Media Summary: L=1.0m, M=1.0kg, thetazero=pi/6.0, omegadot=pi/6.0 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ... This video demonstate a to and fro movement of an object relase from rest at an angle. L=1.0m, M=1.0kg, thetazero=pi*2.0/3.0, omegadot=pi/5.0 Time step is 10^-6 sec for numerical integration of Euler method.

3d Simple Pendulum 3 Bird - Detailed Analysis & Overview

L=1.0m, M=1.0kg, thetazero=pi/6.0, omegadot=pi/6.0 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ... This video demonstate a to and fro movement of an object relase from rest at an angle. L=1.0m, M=1.0kg, thetazero=pi*2.0/3.0, omegadot=pi/5.0 Time step is 10^-6 sec for numerical integration of Euler method. L=1.0m, M=1.0kg, thetazero=pi*4.0/5.0, omegadot=pi/5.0 Time step is 10^-6 sec for numerical integration of Euler method. L=1.0m, M=1.0kg, thetazero=pi/3.0, omegadot=0.5 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ... L=1.0m, M=1.0kg, thetazero=pi/3.0, omegadot=pi/3.0 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ...

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3D simple pendulum #3 (bird's eye view) / simulation
3D SIMPLE PENDULUM DEMONSTRATION
3D simple pendulum #4 (bird's eye view) / simulation
3D simple pendulum #5 (bird's eye view) / simulation
3D simple pendulum #3 (top view) / simulation
3D simple pendulum #1 (bird's eye view) / computer simulation
3D simple pendulum #4 (top view) / simulation
3D simple pendulum #2 (bird's eye view) / computer simulation
3D pendulum
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3D simple pendulum #3 (bird's eye view) / simulation

3D simple pendulum #3 (bird's eye view) / simulation

L=1.0m, M=1.0kg, thetazero=pi/6.0, omegadot=pi/6.0 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ...

3D SIMPLE PENDULUM DEMONSTRATION

3D SIMPLE PENDULUM DEMONSTRATION

This video demonstate a to and fro movement of an object relase from rest at an angle.

Sponsored
3D simple pendulum #4 (bird's eye view) / simulation

3D simple pendulum #4 (bird's eye view) / simulation

L=1.0m, M=1.0kg, thetazero=pi*2.0/3.0, omegadot=pi/5.0 Time step is 10^-6 sec for numerical integration of Euler method.

3D simple pendulum #5 (bird's eye view) / simulation

3D simple pendulum #5 (bird's eye view) / simulation

L=1.0m, M=1.0kg, thetazero=pi*4.0/5.0, omegadot=pi/5.0 Time step is 10^-6 sec for numerical integration of Euler method.

3D simple pendulum #3 (top view) / simulation

3D simple pendulum #3 (top view) / simulation

L=1.0m, M=1.0kg, thetazero=pi/6.0, omegadot=pi/6.0 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ...

Sponsored
3D simple pendulum #1 (bird's eye view) / computer simulation

3D simple pendulum #1 (bird's eye view) / computer simulation

L=1.0m, M=1.0kg, thetazero=pi/3.0, omegadot=0.5 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ...

3D simple pendulum #4 (top view) / simulation

3D simple pendulum #4 (top view) / simulation

L=1.0m, M=1.0kg, thetazero=pi*2.0/3.0, omegadot=pi/5.0 Time step is 10^-6 sec for numerical integration of Euler method.

3D simple pendulum #2 (bird's eye view) / computer simulation

3D simple pendulum #2 (bird's eye view) / computer simulation

L=1.0m, M=1.0kg, thetazero=pi/3.0, omegadot=pi/3.0 Time step is 10^-5 sec for numerical integration of Euler method. HiroLabo ...

3D pendulum

3D pendulum

3D pendulum

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