Basic simulation showing the force on uniformly moving charged particles and resultant circular motion under a uniform magnetic field. A DIY exercise to understand the basic magnetic properties of moving charges.
‘Homopolar motor’ refers to a motor operated...
In this simulation, hold and drag the magnet using...
This simulation shows you how magnetic field lines...
3 different charges enter a magnetic region where ...
When charges are released perpendicularly to the e...
Cyclotron works on the principle that a charged pa...
This simulation effectively and easily describes t...
Basic simulation showing the force on uniformly mo...
A homopolar motor is a direct current electric mot...
In this simulation, 3 motions are compared with ea...
In this simulation, a rubber bullet is aimed and f...
Three particles A, B, and C are situated at the ve...
Damping is an influence within or upon an oscillat...
This simulation takes up the concept of reflection...
In this simulation, we compare the final velocitie...
This simulation allows you to change the focal len...
The oscillatory motion of charge with its graph an...
This car can be controlled by keys A & D to accele...
The concept of toppling and conditions resulting f...
Classic relative motion simulation for higher rete...
In this simulation, you'll learn how standing wave...
The simulation intuitively proves that a simple pe...
This simulation is a sample of how JEE Advanced qu...
The simulation shows how the multiple bodies place...
This sound-enabled simulation gives us breathtakin...
A conducting spherical shell with inner radius a a...
In this simulation, we not only get to understand ...
A Van de Graaff generator is an electrostatic gene...
In this simulation, you'll get to see the fundamen...
This simulation describes the concept of rotationa...
An isochrone curve (iso - equal, and chrono - time...
This simulation is to give an idea of how fast or ...
This simulation is to engage students to intuitive...
This experimental simulation on Screw Gauge is one...
A simulation to learn how dispersion and deviation...
It demonstrates the conservation of momentum in mi...
This experimental simulation is great in visualizi...
Escape velocity is defined as the speed at which a...
This self-learn simulation on working of galvanome...
Simulation demonstrates the variation of energy of...
A balloon is going up with 5 m/s and a ball is rel...
In this simulation, you can change the position of...
One of the most important things illustrated by pr...
Diffusion is the process whereby gaseous atoms and...
This simulation shows wave ripples in 3d, where th...
A pseudo force, also called a fictitious force o...
This is a 3D simulation of a conical pendulum. A c...
This simulation is not only great for understandin...
This simulation consists of a block kept on smooth...
This is an activity-based simulation where you'll ...
This simulation demonstrates the apparent speed an...
In this simulation, a light of certain energy is p...
A satellite is an object that moves around a large...
An interactive simulation on the working of galvan...
This simulation is dedicated to explain the workin...
A completely mesmerizing simulation representing f...
The stopping distance is the distance travelled be...
In this simulation, you'll observe the difference ...
This simulation explains the concept of polarizati...
The main function of a full wave rectifier is to c...
The buoyant force is the upward force exerted on a...
This audio spectrum analyzer enables you to see th...
The motion of the center of mass is invariant of i...
Basic concepts of velocity and acceleration are sh...
This simulation demonstrates the effect on dipoles...
A completely mesmerizing 3D simulation representin...
Electric circuits that convert AC to DC are known ...
In this simulation, we'll dive deeper into the con...
This simulation shows a charge first placed in an ...
This is a simulation of surface wave interference ...
This experimental simulation demonstrates the work...
This is a sound-enabled interactive simulation to ...
In this simulation, the trains are given velocitie...
This is a 3D simulation of how the moon revolves a...
In this simulation you adjust the the speed of bik...
An accelerating object A chases object B moving wi...
Simulation shows two blocks of equal mass connecte...
In this simulation, a bowling pin is projected int...
Highly resourceful simulation to understand wave n...
A tuning fork is a narrow, two-pronged steel bar t...
A must-have DIY for teachers and students to under...
Fluid pressure can be defined as the measurement o...
Current flows from positive to negative and electr...
In this simulation, a satellite is projected away ...
In this simulation, a block oscillates due to an o...
This simulation demonstrates how a fan regulator w...
A vernier caliper is defined as a measuring device...
In 1687 the physicist Isaac Newton presented the f...
This simulation shows the Displacement-time graph ...
This simulation beautifully demonstrated how charg...
Two blocks of masses m1 and m2 are connected by a ...
A platform put on two cylinders rolling in opposi...
This simulation lets you change the colors on a re...
A charge is kept between 2 unequal positive charge...
In this simulation, a variable force (which can be...
This is a simple model of how a gravitational assi...
This simulation flexes the power of Simphy, i.e. f...
Learn about refraction through plane and curved su...
This is a 3D simulation of a charged particle movi...
This simulation makes it easy to visualize the res...
In this simulation, you'll understand the basics o...
In this simulation, charges can be added to/remove...
In this simulation, we can change values of fricti...
This is a simulation of the processes involved in ...
Interactive simulation describing basic ray diagra...
The block attached to the spring is seen performin...