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To find the centre of mass of rigid body...

To find the centre of mass of rigid body why it is not possible to know `Sigmam_(i)vec(r_(i))` for all the particles?

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The particles of mass m_(1),m_(2) and m_(3) are placed on the vertices of an equilateral triangle of sides .a.. Find the centre of mass of this system with respect to the position of particle of mass m_(1) .

Separation of Motion of a system of particles into motion of the centre of mass and motion about the centre of mass : (a) Show p=p_(i).+m_(i)V where p_(i) is the momentum of the ith particle (of mass m_(i) ) and p_(i).=m_(i)v_(i). . Note v_(i). is the velocity of the i^(th) particle relative to the centre of mass Also, prove using the definition of the centre of mass Sigmap_(i).=0 (b) Show K=K.+(1)/(2)MV^(2) where K is the total kinetic energy of the system of particles, K. is the total kinetic energy of the system when the particle velocities are taken with respect to the centre of mass and (1)/(2)MV^(2) is the kinetic energy of the translation of the system as a whole (i.e. of the centre of mass motion of the system). The result has been used in Sec. 7.14). (c ) Show vecL=vecL.+vecRxxvec(MV) where vecL.=Sigmavec(r_(i)).xxvec(p_(i)). is the angular momentum of the system about the centre of mass with velocities taken relative to the centre of mass. Remember vec(r._(i))=vec(r_(i))-vecR , rest of the notation is the velcities taken relative to the centre of mass. Remember vec(r._(i))=vec(r_(i))-vecR rest of the notation is the standard notation used in the chapter. Note vecL , and vec(MR)xxvecV can be said to be angular momenta, respectively, about and of the centre of mass of the system of particles. (d) Show vec(dL.)/(dt)=sumvec(r_(i).)xxvec(dp.)/(dt) Further, show that vec(dL.)/(dt)=tau._(ext) where tau._(ext) is the sum of all external torques acting on the system about the centre of mass. (Hint : Use the definition of centre of mass and Newton.s Thrid Law. Assume the internal forces between any two particles act along the line joining the particles.)

The position of a particle is given by vec r= 3.0 t hat i - 2.0 t^2 hat j + 4.0 hat k m , wher (t) in seconds and the coefficients have the proper units for vec r to be in metres. Find the vec v and vec a of the particle ?

KUMAR PRAKASHAN-SYSTEMS OF PARTICLES AND ROTATIONAL MOTION-SECTION-A (TRY YOURSELF (VSQs))
  1. Mention the centre of mass of three particles which are not in line bu...

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  2. Obtain an expression for the position vector of centre of mass of a sy...

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  3. To find the centre of mass of rigid body why it is not possible to kno...

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  4. Write the meaning of homogeneous bodies.

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  5. Mention the position of centre of mass of ring. Disc and spheres.

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  6. Integration is zero for a point of homogeneous body. which is that poi...

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  7. What are the position of centre of mass of symmetrical OR homogeneous ...

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  8. In general form what are the coordinates of centre of mass of a rigid ...

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  9. What do you mean by mass element dm?

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  10. Which types of force acting on the system of particle?

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  11. Why does the internal forces acting on the centre of mass of the syste...

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  12. The multiplication of total mass of system and the acceleration of its...

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  13. Equation MvecA=vecF(ext) denote what?

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  14. Under which force the centre of mass is moving?

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  15. If the explosion in projectile takes place, which force acting its cen...

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  16. Which type of forces are responsible in explosion of chemical bomb int...

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  17. When explosion of bomb projected which forces do not contribute in the...

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  18. Explain linear momentum. Represent it in formula form.

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  19. Write the symbolic form of Newton.s second law.

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  20. What is the total momentum of the system of particle?

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