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Let’s see the science.
As always, keep yourself warm and safe. Drink at least two glasses of water a day. And if you experience dizziness, nausea, or a chills, you should seek medical action immediately.
What you need to know:
This is a continuation of chapter 3 on the theory of the quantum world with a continuation of chapters 4 to 6 on the theory of the elementary particles of the quantum field theory. See also the introduction.
This is the second installment in the following six-part series on the theory of the quantum world:
Part 1 – The wave problem, the first three chapters of the theory of the quantum world
Part 2 – The structure of the wave function, the first chapter of the theory of the quantum world
Part 3 – The quantum state of a particle, the first two chapters of the theory of the quantum world
Part 4 – The quantum spin, the third chapter of the theory of the quantum world
Part 5 – The wave function, first three chapters of the theory of the quantum world
Part 6 – Quantum field theory and quantum entanglement, fourth chapter of the theory of the quantum world
The fourth chapter of this six-part series is devoted to quantum field theory, one of the key components of Quantum Field Theory, which is an intermediate theory between quantum mechanics and general relativity, and, like general relativity, has two branches, quantum field theory and quantum field theory/relativistic quantum field theory (QFT/QFM).
To give a more useful picture of general relativity, I will briefly discuss quantum mechanics (including the theory of quantum field theory) and then introduce an additional branch of physics known as quantum field theory/relativistic quantum field theory (QFT/QFT). The reason that I am going to briefly discuss QFT/QFT rather than an elementary particle physics branch of science is because the theory covers a wide range of fields with a large number of experiments, and because such basic concepts as field fluctuations and quarks are already very familiar from basic particle physics.
In this part of the theory of quantum world I will first introduce a picture of the world as a wave with two possibilities, the definite potentials and the non-determinate or potentials. A definite potential is the state in which no measurement is required. A definite potential is a state without any change in measurement. A non-determinate potential is a state in which two
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