One-Dimensional Elastic Collision Simulation
For more information about this simulation go to: Simulation Manual: Elastic Collision in One Dimension.
للمزيد من المعلومات عن هذه المحاكاة إذهب إلى: دليل المحاكاة: التصادم المرن الأحادي البعد.
For more information about this simulation go to: Simulation Manual: Elastic Collision in One Dimension.
للمزيد من المعلومات عن هذه المحاكاة إذهب إلى: دليل المحاكاة: التصادم المرن الأحادي البعد.
الدليل الكامل لمحاكاة التأثير الكهروضوئي، يشتمل على مقدمة قصيرة ودليل الاستخدام.
Elementary math teachers know the importance of this model in teaching the concept of applying distributive property in area model.
The idea is to break one large area (which represents the product of two numbers) into several pieces (products of smaller numbers), then to find the areas of the pieces individually, and finally add to get the area of the whole (the product of the given numbers).
A complete manual for the elastic collision in one dimension simulation, with a mathematical explanation of the derivation of the expressions of the final velocities in terms of the masses and the initial velocities.
In this game, you must employ the projectile equations to win.
The game consists of three levels, each of which must be completed by scoring at least 8 out of a possible 10 tries. In the first level, you must hit a ground target that shifts position after each attempt. In the second level, you will need to alter the ball’s trajectory to pass over a wall. In the third level, the target flies and changes position both horizontally and vertically in each trial.
A new simulation, that simulates the free fall of an object (ball). This simulation gives the ability to measure the acceleration of gravity by taking successive shots of the falling object with recording the time of each shot and measuring the coordinate y for each shot. It also enables us to check the famous free fall equation:
y = (1/2) gt²
With this comprehensive and realistic-like photoelectric effect experiment simulation, you will be able to illustrate the following:
The variations of the photocurrent versus potential.
The variations of the photocurrent versus light intensity.
The variation of the kinetic energy of the ejected electrons versus the incident light frequency.
It comes with a graph where you can trace each type of variation as you vary the parameters of the experiment.
Plus, you can experiment and discover more with this simulation.