Title
Quantum Concepts In Space And Time
Sold by Ergodebooks, an authorized reseller.
Returns accepted within 30 days | support@ergodebooks.com
Shipping Information
- Free Standard Shipping — United States only
- Processing Time: 1–3 business days
- Estimated Delivery: 3–5 business days after dispatch
- Double-boxed, fully insured & discreetly packaged
- Tracking number sent via email once dispatched
- Orders over $250 require signature upon delivery. Taxes calculated at checkout.
Returns & Refund
Returns accepted within 30 days of delivery.
Damaged or Defective Item
Free return shipping + replacement or full refund
Wrong Item Received
Free return shipping + replacement or full refund
Change of Mind
Return shipping at customer's expense · 25% restocking fee applies
Recent Developments In Quantum Theory Have Focused Attention On Fundamental Questions, In Particular On Whether It Might Be Necessary To Modify Quantum Mechanics To Reconcile Quantum Gravity And General Relativity. This Book Is Based On A Conference Held In Oxford In The Spring Of 1984 To Discuss Quantum Gravity. It Brings Together Contributors Who Examine Different Aspects Of The Problem, Including The Experimental Support For Quantum Mechanics, Its Strange And Apparently Paradoxical Features, Its Underlying Philosophy, And Possible Modifications To The Theory.
⚠️ 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 are the dimensions of this book? A: The book measures six point four six inches in length, one point zero six inches in width, and nine point four nine inches in height.
- Q: How many pages does 'Quantum Concepts in Space and Time' have? A: This book contains three hundred sixty-eight pages, providing an in-depth exploration of quantum theory.
- Q: What type of binding does this book have? A: The book is bound in hardcover, ensuring durability and a professional appearance.
- Q: Who is the author of this book? A: The author of 'Quantum Concepts in Space and Time' is Roger Penrose, a renowned physicist.
- Q: What is the main subject of this book? A: This book focuses on quantum gravity and the relationship between quantum mechanics and general relativity.
- Q: Is this book suitable for beginners? A: Yes, this book is suitable for readers with a basic understanding of physics, though some concepts may be complex.
- Q: Can I read this book if I have no background in physics? A: While you can read it, having some background in physics will enhance your understanding of the material.
- Q: How should I care for this hardcover book? A: To keep it in good condition, store it upright in a cool, dry place and avoid exposure to direct sunlight.
- Q: Is this book appropriate for children? A: No, this book is not specifically aimed at children and may contain complex topics not suitable for younger audiences.
- Q: How do I store this book safely? A: Store the book upright on a shelf or in a protective case to prevent damage to the cover and pages.
- Q: What if my book arrives damaged? A: If your book arrives damaged, contact the seller for information on their return policy and possible exchanges.
- Q: Can I return the book if I don't like it? A: Yes, most sellers have a return policy, but check the specific terms for your purchase.
- Q: What makes this book different from other physics books? A: This book specifically addresses the intersection of quantum mechanics and general relativity, a unique focus among physics literature.
- Q: Is this book a good choice for advanced physics students? A: Yes, advanced students will find valuable insights and discussions relevant to their studies in quantum theory.
- Q: Does it include references or further reading? A: Yes, the book includes references for further reading on quantum mechanics and related topics.
- Q: What kind of philosophy does this book discuss? A: The book examines the underlying philosophy of quantum mechanics, including its paradoxes and implications.