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Two spherical bodies A (radius 6cm) and B (radius 18cm) are at temperature `T_(1)` and `T_(2)` respectively The maximum intensity in the emission spectrum of A is at `500 nm` and in that of `B` is at `1500nm` considering them to be black bodies, what will be the ratio of total energy radiated by `A` to that of `B` .

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Two spherical bodies A (radius 6cm) and B (radius 18cm) are at temperature T_(1) and T_(2) respectively The maximum intensity in the emission spectrum of A is at 500 nm and in that of B is at 1500nm considering them to be black bodies, what will be the ratio of the rate of total energy radiated by A to that of B . ?

Two spherical bodies A (radius 6cm) and B (radius 18cm) are at temperature T_(1) and T_(2) respectively The maximum intensity in the emission spectrum of A is at 500 nm and in that of B is at 1500nm considering them to be black bodies, what will be the ratio of the rate of total energy radiated by A to that of B . ?

Two spherical bodies, A(radius 6cm) and B(radius 18cm) are at temperature T_1 and T_2 , respectively. The maximum intensity in the emission spectrum of A is at 500nm and in that of B is at 1500nm. Considering them to be black bodies, what will be the ratio of the rate of total energy radiated by A to that of B?

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