There is no direct relationship between the two without knowing more.
AnswerFor those non-ohmic conductors, such as tungsten, which do not obey Ohm's Law, an increase in potential difference will result in a current which, in turn, will cause an increase in the temperature of that conductor (significantly raising its resistance). So the relationship is indirect -i.e. it is the resulting current change that causes the temperature change.
A calorie is a measure of heat (generated by eating) and cholesterol is a type of fat. There is no direct relation between the two.
thermoeletric
The power generated in a resistor is converted into heat. and that can be power which is converted into heat is the product of the voltage across the resistor and, current passing through the resistor. or the product of square of the current and the resistance offered by the resistor.
electric generated heat is 70% more expensive than gas generated heat .
thermodynamics
Heat is generated due to resistive losses when a current flows. Noise is either from vibration or corona effect in case of high voltage lines
There is no set range for these types of resistors. The biggest thing to keep in mind is the heat that is generated by the resistance and the applied voltage. The device should be large enough to dissipate this heat.
Sugar melts when heated and it also cooks the sugar.
Heat dissipation is directly proportional to the square of the applied voltage according to Joule's Law. This means that as the voltage increases, the heat dissipated in a circuit also increases quadratically. The relationship is represented by the formula: Heat dissipation = V^2/R, where V is the voltage and R is the resistance in the circuit.
One common method to convert heat into electricity is through a process called thermoelectric generation. This involves using thermoelectric materials that can convert temperature differences into electrical voltage. By creating a temperature gradient across these materials, the voltage generated can be used to produce electricity.
Voltage does not come from a candle. A candle produces light and heat through a chemical reaction when the candle wax is burned. Voltage is typically generated by batteries or power sources that convert energy from various sources into electrical potential.
The form of energy generated by friction is called mechanical energy. Friction between surfaces can convert mechanical energy into heat energy.