Computational Physics Scientific Programming with Python


Computational Physics Scientific Programming with Python
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Date:
02/04/22 at 6:01am GMT+1
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Seeders:
7
Leechers:
4
File size:
6.9 GB in 99 files

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  This torrent has been verified.

Infohash:
9642602045516d3ff858e9618e66e6ce33494446


File list

  • Computational Physics Scientific Programming with Python
  • icon .pad/0 43 B
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    icon TutsNode.com.txt 63 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/01 - Python installation via Anaconda & Alternatives/001 Hello & Welcome!.html 550 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/01 - Python installation via Anaconda & Alternatives/002 Overview.png 234.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/01 - Python installation via Anaconda & Alternatives/006 HOW TO use this course_en.srt 1.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/01 - Python installation via Anaconda & Alternatives/007 LET'S GET STARTED with scientific programming!.html 743 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/01 - Python installation via Anaconda & Alternatives/008 (FAQ) Typical problems & errors.html 1.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/01 - Python installation via Anaconda & Alternatives/012 (optional) Environments & Updates_en.srt 3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/001 Introduction to section Optional Python crash course_en.srt 2.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/002 02-Crash-course-template.ipynb 21.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/002 Template file.html 521 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/006 [Solution] Coding Exercise Basic programming sqrt.html 141 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/018 Crash course recap_en.srt 701 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/019 02-Crash-course-template.ipynb 21.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/019 02-Crash-course.ipynb 249.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/02 - [Optional] Python Crash Course/019 Resources & Links.html 477 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/001 Introduction_en.srt 2.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/002 Template file.html 139 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/011 [Exercise] (optional) Generalize the procedure for more data points.html 243 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/016 [Exercise] (optional) Try a different model function of your choice.html 380 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/017 Section recap_en.srt 1010 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/018 03-Interpolation.ipynb 245.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/03 - Series expansion, interpolation & data fitting/018 Resources & Links.html 473 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/002 figure-04-derivatives.png 76.5 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/006 Better accuracy Richardson method.mp4 108.9 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/006 Better accuracy Richardson method_en.srt 23.5 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/009 04b-Exercise-velocity-acceleration-data-file.dat 28.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/009 04b-Exercise-velocity-acceleration.ipynb 14.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/010 04b-Exercise-velocity-acceleration-data-file.dat 28.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/010 [Solution] Calculate velocity and acceleration.mp4 123.9 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/010 [Solution] Calculate velocity and acceleration_en.srt 25.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/014 04a-Derivatives.ipynb 474.4 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/014 04b-Exercise-velocity-acceleration-data-file.dat 28.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/014 04b-Exercise-velocity-acceleration-solution.ipynb 170 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/04 - Derivatives/014 figure-04-derivatives.png 76.5 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/002 05d-Fourier-transform-template.ipynb 21.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/002 figure-05-derivation-wire.png 184.5 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/002 figure-05-hand.svg 22.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/002 figure-05-integral.png 67.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/002 Template files.html 145 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/016 Calculating the vector potential of a charged wire_en.srt 17.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/020 Fourier transform_en.srt 13.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 05a-Basics-integration.ipynb 26.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 05b-Rotation-geometric-objects.ipynb 233.4 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 05c-Magnetic-field-wire.ipynb 222.8 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 05d-Fourier-transform-template.ipynb 21.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 05d-Fourier-transform.ipynb 67.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 figure-05-derivation-wire.png 184.5 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 figure-05-hand.svg 22.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/05 - Integrals/023 figure-05-integral.png 67.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/06 - Differential equations I Basics and 1-dimensional problems/004 Example 1 Radioactive decay_en.srt 12.4 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/06 - Differential equations I Basics and 1-dimensional problems/018 Section recap_en.srt 1012 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/06 - Differential equations I Basics and 1-dimensional problems/019 06-Differential-equations.ipynb 504.4 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/002 07a-Multidimensional-rolling-ball-template.ipynb 66.6 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/002 Template files.html 145 B
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/011 Solving the heat equation in two dimensions.mp4 112.6 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/011 Solving the heat equation in two dimensions_en.srt 22 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/021 Brake maneuver to reach moon orbit_en.srt 20 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/023 07a-Multidimensional-rolling-ball-template.ipynb 66.6 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/023 07a-Multidimensional-rolling-ball.ipynb 212.6 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/023 07b-Multidimensional-lorenz.ipynb 187.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/023 07c-Multidimensional-heat-equation.ipynb 155.4 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/07 - Differential equations II Multiple dimensions/023 07d-Mutidimensional-3-body.ipynb 566.6 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/002 08-Eigenvalue-coupled-oscillators-template.ipynb 15.8 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/002 figure-08-coupled-oscillators-circle.png 75.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/002 figure-08-coupled-oscillators.png 18.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/007 [Solution] Write your own routine to calculate the eigenvalues_en.srt 20.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/010 [Exercise] Fit three harmonic oscillations to our numerical solution_en.srt 5.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/014 08-Eigenvalue-coupled-oscillators.ipynb 622.2 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/014 figure-08-coupled-oscillators-circle.png 75.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/08 - Eigenvalue problems/014 figure-08-coupled-oscillators.png 18.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/09 - Monte Carlo algorithms/006 [Project] Simulating a magnet - Setting up & plotting the initial state.mp4 98.3 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/09 - Monte Carlo algorithms/006 [Project] Simulating a magnet - Setting up & plotting the initial state_en.srt 24.3 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/09 - Monte Carlo algorithms/008 Simulating a Metropolis step.mp4 116.4 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/09 - Monte Carlo algorithms/008 Simulating a Metropolis step_en.srt 20.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/09 - Monte Carlo algorithms/014 09a-MC-pi.ipynb 170.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/09 - Monte Carlo algorithms/014 09b-MC-magnet.ipynb 839.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/10 - [Add On] Quantum mechanics Solving the Schrödinger equation/005 Determining & Discussing the eigensystem of the particle in a box_en.srt 26.4 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/10 - [Add On] Quantum mechanics Solving the Schrödinger equation/008 Determining & Discussing the eigensystem of the quantum harmonic oscillator_en.srt 21.8 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/10 - [Add On] Quantum mechanics Solving the Schrödinger equation/012 10a-Particle-in-a-box.ipynb 140.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/10 - [Add On] Quantum mechanics Solving the Schrödinger equation/012 10b-Quantum-harmonic-oscillator.ipynb 310.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/002 11-Graphene-template.ipynb 219.8 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/003 From free electrons to band structures.mp4 122.6 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/003 From free electrons to band structures_en.srt 27.9 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/005 Band structure of graphene.mp4 136.5 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/005 Band structure of graphene_en.srt 28.1 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/008 Band structure of a graphene nanoribbon.mp4 113 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/008 Band structure of a graphene nanoribbon_en.srt 19.8 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/009 Applying magnetic field Landau quantization & Quantum Hall effect.mp4 127.6 MB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/009 Applying magnetic field Landau quantization & Quantum Hall effect_en.srt 21.7 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/012 11-Graphene-template.ipynb 219.8 KB
    icon [TutsNode.com] - Computational Physics Scientific Programming with Python/11 - [Add on] Nobel prize lecture Electronic properties of graphene/012 11-Graphene.ipynb 662.8 KB

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