Where to find rocket engineering?

When you looking for rocket engineering, you must consider not only the quality but also price and customer reviews. But among hundreds of product with different price range, choosing suitable rocket engineering is not an easy task. In this post, we show you how to find the right rocket engineering along with our top-rated reviews. Please check out our suggestions to find the best rocket engineering for you.

Best rocket engineering

Product Features Editor's score Go to site
Introduction to Rocket Science and Engineering Introduction to Rocket Science and Engineering
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Modern Engineering for Design of Liquid-Propellant Rocket Engines (Progress in Astronautics & Aeronautics) Modern Engineering for Design of Liquid-Propellant Rocket Engines (Progress in Astronautics & Aeronautics)
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Introduction to Rocket Science and Engineering Introduction to Rocket Science and Engineering
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Rocket Propulsion Elements Rocket Propulsion Elements
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Make: High-Power Rockets: Construction and Certification for Thousands of Feet and Beyond Make: High-Power Rockets: Construction and Certification for Thousands of Feet and Beyond
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Rocket Manual - 1942 onwards: An insight into the development and technology of space rockets and satellite launchers (Owners' Workshop Manual) Rocket Manual - 1942 onwards: An insight into the development and technology of space rockets and satellite launchers (Owners' Workshop Manual)
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Fundamentals of Astrodynamics (Dover Books on Aeronautical Engineering) Fundamentals of Astrodynamics (Dover Books on Aeronautical Engineering)
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Building Rockets (Focus Readers: Engineering Challenges: Navigator Level) Building Rockets (Focus Readers: Engineering Challenges: Navigator Level)
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Rocket Science for the Rest of Us: Cutting-Edge Concepts Made Simple Rocket Science for the Rest of Us: Cutting-Edge Concepts Made Simple
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It's ONLY Rocket Science: An Introduction in Plain English (Astronomers' Universe) It's ONLY Rocket Science: An Introduction in Plain English (Astronomers' Universe)
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1. Introduction to Rocket Science and Engineering

Description

Introduction to Rocket Science and Engineering, Second Edition, presents the history and basics of rocket science, and examines design, experimentation, testing, and applications. Exploring how rockets work, the book covers the concepts of thrust, momentum, impulse, and the rocket equation, along with the rocket engine, its components, and the physics involved in the generation of the propulsive force. The text also presents several different types of rocket engines and discusses the testing of rocket components, subsystems, systems, and complete products. The final chapter stresses the importance for rocket scientists and engineers to creatively deal with the complexities of rocketry.

2. Modern Engineering for Design of Liquid-Propellant Rocket Engines (Progress in Astronautics & Aeronautics)

Description

From the component design, to the subsystem design, to the engine systems design, engine development and flight-vehicle application, this how-to text bridges the gap between basic physical and design principles and actual rocket-engine design as it's done in industry.

3. Introduction to Rocket Science and Engineering

Feature

CRC Press

Description

An overall view of the vast spectrum of knowledge needed by practicing rocket scientists and engineers, Introduction to Rocket Science and Engineering presents the history and basics of rocket theory, design, experimentation, testing, and applications. It covers an array of fields, from advanced mathematics, chemistry, and physics to logistics, systems engineering, and politics.

The text begins with a discussion on the discovery and development of rockets as well as the basic principles governing rockets and rocket science. It explains why rockets are needed from economic, philosophical, and strategic standpoints and looks at why the physics of the universe forces us to use rockets to complete certain activities. Exploring how rockets work, the author covers the concepts of thrust, momentum, impulse, and the rocket equation, along with the rocket engine, its components, and the physics involved in the generation of the propulsive force. He also presents several different types of rocket engines and discusses the testing of rocket components, subsystems, systems, and complete products. The final chapter stresses the importance of rocket scientists and engineers to think of the unusual, unlikely, and unthinkable when dealing with the complexities of rocketry.

Taking students through the process of becoming a rocket scientist or engineer, this text supplies a hands-on understanding of the many facets of rocketry. It provides the ideal foundation for students to continue on their journey in rocket science and engineering.

4. Rocket Propulsion Elements

Feature

Wiley

Description

THE DEFINITIVE INTRODUCTION TO ROCKET PROPULSION THEORY AND APPLICATIONS

The recent upsurge in global government and private spending and in space flight events has resulted in many novel applications of rocket propulsion technology. Rocket Propulsion Elements remains the definitive guide to the field, providing a comprehensive introduction to essential concepts and applications. Led by industry veteran George P. Sutton and by Professor Oscar Biblarz, this book provides interdisciplinary coverage including thermodynamics, aerodynamics, flight performance, propellant chemistry and more.

This thoroughly revised ninth edition includes discussion and analysis of recent advances in the field, representing an authoritative reference for students and working engineers alike. In any engineering field, theory is only as useful as it is practical; this book emphasizes relevant real-world applications of fundamental concepts to link "thinking" and "doing". This book will help readers:

  • Understand the physics of flight and the chemistry of propulsion
  • Analyze liquid, solid, gas, and hybrid propellants, and the engines they fuel
  • Consider high-temperature combustion, stability, and the principles of electric and chemical propulsion
  • Dissect the workings of systems in common use around the world today
  • Delve into the latest advances in materials, systems, propellants, and more

Broad in scope, rich in detail, and clear in explanation, this seminal work provides an unparalleled foundation in aerospace engineering topics. Learning through the lens of modern applications untangles complex topics and helps students fully grasp the intricacies on a more intuitive level. Rocket Propulsion Elements, Ninth Edition merges information and utility building a solid foundation for innovation.

5. Make: High-Power Rockets: Construction and Certification for Thousands of Feet and Beyond

Feature

Maker Media Inc

Description

Make: High-Power Rockets is for all the science geeks who look at the moon and try to figure out where Neil Armstrong walked, watch in awe as rockets lift off, and want to fly their own model rockets. Starting with an overview of mid- and high-power rocketry, readers will start out making rockets with F and G engines, and move on up to H engines.

6. Rocket Manual - 1942 onwards: An insight into the development and technology of space rockets and satellite launchers (Owners' Workshop Manual)

Feature

Haynes Publishing UK

Description

The Rocket Manual tells the story of rocket motors, how they were first developed, how they work, what they are used for and how they are operated. It also explains the origin and operating record of satellite launchers around the world. Rocket motors large and small are listed and explained, including small motors used to push satellites and spacecraft into different orbits, throttleable rockets for controlling spacecraft descending to the Moon and the surfaces of other planets, restartable motors for adjusting orbits and reusable motors such as those developed for the Shuttle.

7. Fundamentals of Astrodynamics (Dover Books on Aeronautical Engineering)

Feature

Dover Publications

Description

When the United States Air Force Academy began teaching astrodynamics to undergraduates majoring in astronautics or aerospace engineering, it found that the traditional approach to the subject was well over 100 years old. An entirely new text had to be evolved, geared to the use of high speed digital computers and actual current practice in the industry. Over the years the new approach was proven in the classrooms of the Academy; its students entering graduate engineering schools were found to possess a better understanding of astrodynamics than others. So pressing is the need for superior training in the aerospace sciences that the professor-authors of this text decided to publishit for other institutions' use. This Dover edition is the result.
The text is structured for teaching. Central emphasis is on use of the universal variable formulation, although classical methods are discussed. Several original unpublished derivations are included. A foundation for all that follows is the development of the basic two-body and n-body equations of motion; orbit determination is then treated, and the classical orbital elements, coordinate transformations, and differential correction. Orbital transfer maneuvers are developed, followed by time-of-flight with emphasis on the universal variable solution. The Kepler and Gauss problems are treated in detail. Two-body mechanics are applied to the ballistic missile problem, including launch error analysis and targeting on a rotating earth. Some further specialized applications are made to lunar and interplanetary flight, followed by an introduction to perturbation, special perturbations, integration schemes and errors, and analytic formulation of several common perturbations.
Example problems are used frequently, while exercises at the end of each chapter include derivations and quantitative and qualitative problems. The authors suggest how to use the text for a first course in astrodynamics or for a two-course sequence.
This major instructional tool effectively communicates the subject to engineering students in a manner found in no other textbook. Its efficiency has been thoroughly demonstrated. Dover feels privileged in joining with the authors to make its concepts and text matter available to other faculties.

8. Building Rockets (Focus Readers: Engineering Challenges: Navigator Level)

Description

Explores the engineering challenges behind building rockets, as well as the creative solutions found to overcome those challenges. Accessible text, vibrant photos, and an engineering activity for readers provide a well-rounded introduction to the engineering process.

9. Rocket Science for the Rest of Us: Cutting-Edge Concepts Made Simple

Description

Want to understand black holes, antimatter, physics, and space exploration? Looking for a common sense guide to quantum physics that you can actually understand? Rocket Science for the Rest of Us is the book you're looking for! Get a grip on even the most mysterious and complex sciences with Ben Gilliland's guide to dark matter, exo-planets, Planck time, earth sciences, and more.

You'll hear yourself saying, "I get it now!" again and again as you explore the fun graphics and clear explanations in Rocket Science for the Rest of Us. Whether you want to impress your friends with your knowledge of quantum physics, finally know what a black hole actually is, or just learn more about the universe that's all around us, Rocket Science for the Rest of Us breaks it all down so science and physics are easy to understand. You're not a rocket scientist? So what! That doesn't mean you can't understand it!

10. It's ONLY Rocket Science: An Introduction in Plain English (Astronomers' Universe)

Description

Most amateur astronomers and many of those with similar interests but who are not currently practising observers have only a sketchy understanding of space flight. This book provides an introduction to its mechanics. The beauty of this book, written by an engineer who is also an accomplished science writer, is that it covers the subject comprehensively, and yet is almost entirely descriptive and non-mathematical. It deals with all aspects of space flight, from how to leave the Earth (including the design of the rocket, mission planning, navigation and communication), to life in space and the effects of weightlessness. The book also includes sections describing how an amateur can track satellites and understand their orbital parameters.

Conclusion

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