Q2) Consider a 150-W incandescent lamp. The filament of the lamp is 5-cm long and has a diameter of 0.5 mm. The diameter of the glass bulb of the lamp is 8 cm. Determine the heat flux, in W/m2, (a) on the surface of the filament and (b) on the surface of the glass bulb, and (c) calculate how much it will cost per year to keep that lamp on for eight hours a day every day if the unit cost of electricity is $0.08/kWh.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q2) Consider a 150-W incandescent lamp. The filament of the lamp is 5-cm
long and has a diameter of 0.5 mm. The diameter of the glass bulb of the lamp is
8 cm. Determine the heat flux, in W/m2, (a) on the surface of the filament and
(b) on the surface of the glass bulb, and (c) calculate how much it will cost per
year to keep that lamp on for eight hours a day every day if the unit cost of
electricity is $0.08/kWh.
Answers. (4) 191 10€ W/m, ()/500 W/m² (c) $35 04/T
Transcribed Image Text:Q2) Consider a 150-W incandescent lamp. The filament of the lamp is 5-cm long and has a diameter of 0.5 mm. The diameter of the glass bulb of the lamp is 8 cm. Determine the heat flux, in W/m2, (a) on the surface of the filament and (b) on the surface of the glass bulb, and (c) calculate how much it will cost per year to keep that lamp on for eight hours a day every day if the unit cost of electricity is $0.08/kWh. Answers. (4) 191 10€ W/m, ()/500 W/m² (c) $35 04/T
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