Udemy - Quantum Physics - an overview of a weird world (Basics) [Course Drive]

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Udemy - Quantum Physics - an overview of a weird world (Basics) [Course Drive] (Size: 5.1 GB)
  001 Introduction to the course.en.srt 14.9 KB
  001 Introduction to the course.mp4 234.6 MB
  002 The Nature of Light.en.srt 10.1 KB
  002 The Nature of Light.mp4 78.8 MB
  003 Fields Waves and Interference.en.srt 16.2 KB
  003 Fields Waves and Interference.mp4 126.8 MB
  004 Youngs Double Slit Experiment.en.srt 20.9 KB
  004 Youngs Double Slit Experiment.mp4 226 MB
  005 The Blackbody Radiation before Max Planck.en.srt 32.2 KB
  005 The Blackbody Radiation before Max Planck.mp4 393.1 MB
  006 The Blackbody Radiation after Max Planck.en.srt 24.6 KB
  006 The Blackbody Radiation after Max Planck.mp4 164.8 MB
  007 The Photoelectric effect.en.srt 13.6 KB
  007 The Photoelectric effect.mp4 59.5 MB
  008 Bohrs atomic model.en.srt 13 KB
  008 Bohrs atomic model.mp4 70.1 MB
  009 The Franck-Hertz experiment.en.srt 9.1 KB
  009 The Franck-Hertz experiment.mp4 59.9 MB
  010 The Compton effect.en.srt 12.6 KB
  010 The Compton effect.mp4 58.3 MB
  011 Pair creation and annihilation.en.srt 6.2 KB
  011 Pair creation and annihilation.mp4 37.8 MB
  012 Waves strike back Bragg diffraction and the de Broglie hypothesis.en.srt 31.5 KB
  012 Waves strike back Bragg diffraction and the de Broglie hypothesis.mp4 195.8 MB
  013 The wave-particle duality.en.srt 36.6 KB
  013 The wave-particle duality.mp4 276.2 MB
  014 The Heisenbergs uncertainty principle.en.srt 47.1 KB
  014 The Heisenbergs uncertainty principle.mp4 232.6 MB
  015 The wavefunction and the measurement problem.en.srt 26.6 KB
  015 The wavefunction and the measurement problem.mp4 132.8 MB
  016 The state vector observables and the measurement postulate.en.srt 22 KB
  016 The state vector observables and the measurement postulate.mp4 80 MB
  017 The Schrodingers equation.en.srt 26.1 KB
  017 The Schrodingers equation.mp4 76.6 MB
  018 Atomic orbitals.en.srt 15.2 KB
  018 Atomic orbitals.mp4 138.2 MB
  019 Angular momentum in classical physics.en.srt 12.1 KB
  019 Angular momentum in classical physics.mp4 98.9 MB
  020 Spin do particles rotate.en.srt 31.9 KB
  020 Spin do particles rotate.mp4 118.7 MB
  021 Commutation relations and quantum algebra.en.srt 26.1 KB
  021 Commutation relations and quantum algebra.mp4 92.3 MB
  022 Is information fundamental.en.srt 12.2 KB
  022 Is information fundamental.mp4 42.5 MB
  023 The spinning world of spinors.en.srt 21.3 KB
  023 The spinning world of spinors.mp4 94 MB
  024 A weird quantum rotation.en.srt 21.5 KB
  024 A weird quantum rotation.mp4 139 MB
  025 The photons polarization and spin.en.srt 21.4 KB
  025 The photons polarization and spin.mp4 166.5 MB
  026 Quantum superposition being in two states at the same time.en.srt 28.5 KB
  026 Quantum superposition being in two states at the same time.mp4 148.4 MB
  027 The Time-Energy uncertainty.en.srt 18.6 KB
  027 The Time-Energy uncertainty.mp4 80.7 MB
  028 The tunnel effect jumping over forbidden barriers.en.srt 16.8 KB
  028 The tunnel effect jumping over forbidden barriers.mp4 116.7 MB
  029 Vacuum zero-point energy virtual particles and the Casimir effect.en.srt 32.9 KB
  029 Vacuum zero-point energy virtual particles and the Casimir effect.mp4 254.1 MB
  030 The Bohr-Einstein Debate.en.srt 36.2 KB
  030 The Bohr-Einstein Debate.mp4 201.8 MB
  031 Quantum indistinguishability.en.srt 36.3 KB
  031 Quantum indistinguishability.mp4 150.7 MB
  032 Quantum entanglement.en.srt 21.9 KB
  032 Quantum entanglement.mp4 63.7 MB
  033 The EPR paradox (original version).en.srt 13.5 KB
  033 The EPR paradox (original version).mp4 91.5 MB
  034 The EPR paradox (modern form).en.srt 9.6 KB
  034 The EPR paradox (modern form).mp4 71.5 MB
  035 Faster than light transmission.en.srt 13.7 KB
  035 Faster than light transmission.mp4 104.7 MB
  036 Schrodingers cat dead or alive or dead and alive.en.srt 23.1 KB
  036 Schrodingers cat dead or alive or dead and alive.mp4 129.2 MB
  037 Quantum decoherence and the measurement problem.en.srt 32.2 KB
  037 Quantum decoherence and the measurement problem.mp4 118.1 MB
  038 Final considerations and outlook.en.srt 2.3 KB
  038 Final considerations and outlook.mp4 38.8 MB
  039 Appendix - Part I Elementary mathematical introduction.en.srt 19.2 KB
  039 Appendix - Part I Elementary mathematical introduction.mp4 75.7 MB
  040 Appendix - Part II waves and complex numbers.en.srt 22.5 KB
  040 Appendix - Part II waves and complex numbers.mp4 122.4 MB
  041 Appendix - Part III more on waves and some calculus.en.srt 18.4 KB
  041 Appendix - Part III more on waves and some calculus.mp4 78.8 MB
  042 Linear momentum and kinetic energy.en.srt 6.9 KB
  042 Linear momentum and kinetic energy.mp4 19.8 MB
  ReadMe.txt 204.8 B
  Visit Coursedrive.org.url 102.4 B
  ▲ 88 total files

Description


⚡️⚡️For More Udemy Courses Visit ???????? Course Drive
Quantum Physics: an overview of a weird world (Basics)

A primer on the conceptual foundations of Quantum Physics
What you'll learn

• The conceptual foundations of Quantum Physics.
• A comprehensive A-Z guide that will save you a ton of time in searching elsewhere trying to piece all the different information together.
• Quantum Theory without falling into oversimplifications or hyped versions and yet conceived for an audience of non-physicists.
• The double silt experiment, the wave particle duality, entanglement, quantum superposition, the uncertainty principle of Heisenberg, Schrödinger's cat paradox, quantum tunneling and much more.
• A course that fills the gap between a too popularized version of Quantum Mechanics and too high level university courses.
• You will learn all the basics, enabling you to distinguish between mere speculative interpretations in fashion and the real experimental facts.

Requirements

• Some lectures resort to high school math and some calculus.
• Example: Pythagorean theorem, square root, exponential, sin/cos functions, Cartesian coordinates, vectors, intuitive concept of a derivative, basic notion of a complex number.
• However, no university level required. In case you need a mathematical refresh an appendix will help you to recall some elementary mathematical concepts.
• Please take your time. Some concepts need time to be assimilated or may need to be viewed more than once. But at the end you will have a clarity of mind on the subject that you won't get elsewhere. It's worth it!

Description

Note: Take a look at the free lectures! Scroll down to the curriculum and click on 'Basics I'. The 'preview' lectures are free. That might help you to get a better feeling on what's about.
Why this course? This is an introductory course (Basics) that originates from my desire to share my knowledge of the mysterious and fascinating world of Quantum Physics. Considering how the media (sometimes also physicists) present Quantum Theory focusing only on highly dubious ideas and speculations backed by no evidence or, worse, promote pseudo-scientific hypes that fall regularly into and out of fashion, I felt it necessary to create a serious introduction to the conceptual foundations of Quantum Physics. The second part (Supplemental), which focuses further on some selected topics, can be found on the Udemy portal as well.
Who is it for? For the autodidact who is looking for a serious and rigorous introduction to the foundations of quantum physics and some of its philosophical implications. This course does not need a technical background except for some basics, such as elementary concepts of algebra, trigonometry, calculus and statistics. It is easier than a university course but needs more effort than a popular science lecture. It might be easier for those having already some math background but a mathematical appendix is furnished for those who need a reminder.
Even though these lectures are not a replacement for college courses they could complement it. University or college classes do not address the foundations and the philosophical aspects of Quantum Physics, teaching Quantum Mechanics mostly from the formal and mathematical perspective, which is something we will restrict only to the essential basics here. While in schools, colleges and universities, Quantum Physics is taught with a dry and almost exclusively technical approach which furnishes only a superficial insight on its foundations, this course is recommended also to school, undergraduate and graduate students who would like to look further. Not only physicists could (re-)discover some topics but philosophers, engineers, IT students or historians of science could acquire with this course a basic preparation which is unlikely to be offered in most departments. This online course proposes itself also to become part of a faculty curriculum in departments or other institutions which would like to expand their interests towards the foundations of Quantum Physics (contact the instructor for details).
What is it about? A course on the conceptual foundations of Quantum Physics on topics that you won't find elsewhere explained at introductory level. It will lead you by hand as clearly as possible from the abc of Quantum Mechanics to the most recent experiments and its implications.
We review the standard concepts like the wave-particle duality, Heisenberg`s uncertainty principle, Schrödinger`s cat, the vacuum zero-point energy and virtual particles, among several others. Then we deepen the subject analysing quantum entanglement, the so called "EPR paradox" which question our naive understanding of the meaning of reality and locality (for more details on the content look up the curriculum page).
My aim is to deliver the material necessary so that you will be able by yourself to distinguish between mere speculative (and more or less extravagant) interpretations in fashion, and the real Quantum Theory and its experimental facts as it is.
Note I: School, college or university students will get a 30 days free coupon. Send an e-mail from your school/department account (or the scan of an id) to [email protected] and you will get the coupon.
Note II: A personal tutorship and training support is also available for those who would like to submit their doubts in a Q&A session and/or for an individual review of the assignments. Please contact me for more details at: [email protected]

Who this course is for:

• Everyone who is passionate about science and/or philosophy of science and is curious about the laws and the nature of the material universe.
• The course is well suited for all those university students who do not have sufficient mathematical background to go through a high-level QM course, but would like to assimilate the basics of quantum physics for the purpose of additional research. For instance philosophers, historians of science, IT students, engineers.

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