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Pick out the only vector quantity in the following list : temperature, pressure, impulse, time, power. Total path-length, energy. Gravitational potential, coefficient of friction, charge,

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Pick out the only vector quantity in the following list : temperature, pressure, impluse, time, power. Total path-length, energy. Gravitational potential, coefficient of friction, charge,

Pick out the only vector quantity in the following list: Temperature, pressure, impulse, time, power , total path length, energy, gravitational temperature, pressure, impulse, time, power, total path length, energy, gravitational potential, coefficient of friction, charge.

Out of the following statements (A) Three charge system can not be zero mutual potential energy (B) The mutal potential energy of a system of charges is only due to positive charge.

In the following questions, each question contains Statement I(assertion) and StatementII(reason). Each questions has four choices a, b, c, and d out of which only one is correct. Statement I: A block of mass m starts moving on a rough horizontal surface with a velocity v. It stops due to friction between the block and the surface after moving through a certain distance. The surface is now titled to an angle of 30^@ with the horizontal and the same block is made to go up on the surface with the same initial velocity v. The decrease in mechanical energy in the second situation is smaller than that in the first situation. Statement II: The coefficient of friction between the block and the surface decreases with the increase in the angel of inclination.

Consider the quantities, pressure, power, energy impulse, gravitational potential, electoral charge, temperature, area, Out of these, the only vector quantities are.

Gravitational force is a conservation and medium independent force. Its nature is attractive. Gravitational field intensity and gravitational potential gives information about gravitational fied in vector and scaler form respectively. Actually gravitational fied intensity is equal to the negative of the negative of teh potential gradient. potential energy is defined for only conservation force. it is also equal to the total energy in escaping condition. gravitational potential is either negative or zero but can never be positive due to attractive nature of gravitational force. Gravitational potential versus distance r graph is represented in figure. The magnitude of gravitational field intensity is equal to

Gravitational force is a conservation and medium independent force. Its nature is attractive. Gravitational field intensity and gravitational potential gives information about gravitational fied in vector and scaler form respectively. Actually gravitational fied intensity is equal to the negative of the negative of teh potential gradient. potential energy is defined for only conservation force. it is also equal to the total energy in escaping condition. gravitational potential is either negative or zero but can never be positive due to attractive nature of gravitational force. The gravitational potential inside a hollow sphere (mass M , radius R ) at a distance r from the centre is:

Gravitational force is a conservation and medium independent force. Its nature is attractive. Gravitational field intensity and gravitational potential gives information about gravitational fied in vector and scaler form respectively. Actually gravitational fied intensity is equal to the negative of the negative of teh potential gradient. potential energy is defined for only conservation force. it is also equal to the total energy in escaping condition. gravitational potential is either negative or zero but can never be positive due to attractive nature of gravitational force. A person brings a mass of 1 kg from infinity to a point A . Initially the mass was at rest but it moves with a speed of 2 m//s as it reaches A . The work done by the person on a mass is -3 J . The potential of A is:

Three identical spheres each of radius a and mass m are placed such that their centers lie on the vertices of an equilateral triangle of side length 3a. The spheres are non conducting and each one carries a charge Q uniformly distributed over its surface. All the three spheres are simultaneously released and after releasing they move under the influence of their mutual electrostatic forces only. Based on this information, answer the following questions : The rate at which the electrostatic potential energy of the system is decreasing, just after the release will be :

MODERN PUBLICATION-MOTION IN A PLANE -NCERT FILE (Solved) NCERT (Textbook Exercises)
  1. State , for each of the following physical quantities , if it is a sca...

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  2. Pick out the two scalar quantities in the following list : Force, an...

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  3. Pick out the only vector quantity in the following list : temperature,...

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  4. State with reasons whether the following algebric operations with scal...

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  5. Read each statement below carefully and state with reasons, with it is...

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  6. निम्नलिखित असमिकाओं की ज्यामिति या किसी अन्य विधि द्वारा स्थापना कीजिए...

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  7. Given a+b+cd+c=0 , which of the following statements are correct? (a...

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  8. Three girls skating on a circular ice ground of radius 200 m start fro...

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  9. A cyclist starts from the centre O of a circular park of radius 1km , ...

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  10. On an open ground , a motorist follows a track that turns to his left ...

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  11. A passenger arriving in a new town wishes to go from the station to a...

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  12. Rain is falling vertically with a speed of 30 ms^(-1) . A woman rides...

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  13. A man can swim with a speed 4km/hr in still water. (a) How long does...

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  14. In a harbour , wind is blowing at the speed of 27 km //h and the fla...

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  15. The ceiling of a long hall is 25 m high. What is the maximum horizonta...

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  16. A cricketer can throw a ball to a maximum horizontal distance of 100 m...

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  17. A stone tied to the end of a string 80 cm long is whirled in a horizo...

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  18. An aircraft executes a horizontal loop of radius 1 km with a steady sp...

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  19. Read each statement below carefully and state, with reasons, if it is ...

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  20. The position of a particle is given by vec r= 3.0 t hat i - 2.0 t^2 h...

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