Answer:
[tex]T_s = 6.8 degree C[/tex]
Explanation:
As per thermal radiation we know that rate is heat radiation is given as
[tex]\frac{dQ}{dt} = \sigma eA (T^4 - T_s^4)[/tex]
here we know that
T = 34 degree C = 307 K
[tex]A = 1.38 m^2[/tex]
e = 0.557
[tex]\sigma = 5.67 \times 10^{-8} W/m^2K^4[/tex]
[tex]\frac{dQ}{dt} = 120 J/s[/tex]
now we have
[tex]120 = (5.67 \times 10^{-8})(0.557)(1.38)(307^4 - T_s^4)[/tex]
[tex]120 = (4.36 \times 10^{-8})(307^4 - T_s^4)[/tex]
[tex]T_s = 279.8 K[/tex]
[tex]T_s = 6.8 degree C[/tex]