You better have a 10,000 watt capable generator.
Electricity was discovered not invented. Without it our lives would be more difficult though.
Since the equation for watts is: Volts * Amps = Watts that would mean 12 Volts * 1 Amp = 12 Watts
For a fixed resistance (ohms) current increases as voltage increases. Since Watts equals Volts x Amps x Power Factor then Watts would increase as voltage increases. The resistance would usually be fixed, but if you had a variable load resistance as the resistance decreased and the voltage remained constant, the current would increase and watts would therefore increase. Watts = Volts x Amps x Power Factor Volts = Amps x Ohms Power Factor is 1 for a resistive load.
Copper is the best base metal for conducting electricity. Gold and silver are better but too expensive. If you used a poorer metal you would lose more power and it would also generate more heat which in a motor would be quite a lot. More heat would then cause more resistance which would cause more heat.
A 450-watt bulb consumes 450 watts of electrical power when it is turned on. If it operates for one hour, it will use 0.45 kilowatt-hours (kWh) of energy. The cost of running the bulb will depend on your local electricity rates, which are typically charged per kWh. For example, if the rate is $0.12 per kWh, running the bulb for one hour would cost about $0.054.
About 6,250 watts
Can't be answered. 12 Watts is a measure of power, not energy - so you have to say how long you want it for. 12 watts for 10 seconds would be a quite different answer than 12 watts for one hour.
One solar panel wil generate about 5kw per day. So by simple math we can see that 25 solar panles will generate 100 kw per day. But a solar powered generator, if designed right can generate 100kw/hr's per day..
Writing VA is just another way of writing watts, as watts = volts x amps, so 3kva means 3000 watts. Divide by 210, and the answer is 100/7 = 14 to the nearest whole number, but you could make it 15 to be sure, then you would have a 5 by 3 array.
kartlon
The purpose of a generator is to generate electricity. An electric generator would be redundant. It would need electricity to make electricity and when there is a power outage there is not electricity.
Look at kilowatt hours on your bill. Each of those is 1000 watts per hour.
Depending on how much electricity you plan to generate, the exercise might do you good.
The amount of watts per hour that an exercise bike can generate varies depending on the bike's resistance level and the user's effort. Typically, a moderately intense workout can produce around 100 to 300 watts, while highly trained athletes can generate 400 watts or more. However, it's important to note that watts measure power (work done per unit time), not energy, so a watt-hour (Wh) would depend on the duration of the workout. For example, if an athlete generates 300 watts for one hour, they would produce 300 watt-hours of energy.
meteorology
With only a molecule of water and no equipment it would be impossible.
Since the Coefficient of Performance (COP) is 2.5, for every 1 watt of electricity input, the heat pump produces 2.5 watts of heating or cooling output. Therefore, if 200 watts of electricity are used, the heat pump would produce 2.5 times 200, which equals 500 watts of equivalent heat output.