The amount of heat produced by the 100 W heater in 5 minutes can be calculated as follows:
Power (in watts) = 100 W Time (in seconds) = 5 minutes * 60 seconds/minute = 300 seconds Energy = Power * Time = 100 W * 300 s = 30,000 joules
So, the heater will produce 30,000 joules of heat.
The amount of heat energy produced from electrical energy depends on the efficiency of the system. If we assume 100% efficiency, then all 3000 joules of electrical energy would be converted into heat energy. Thus, 3000 joules of electrical energy would produce 3000 joules of heat energy.
An electric heater works by passing an electric current through a high resistance wire, causing it to heat up and produce heat through a process called Joule heating. The heat is then transferred to the surrounding air through convection, warming up the space.
The unit of heat equivalent to 4.184 joules is the calorie.
The heat generated by 1700 joules of work depends on the efficiency of the process. In an ideal case where all the work is converted into heat, the heat generated would also be 1700 joules. However, in real-world scenarios, the heat generated would be less due to energy losses.
The efficiency of the car's engine is calculated as the ratio of the useful work output to the total heat input. In this case, the useful work output is 500000 joules (2000000 J - 1500000 J) and the total heat input is 2000000 joules. Therefore, the efficiency is 500000 joules / 2000000 joules, which equals 0.25 or 25%.
Based on the formula, P = E/T , and 5 min is 300 seconds, 100 = E/300, E = 30000
The amount of heat energy produced from electrical energy depends on the efficiency of the system. If we assume 100% efficiency, then all 3000 joules of electrical energy would be converted into heat energy. Thus, 3000 joules of electrical energy would produce 3000 joules of heat energy.
Check the vacuum operated valve at the hose going to the heater core.
the heat output is reduced
A light bulb similar to a heater in that they both produce heat when in operation.
I don't think so because when we have a cold, it is best to keep oneself warm and thus the heater produce heat for us to keep warm. Unless we have a lousy heater which produce cold air instead of heat, haha!
An electric heater works by passing an electric current through a high resistance wire, causing it to heat up and produce heat through a process called Joule heating. The heat is then transferred to the surrounding air through convection, warming up the space.
There are two insulated heater elements that heat the water.
The unit of heat equivalent to 4.184 joules is the calorie.
334.8 Joules
The heat generated by 1700 joules of work depends on the efficiency of the process. In an ideal case where all the work is converted into heat, the heat generated would also be 1700 joules. However, in real-world scenarios, the heat generated would be less due to energy losses.
The unit for specific heat is Joules/g-Kelvin or it can be Joules/g-Celsius J= Joules g= Grams C= Celsius