A house has well-insulated walls 19.5 cm thick (assume conductivity of air) and area 410 m 2 , a roof of wood 5.5 cm thick and area 280 m 2 , and uncovered windows 0.65 cm thick and total area 33m 2 . ( a ) Assuming that heat is lost only by conduction , calculate the rate at which heat must he supplied to this house to maintain its inside temperature at 23°C if the outside temperature is −15°C. ( b ) If the house is initially at 12°C, estimate how much heat must be supplied to raise the temperature to 23°C within 30 min. Assume that only the air needs to be heated and that its volume is 750m 3 ( c ) If natural gas costs $0.080 per kilogram and its heat of combustion is 5.4 × 10 7 J/kg, how much is the monthly cost to maintain the house as in part ( a ) for 24 h each day, assuming 90% of the heat produced is used to heat the house? Take the specific heat of air to be 0.24 kcal/kg · C°.
A house has well-insulated walls 19.5 cm thick (assume conductivity of air) and area 410 m 2 , a roof of wood 5.5 cm thick and area 280 m 2 , and uncovered windows 0.65 cm thick and total area 33m 2 . ( a ) Assuming that heat is lost only by conduction , calculate the rate at which heat must he supplied to this house to maintain its inside temperature at 23°C if the outside temperature is −15°C. ( b ) If the house is initially at 12°C, estimate how much heat must be supplied to raise the temperature to 23°C within 30 min. Assume that only the air needs to be heated and that its volume is 750m 3 ( c ) If natural gas costs $0.080 per kilogram and its heat of combustion is 5.4 × 10 7 J/kg, how much is the monthly cost to maintain the house as in part ( a ) for 24 h each day, assuming 90% of the heat produced is used to heat the house? Take the specific heat of air to be 0.24 kcal/kg · C°.
A house has well-insulated walls 19.5 cm thick (assume conductivity of air) and area 410 m2, a roof of wood 5.5 cm thick and area 280 m2, and uncovered windows 0.65 cm thick and total area 33m2. (a) Assuming that heat is lost only by conduction, calculate the rate at which heat must he supplied to this house to maintain its inside temperature at 23°C if the outside temperature is −15°C. (b) If the house is initially at 12°C, estimate how much heat must be supplied to raise the temperature to 23°C within 30 min. Assume that only the air needs to be heated and that its volume is 750m3 (c) If natural gas costs $0.080 per kilogram and its heat of combustion is 5.4 × 107 J/kg, how much is the monthly cost to maintain the house as in part (a) for 24 h each day, assuming 90% of the heat produced is used to heat the house? Take the specific heat of air to be 0.24 kcal/kg · C°.
Please don't use Chatgpt will upvote and give handwritten solution
The kinetic energy of a pendulum is greatest
Question 20Select one:
a.
at the top of its swing.
b.
when its potential energy is greatest.
c.
at the bottom of its swing.
d.
when its total energy is greatest.
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