The must-have guide to learn the basics and history of Quantum Physics if you haven't studied it in school or are just starting out.
Many people who become interested in Quantum Physics after completing their studies are convinced that:
"It's too late to learn Quantum Physics"
"I won't understand anything"
"I need a professor to explain the basics to me"
But…
Those people remain interested in the subject and are dying to learn it, don’t they?
Well, let me give you a GREAT news:
None of this is true.
Quantum Physics can be learned very well as a self-taught without the help of a professor.
Now someone will be thinking: "But I have already picked up a book of Quantum Physics and I didn’t understand anything!"
Of course you didn’t!
You need the book that bridges the gap between the place you’re now (“I don't know anything about Quantum Physics”) to the place you aim to be (I perfectly understand the basics of Quantum Physics) - and nothing overly complicated.
This guide was born solely to bridge that gap.
Here’s a glimpse of what you’ll find in it:
The most complete introduction of WHAT is Quantum Physics (childproof)
All the basics you need to know without which you cannot understand more advanced concepts
All the most famous theories simply explained (like the Heisenberg one’s)
How do you unknowingly use Quantum Physics in your everyday life (mind blowing)
And so much more…
AVOID throwing money into overly complicated books that are useless now.
Buy Now Your Copy Of This Guide.
Easy, mind-blowing and life-changing!
Author(s): Rutherford, Michael
Publisher: Independently published
Year: 2021
Language: English
Commentary: Quantum Physics For Beginners, The Step by Step Guide
Pages: 147
Tags: Quantum Physics For Beginners, The Step by Step Guide
INTRODUCTION
CHAPTER 1: WHAT IS QUANTUM PHYSICS
CHAPTER 2: HEISENBERG UNCERTAINTY PRINCIPLE
CHAPTER 3: BLACK BODY
CHAPTER 4: PHOTOELECTRIC EFFECT
Photoelectric Principles
Applications
CHAPTER 5: THE ATOM
Bohr Model
Quantum Physics Model of the Atom
CHAPTER 6: FRANCK HERTZ EXPERIMENT
Experimental Setup
Results
What about the impact of adjusting the temperature of the tube?
CHAPTER 7: ENTANGLEMENT
CHAPTER 8: PARTICLES CREATION AND ANNIHILATION
Electron–positron annihilation
Proton–antiproton annihilation
CHAPTER 9: QUANTUM TUNNELING
Discovery of Quantum Tunneling
Quantum Tunneling in Nature
Tunneling in Stellar Fusion
Tunneling in Smell Receptors
Applications of Quantum Tunneling
CHAPTER 10: THE COMPTON EFFECT
CHAPTER 11: WAVE-PARTICLE DUALITY
CHAPTER 12: SCHRODINGER EQUATION
CHAPTER 13: PERIODIC TABLE OF ELEMENTS
CHAPTER 14: LASERS
History
Fundamental Principles
Laser elements
Laser beam characteristics
Types Of Lasers
Laser Applications
CHAPTER 15: LED
CHAPTER 16: QUANTUM COMPUTING
What is quantum computing?
How do quantum computers work?
What can quantum computers do?
When will I get a quantum computer?
CHAPTER 17: SUPERCONDUCTIVITY
CHAPTER 18: SUPERFLUIDS
CHAPTER 19: QUANTUM DOTS
The Application In Medical Diagnostics
Problems with Quantum Dots
CHAPTER 20: MRI
CONCLUSIONS