Home
Class 14
GENERAL KNOWLEDGE
In the system given below ,the masses ar...

In the system given below ,the masses are relased from rest

What shall be acceleration of the moving masses ?

A

g

B

2g/3

C

g/3

D

g/2

Text Solution

Verified by Experts

The correct Answer is:
c
Promotional Banner

Similar Questions

Explore conceptually related problems

In the system shown, the masses are released from rest. What shall be the acceleration of the moving masses?

The masses (M+m) and (M-m) are attached to the ends of a light inextensible string and the string is made to pass over the surface of a smooth fixed pulley. When the masses are relased from rest the acceleraion of the system is .

In the given figure, what will be acceleration of block of mass 7 kg?

Figure-2.54 shows a block of mass m is placed on an inclined wedge of mass M If the system is released from rest find the acceleration of m and M.

If the system is released, then the acceleration of the centre of mass of the system :

If the system is released, then the acceleration of the centre of mass of the system is : .

In the given figure, what will be the acceleration of block of mass 7 kg ?

A particle of mass m is rigidly attached at A to a ring of mass 3m and radius r . The system is released from rest and rolls without sliding. The angular acceleration of ring just after release is

Recommended Questions
  1. In the system given below ,the masses are relased from rest What...

    Text Solution

    |

  2. क्लोरोफॉर्म को प्रकाश एवं वायु के प्रभाव से बचाने के लिए क्या सावधानि...

    Text Solution

    |

  3. विभिन्नताए क्या है ? विभिन्नता के कारण सविस्तार लिखिए !

    Text Solution

    |

  4. दिए गए परिपथ में धारा I का मान ज्ञात कीजिये ?

    Text Solution

    |

  5. q आवेश का एक आवेशित कण, vec v वेग से चलता हुआ, एकसमान चुम्बकीय क्षेत...

    Text Solution

    |

  6. alpha -कणों को +x -अक्ष की दिशा में भेजा जाता है। यदि समरूप चुम्बकीय क...

    Text Solution

    |

  7. चित्रानुसार एक दण्ड चुम्बक मुक्त रूप से एक कुण्डली के बीच से होकर गिरत...

    Text Solution

    |

  8. चुम्बकीय क्षेत्र (B ) में वेग (v ) से गतिमान आवेश q के एक कण पर लगने व...

    Text Solution

    |

  9. समान गतिज ऊर्जा वाले दो आवेशित कण समरूप चुम्बकीय क्षेत्र के लंबवत प्रव...

    Text Solution

    |