Water is boiled at atmospheric pressure by a horizontal polished copper heating element of diameter D = 5 mm and emissivity ε = 0.05 immersed in water. If the surface temperature of the heating wire...

Water is boiled at atmospheric pressure by a horizontal polished copper heating element of diameter D = 5 mm and emissivity ε = 0.05 immersed in water. If the surface temperature of the heating wire is 350°C, determine the rate of heat transfer from the wire to the water per unit length of the wire. The properties of water at the saturation temperature of 100°C are ρl= 957.9 kg/m3 , hfg = 2257.0×10^3J/kg, The properties of vapor at the film temperature ρv = 0.441 kg/m3 , µv = 1.73 × 10^-5 kg m/s , Cpv= 1977 J/kg °C, kv = = 0.0357 W/m °C Select one: a. 853 W b. 933 W c. 707 W d. 1953 WWater is boiled at atmospheric pressure<br>by a horizontal polished copper heating<br>element of diameter D = 5 mm and<br>emissivity ɛ = 0.05 immersed in water. If<br>the surface temperature of the heating<br>wire is 350°C, determine the rate of heat<br>transfer from the wire to the water per<br>unit length of the wire. The properties of<br>water at the saturation temperature of<br>100°C are pl= 957.9 kg/m3 , hfg =<br>2257.0x10^3J/kg, The properties of<br>vapor at the film temperature pv = 0.441<br>kg/m3 , µv = 1.73 × 10^-5 kg m/s , Cpv=<br>1977 J/kg °C, kv = = 0.0357 W/m °C<br>Select one:<br>a. 853 W<br>b. 933 W<br>c. 707 W<br>d. 1953 W<br>12:54 am<br>

Extracted text: Water is boiled at atmospheric pressure by a horizontal polished copper heating element of diameter D = 5 mm and emissivity ɛ = 0.05 immersed in water. If the surface temperature of the heating wire is 350°C, determine the rate of heat transfer from the wire to the water per unit length of the wire. The properties of water at the saturation temperature of 100°C are pl= 957.9 kg/m3 , hfg = 2257.0x10^3J/kg, The properties of vapor at the film temperature pv = 0.441 kg/m3 , µv = 1.73 × 10^-5 kg m/s , Cpv= 1977 J/kg °C, kv = = 0.0357 W/m °C Select one: a. 853 W b. 933 W c. 707 W d. 1953 W 12:54 am

Jun 11, 2022
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