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Pseudo Force

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The block of mass m is in equilibrium relative to the smooth wedge of mass M which is pushed by a horizontal force F. Find pseudo force acting on (a) m, (b)M as viewed by the observer sitting on the wedge. Will these pseudo forces (c ) equal and opposite, action reaction pairs? Explain.

Suppose you are sitting on an accelrating trolley car. (i) Find the pseudo force action on the block of mass m placed on the trolley car. If the block is placed (or moved) outside the trolley car, and an external force F acts in horizontal direction. (ii) Find the pseudo force acting on the block as viewed by the observer. (iii) Find the acceleration of the block as seen by the obersever

A smooth block of mass m moves up from bottom to top of a wedge which is moving with an acceleration a_(10) . Find the work done by the pseudo force measured by the person sitting at the edge of the wedge.

Two trolleys A and B are moving with accelerations a and 2a, respectively, in the same direction. To an observer in trolley A. Find the magnitude of the pseudo force acting on a block of mass m on trolley B.

Two blocks A and B of masses 1kg and 2kg have acceleration (2hat(i))m//s^(2) and (-4hat(j))m//s^(2) . Find (a) Psseudo force on block A as applied with respect to the block B . (a) Pseudo force on block B as applied with respect to the block A

There will be no relative motion between P and Q if pseudo force on block P is less than or just equal to limiting friction between P and Q. i.e. m("KA"/"2m") Limiting friction Maximum friction = "KA"/2 The first law of thermodynamics is based on :–

A block of mass mis kept in an elevation which starts1 moving downward with an acceleration aas shown in figure. The block is observed by two observers A and B for a time interval t_(0) The observer B finds that the work done by pseudo-force on the block is :

Pseudo First Order Reaction

Pseudo copulation occurs in