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Reading of spring balance S1 and S2 (Pul...

Reading of spring balance `S_1` and `S_2` (Pulley are ideal)

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Find the readings of spring balances S_(1),S_(2) and S_(3) of the springs shown in figure-2.115(a). If the string snaps at point A find the readings of the three spring balances just after the string snaps. All pulleys and strings are ideal.

Reading shown in two spring balances S_(1) and S_(2) is 90kg and 30kg respectively and lft is accelerating upwards with acceleration 10m//s^(2).S_(1) in elongated and S_(2) is compressed. The mass is stationary with respect to life. Then the mass of the block will be

Reading shown in two spring balances S_(1) and S_(2) is 90kg and 30kg respectively and lft is accelerating upwards with acceleration 10m//s^(2).S_(1) in elongated and S_(2) is compressed. The mass is stationary with respect to life. Then the mass of the block will be

The reading in the spring balance is

The reading in the spring balance is

Find the reading of spring balance in the adjoining figure, pulley and strings are ideal.

The reading in the spring balance is:

The reading in the spring balance is:

As Fig. shows, S_(1) and S_(2) , are spring balances. Block A is hanging from spring balance S_(1) and immersed in liquid L which is contained in beaker B . The mass of beaker B is 1 kg and mass of liquid L is 1.5 kg . Balances S_(1) and S_(2) reads 2.5 kg and 7.5 kg , respectively. What will be the readings of S_(1) and S_(2) when block A is pulled up out of the liquid. Find the reading of S_(1) and S_(2)?

As Fig. shows, S_(1) and S_(2) , are spring balances. Block A is hanging from spring balance S_(1) and immersed in liquid L which is contained in beaker B . The mass of beaker B is 1 kg and mass of liquid L is 1.5 kg . Balances S_(1) and S_(2) reads 2.5 kg and 7.5 kg , respectively. What will be the readings of S_(1) and S_(2) when block A is pulled up out of the liquid. Find the reading of S_(1) and S_(2)?