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In a conservative field at stable equili...

In a conservative field at stable equilibrium potential energy is:

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Assertion :Mean positon of SHM is the stable equlibrium position. Reason: In stable equilibrium , position potential energy is minimum.

A : The potential energy can be defined only in conservative field. R : The value of potential energy depends on the reference level (level of zero potential energy).

When dipole moment vec(p) of a dipole is parallel to electric field intensity vec(E ) (stable equilibrium) the potential energy of dipole is

A particle in a certain conservative force field has a potential energy given by V=(20xy)/z . The force exerted on it is

A particle of mass 1.5 kg moves along x-axis in a conservative force field. Its potential energy is given by V(x)=2x^(3)-9x^(2)+12x, where all quantities are written in SI units. The plot of this potential energy is given below. It is seen that the particle can be in stable equilibrium at a point on x-axis, x_(0). When it is displaced slightly from this equilibrium position, It executes SHM with time period T. What is the time period of SHM mentioned in the paragraph?

A particle of mass 1.5 kg moves along x-axis in a conservative force field. Its potential energy is given by V(x)=2x^(3)-9x^(2)+12x, where all quantities are written in SI units. The plot of this potential energy is given below. It is seen that the particle can be in stable equilibrium at a point on x-axis, x_(0). When it is displaced slightly from this equilibrium position, It executes SHM with time period T. What is the value of x_(0) ?

A particle moves in one dimension in a conservation force field. The potential energy is depicted in the graph below. If the particle starts to move from rest from the point A , then

SL ARORA-System of particles & rotational Motion-EXERCISE
  1. A rigid body will be in equilibrium if both the and of the body rema...

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  2. For a rigid body in equilibrium, linear acceleration of its centre of ...

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  3. In a conservative field at stable equilibrium potential energy is:

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  4. is the rotational analogue of mass in linear motion.

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  5. For translatory motion, F = ma. Its rotational analogue is .

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  6. For translatory motion, p= mv. Its rotational analogue is

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  7. Moment of inertia of rigid body is equal to the rotational kinetic en...

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  8. Radius of gyration of a body amount an axis of rotation is equal to th...

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  9. Two identical particles move towards each other with velocity 2v and v...

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  10. A particle performing uniform circular motion gas angular momentum L. ...

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  11. The moment of inertia of a disc about an axis through its centre and p...

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  12. A circular ring and circular disc of same radius have equal moments of...

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  13. A ballet-dancer stretches her hands out for slowing down. This is base...

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  14. A tangential force F is applied on a disc of radius R, due to which it...

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  15. A solid cylinder of mass M and radius R rolls down an inclined plane o...

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  16. The centre of mass of a body should necessarily lie within the body.

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  17. Statement-1 : The centre of mass of a system of n particles is the wei...

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  18. A boat is likely to capsize if the persons in the boat stand up

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  19. If no external torque acts on a body, will its angular velocity remain...

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  20. The centre of mass of a body changesits position with translatory as w...

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