles. Features expanded coverage of near-field radiative transfer theory and applications. Discusses electromagnetic wave theory and how it is applied to thermal radiation transfer. This textbook is ideal for Professors and students involved in first-year or advanced graduate courses/modules in Radiative Heat Transfer in engineering programs. In addition, professional engineers, scientists and researchers working in heat transfer, energy engineering, aerospace and nuclear technology will find this an invaluable professional resource. Over 350 surface configuration factors are available online, many with online calculation capability. Online appendices provide information on related areas such as combustion, radiation in porous media, numerical methods, and biographies of important figures in the history of the field. A Solutions Manual is available for instructors adopting the text.