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When a proton has a velocity vec v = (2h...

When a proton has a velocity `vec v = (2hat i + 3 hat j) xx 10^6 ms^-1`, it experiences a force `vec F = -(1.28 xx 10^(-13) hat k) N.` When its velocity is along the z-axis, it experiences a force along the x-axis. What is the magnetic field?

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When a proton has a velocity v=(2hati+3hatj)xx10^6m/s , it experience a force F=-(1.28xx10^-13hatk) When its velocity is along the z-axis, it experience a force along the x -axis. What is the magnetic field?

When as proton has a velocity v=(2hati+3hatj)xx10^6m/s , it experience a force F=-(1.28xx10^-13hatk) When its velocity is along the z-axis, it experience a force along the x -axis. What is the magnetic field?

When as proton has a velocity v=(2hati+3hatj)xx10^6m/s , it experience a force F=-(1.28xx10^-13hatk) When its velocity is along the z-axis, it experience a force along the x -axis. What is the magnetic field?

A charge q=-4 mu C has an instantaneous velocity vec v = (2 hat i - 3 hat j + hat k)xx10^6 ms^-1 in a uniform magnetic field vec B = (2 hat i + 5 hat j - 3hat k)xx10^-2 T. What is the force on the charge?

A charge q=-4 mu C has an instantaneous velocity vec v = (2 hat i - 3 hat j + hat k)xx10^6 ms^-1 in a uniform magnetic field vec B = (2 hat i + 5 hat j - 3hat k)xx10^-2 T. What is the force on the charge?

For a body, angular velocity (vec(omega)) = hat(i) - 2hat(j) + 3hat(k) and radius vector (vec(r )) = hat(i) + hat(j) + vec(k) , then its velocity is :

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A proton is moving along Z -axis in a magnetic field. The magnetic field is along X -axis. The proton will experience a force along

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