| 001 Course overview.en.srt | 3.2 KB | ||
| 001 Course overview.mp4 | 38.4 MB | ||
| 001 Definition and introduction to functions.en.srt | 6.8 KB | ||
| 001 Definition and introduction to functions.mp4 | 23.2 MB | ||
| 001 Difference in operations with numpy arrays and lists.en.srt | 11.9 KB | ||
| 001 Difference in operations with numpy arrays and lists.mp4 | 103.7 MB | ||
| 001 Errors and exceptions in Python.en.srt | 6.7 KB | ||
| 001 Errors and exceptions in Python.mp4 | 28.5 MB | ||
| 001 Intro to line charts.en.srt | 5.5 KB | ||
| 001 Intro to line charts.mp4 | 28.2 MB | ||
| 001 Logical and relational operators.en.srt | 6.4 KB | ||
| 001 Logical and relational operators.mp4 | 24.4 MB | ||
| 001 Math module.en.srt | 9.2 KB | ||
| 001 Math module.mp4 | 34.5 MB | ||
| 001 Strings_ methods and manipulation.en.srt | 11.1 KB | ||
| 001 Strings_ methods and manipulation.mp4 | 41.1 MB | ||
| 001 The for loops.en.srt | 6.4 KB | ||
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| 001 Tuples.en.srt | 9.1 KB | ||
| 001 Tuples.mp4 | 27.6 MB | ||
| 001 Variables and data types.en.srt | 6.2 KB | ||
| 001 Variables and data types.mp4 | 25.5 MB | ||
| 002 Arithmetics.en.srt | 6.4 KB | ||
| 002 Arithmetics.mp4 | 22.6 MB | ||
| 002 Conditional statements.en.srt | 6.8 KB | ||
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| 002 Exercises.en.srt | 3 KB | ||
| 002 Exercises.mp4 | 39.1 MB | ||
| 002 Intro to bar plots.en.srt | 4 KB | ||
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| 002 Introduction to Python.en.srt | 2.8 KB | ||
| 002 Introduction to Python.mp4 | 33.4 MB | ||
| 002 Lists.en.srt | 8.8 KB | ||
| 002 Lists.mp4 | 33.3 MB | ||
| 002 Methods available both in arrays and lists.en.srt | 4.1 KB | ||
| 002 Methods available both in arrays and lists.mp4 | 16.6 MB | ||
| 002 Nested for loops.en.srt | 3.3 KB | ||
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| 002 Optional parameters, nested functions and docstrings.en.srt | 8.1 KB | ||
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| 002 Time module.en.srt | 4.1 KB | ||
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| 002 Treating errors and exceptions.en.srt | 6.6 KB | ||
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| 003 Arrays may have more than 1 dimension.en.srt | 7.8 KB | ||
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| 003 COLAB environment.en.srt | 3.9 KB | ||
| 003 COLAB environment.mp4 | 17.4 MB | ||
| 003 Complex and nested conditions.en.srt | 5.5 KB | ||
| 003 Complex and nested conditions.mp4 | 21 MB | ||
| 003 Dictionaries.en.srt | 10.2 KB | ||
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| 003 Exercise.en.srt | 2.8 KB | ||
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| 003 Exercises.en.srt | 6 KB | ||
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| 003 Intro to pie charts.en.srt | 8.3 KB | ||
| 003 Intro to pie charts.mp4 | 59.8 MB | ||
| 003 Random module.en.srt | 5.2 KB | ||
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| 003 Solution_ Text manipulation.en.srt | 4.4 KB | ||
| 003 Solution_ Text manipulation.mp4 | 20.8 MB | ||
| 003 The while loops.en.srt | 8.4 KB | ||
| 003 The while loops.mp4 | 33.8 MB | ||
| 003 User input.en.srt | 2.5 KB | ||
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| 004 Additional functions of the numpy module.en.srt | 9 KB | ||
| 004 Additional functions of the numpy module.mp4 | 65.6 MB | ||
| 004 Exercises.en.srt | 3.9 KB | ||
| 004 Exercises.mp4 | 52.5 MB | ||
| 004 Nested data structures.en.srt | 5.1 KB | ||
| 004 Nested data structures.mp4 | 25.6 MB | ||
| 004 Solution_ Error treatment in inputs.en.srt | 3.4 KB | ||
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| 004 Solution_ Table construction.en.srt | 3.7 KB | ||
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| 004 Solution_ temperature conversion.en.srt | 3.4 KB | ||
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| 005 Exercises.en.srt | 3.7 KB | ||
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| 005 Representing matrices and matrix multiplication.en.srt | 6.2 KB | ||
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| 005 Solution_ Calculating the force.en.srt | 1.9 KB | ||
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| 005 Solution_ Function of ideal gas law.en.srt | 3.6 KB | ||
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| 005 Solution_ Menu of formulas.en.srt | 8.3 KB | ||
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| 005 Solution_ Plotting a sine wave.en.srt | 4 KB | ||
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| 005 Solution_ Projectile motion.en.srt | 3.7 KB | ||
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| 005 Solution_ solving a quadratic equation.en.srt | 6.8 KB | ||
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| 006 Matrices and linear systems.en.srt | 4.9 KB | ||
| 006 Matrices and linear systems.mp4 | 54.6 MB | ||
| 006 Solution_ Euclidean distance between atoms.en.srt | 3.9 KB | ||
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| 006 Solution_ Free fall time.en.srt | 5.4 KB | ||
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| 006 Solution_ Function of the gravitational force formula.en.srt | 4.3 KB | ||
| 006 Solution_ Function of the gravitational force formula.mp4 | 23.6 MB | ||
| 006 Solution_ Gravitational force.en.srt | 3.3 KB | ||
| 006 Solution_ Gravitational force.mp4 | 15.4 MB | ||
| 006 Solution_ Menu of thermal expansion calculation.en.srt | 7 KB | ||
| 006 Solution_ Menu of thermal expansion calculation.mp4 | 56.6 MB | ||
| 006 Solution_ Option menu with loops.en.srt | 3.3 KB | ||
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| 006 Solution_ Plotting the trajectory of an object.en.srt | 5.3 KB | ||
| 006 Solution_ Plotting the trajectory of an object.mp4 | 37.4 MB | ||
| 007 Exercises.en.srt | 5.7 KB | ||
| 007 Exercises.mp4 | 69.3 MB | ||
| 007 Solution_ Creating functions for the quadratic equation.en.srt | 5.6 KB | ||
| 007 Solution_ Creating functions for the quadratic equation.mp4 | 36.6 MB | ||
| 007 Solution_ Distance from the soil in a free fall.en.srt | 4.5 KB | ||
| 007 Solution_ Distance from the soil in a free fall.mp4 | 38 MB | ||
| 007 Solution_ Temperatures in a list.en.srt | 5.2 KB | ||
| 007 Solution_ Temperatures in a list.mp4 | 30.5 MB | ||
| 008 Solution_ Atoms and atomic number.en.srt | 3.7 KB | ||
| 008 Solution_ Atoms and atomic number.mp4 | 22.6 MB | ||
| 008 Solution_ Manipulating arrays.en.srt | 3.6 KB | ||
| 008 Solution_ Manipulating arrays.mp4 | 24.9 MB | ||
| 009 Miniproject_ simulating a physics exam.en.srt | 3.4 KB | ||
| 009 Miniproject_ simulating a physics exam.mp4 | 42.1 MB | ||
| 009 Solution_ new arrays.en.srt | 2.7 KB | ||
| 009 Solution_ new arrays.mp4 | 13.5 MB | ||
| 010 Solution_ Linear system in an electric circuit.en.srt | 4.6 KB | ||
| 010 Solution_ Linear system in an electric circuit.mp4 | 38 MB | ||
| 010 Solution_ part 1.en.srt | 5.8 KB | ||
| 010 Solution_ part 1.mp4 | 45.6 MB | ||
| 011 Solution_ part 2.en.srt | 4.1 KB | ||
| 011 Solution_ part 2.mp4 | 28.6 MB | ||
| Bonus Resources.txt | 307.2 B | ||
| Get Bonus Downloads Here.url | 204.8 B | ||
| external-assets-links.txt | 307.2 B | ||
| ▲ 152 total files | |||
Physics + Python: Solve physics problems with Python
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Genre: eLearning | Language: English + srt | Duration: 70 lectures (4h 58m) | Size: 2.2 GB
Learn how to use the popular programming language Python to solve problems of physics
What you'll learn:
You'll learn how to model problems of physics computationlly
You'll develop algorithmic thinking
You'll review some concepts of physics
You'll learn one of the most popular programming languages
Requirements
Basic knowledge of Math
Basic knowledge of Physics
No prior knowledge in Programming is required
Description
Hi! This course is destined for those who want to model problems of physics computationally. In this course, we will use one of the most popular programming language: Python! Python is a programming language used in different fields, such as data science, statistics, artificial inteligence, and also scientific computing. In this course, we will model high-school level problems of physics with Python using basic commands, data structures and functions. At the end of the course, you will have a brief introduction to two third-party libraries of Python: 1-Numpy, whoch is primarily used for number crunching and linear algebra, and 2-Matplotlib, the most commonly used library to plot data in Python.
Each session of the course is divided into three parts:
| torrent name | size | uploader | age | seed | leech |
|---|---|---|---|---|---|
| 3 GB | freecoursewb | 4 months | 0 | 0 | |
| 2.2 GB | freecoursewb | 6 months | 15 | 3 | |
| 939.9 MB | freecoursewb | 7 months | 8 | 1 | |
| 656.3 MB | freecoursewb | 10 months | 9 | 7 | |
| 2.2 GB | freecoursewb | 1 year | 1 | 1 |
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