Theoretical physics

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Richard Feynman, physicist. . . "American theoretical physicist known for his work in the path integral formulation of quantum mechanics, the theory of quantum electrodynamics, and the physics of the superfluidity of supercooled liquid helium, as well as in particle physics (he proposed the parton model)."  Know how to solve every problem that has been solved. Particle Physics Aesthetic, Theoretical Physics Aesthetic, Nuclear Physics Aesthetic, Physicist Aesthetic, Quantum Physics Aesthetic, Quantum Particles, Physics Wallpaper, Physics Aesthetic, Quantum Electrodynamics

Richard Feynman, physicist. . . "American theoretical physicist known for his work in the path integral formulation of quantum mechanics, the theory of quantum electrodynamics, and the physics of the superfluidity of supercooled liquid helium, as well as in particle physics (he proposed the parton model)." Know how to solve every problem that has been solved.

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Dr Victoria Porozova | Theoretical physicist on Instagram: "What’s the difference between Quantum and Classical mechanics?

It is going to be a list and intersections between both. Moreover an atom can be in some cases be described by classical (Newton’s laws) or quantum mechanics (Schrödinger equation, Density matrix formalism). About these things we will talk in further videos. For now let’s start with the notion of trajectory.

The main difference is that in classical mechanics you can have certain initial coordinates and velocities. 

In quantum mechanics you don’t possess such luxury. So you have to choose which set of physical quantities you will use as complete. Due to this fact, due to the uncertainty principle, you can not define a trajectory for a particle when it obeys the laws Physical Quantities, Quantum Mechanics Physics, Uncertainty Principle, Theoretical Physics, Quantum Mechanics, Quantum Physics, Atom, Matrix, Density

Dr Victoria Porozova | Theoretical physicist on Instagram: "What’s the difference between Quantum and Classical mechanics? It is going to be a list and intersections between both. Moreover an atom can be in some cases be described by classical (Newton’s laws) or quantum mechanics (Schrödinger equation, Density matrix formalism). About these things we will talk in further videos. For now let’s start with the notion of trajectory. The main difference is that in classical mechanics you can…

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