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| 1. |
Two masses \[{{m}_{1}}\] and \[{{m}_{2}}\] which are connected with a light string, are placed over a frictionless pulley. This set up is placed over a weighing machine, as shown. Three combination of masses \[{{m}_{1}}\] and \[{{m}_{2}}\] are used, in first case \[{{m}_{1}}=6\,kg\] and \[{{m}_{2}}=2\,kg,\] in second case \[{{m}_{1}}=5\,kg\] and \[{{m}_{2}}=3\,kg\] and in third case \[{{m}_{1}}=4\,kg\] and \[{{m}_{2}}=4\,kg\]. Masses are held stationary initially and then released. If the readings of the weighing machine after the release in three cases are\[{{W}_{1}},\,{{W}_{2}}\] and \[{{W}_{3}}\] respectively then: |
| A. | \[{{W}_{1}}>{{W}_{2}}>{{W}_{3}}\] |
| B. | \[{{W}_{1}}<{{W}_{2}}<{{W}_{3}}\] |
| C. | \[{{W}_{1}}={{W}_{2}}={{W}_{3}}\] |
| D. | \[{{W}_{1}}={{W}_{2}}<{{W}_{3}}\] |
| Answer» C. \[{{W}_{1}}={{W}_{2}}={{W}_{3}}\] | |