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Question

A block of mass m slides down a wedge of mass m as shown. The whole system is at rest, when the height of the block is h = 10 m. Above the ground. The wedge surface is smooth and gradually flattens. There is no friction between wedge and ground. If there is no friction anywhere, the speed of the wedge, as the block leaves the wedge is :

  1. 10 m s to the power of negative 1 end exponent    
  2. 20 m s to the power of negative 1 end exponent    
  3. 30 m s to the power of negative 1 end exponent    
  4. None of these    

The correct answer is: 10 m s to the power of negative 1 end exponent

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A block of mass m slides down a wedge of mass m as shown. The whole system is at rest, when the height of the block is h = 10 m. Above the ground. The wedge surface is smooth and gradually flattens. There is no friction between wedge and ground. If there would have been friction between wedge and block, which of the following quantities would still remain conserved?

A block of mass m slides down a wedge of mass m as shown. The whole system is at rest, when the height of the block is h = 10 m. Above the ground. The wedge surface is smooth and gradually flattens. There is no friction between wedge and ground. If there would have been friction between wedge and block, which of the following quantities would still remain conserved?

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Statement I : Trace of matrix  A = open square brackets table attributes columnalign left left left columnspacing 1em end attributes row cell a subscript 11      a subscript 12      a subscript 13 end cell row cell a subscript 21      a subscript 22      a subscript 23 end cell row cell a subscript 31      a subscript 32      a subscript 33 end cell end table close square brackets is equal to a11 + a22 + a33
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