Title
Solid State Physics For Engineering And Materials Science,Used
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This Is A Text In Basic Solidstate Physics Designed Primarily For Students Of Engineering, Materials Science, Electronics, And Other Applied Areas. Its Objective Is A Simple, Yet Fairly Detailed, Presentation Of The Basic Physical Properties Of Crystalline Solids And Very Basic Device Structures Such As Pn Junctions And Quantum Wells. The Emphasis Is On Clear And Simple Explanations Of Basic Physical Theory And Application Rather Than A Detailed Analysis Of Complex Devices And Fabrication Technology. This Book Offers Students A Body Of Understanding That Will Be Of Lasting Usefulness Rather Than Technology That Will Soon Be Out Of Date. It Is Designed To Be Userfriendly In All Ways.
⚠️ WARNING (California Proposition 65):
This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.
For more information, please visit www.P65Warnings.ca.gov.
- Q: What is the page count of this book? A: This book contains five hundred three pages. It provides a comprehensive overview of solid-state physics tailored for engineering and materials science students.
- Q: What are the dimensions of this book? A: The book measures seven point five two inches in length, one point two six inches in width, and ten point five one inches in height. These dimensions make it a standard hardcover size, suitable for shelving.
- Q: What type of binding does this book have? A: This book is bound in hardcover. Hardcover bindings are known for their durability and longevity, making it suitable for repeated use.
- Q: Is this book suitable for beginners? A: Yes, this book is suitable for beginners. It focuses on clear explanations of basic physical theories, making it accessible for students new to solid-state physics.
- Q: What subjects does this book cover? A: This book covers basic solid-state physics principles, including crystalline solids and device structures like p-n junctions and quantum wells. It's designed for engineering and materials science applications.
- Q: What is the intended audience for this book? A: The intended audience includes students of engineering, materials science, and electronics. It's designed to be user-friendly for those in applied sciences.
- Q: How should I store this book to keep it in good condition? A: Store this book in a cool, dry place away from direct sunlight. Keeping it upright on a shelf will help maintain its shape and prevent damage.
- Q: Can I clean the cover of this book? A: Yes, you can clean the cover. Use a slightly damp cloth to wipe it gently, avoiding excessive moisture which could damage the binding.
- Q: What is the condition of used copies of this book? A: Used copies are typically in good condition. However, it's best to check for specific wear, such as page markings or cover damage, when purchasing.
- Q: Is this book suitable for advanced studies? A: No, this book is primarily designed for beginners. It emphasizes basic concepts rather than advanced theories or complex device analyses.
- Q: What makes this book user-friendly? A: The book is user-friendly due to its clear explanations and structured presentation of concepts, making it easy to follow for students.
- Q: What type of illustrations does this book include? A: The book includes diagrams and illustrations that help clarify the principles discussed. These visual aids enhance understanding of solid-state physics concepts.
- Q: What if the book arrives damaged? A: If the book arrives damaged, you should contact the seller for a return or exchange. Most sellers have policies in place to address damaged goods.
- Q: Is there a warranty for this book? A: No, books generally do not come with a warranty. However, check with the seller for any specific return policies.
- Q: Can I find this book in a library? A: Yes, many libraries may have this book in their collection. It's advisable to check your local library's catalog for availability.
- Q: What are the main themes of this book? A: The main themes include the properties of crystalline solids and basic semiconductor devices. It focuses on applying solid-state physics concepts to real-world engineering problems.