Read a book
yes, calculate it from temperature coefficient of resistance.
If there is no change occurring, and there are no data relating to past trends, there is no change to calculate - it is a constant.
You cant.
To calculate calories in chemistry, you can use the formula: Calories mass x specific heat capacity x temperature change. This formula helps determine the amount of energy required to raise the temperature of a substance. By measuring the mass of the substance, its specific heat capacity, and the temperature change, you can calculate the calories.
To calculate the change in thermal energy in a system, you can use the formula: Change in thermal energy mass x specific heat capacity x change in temperature. This formula takes into account the mass of the system, the specific heat capacity of the material, and the change in temperature.
The variable that is not required to calculate the Gibbs free-energy change for a chemical reaction is the temperature.
Sensitivity of a thermometer is calculated by dividing the change in temperature measured by the thermometer by the change in the actual temperature. This gives a measure of how accurately the thermometer can detect small changes in temperature.
To determine the temperature change in a system, one can measure the initial and final temperatures using a thermometer and then calculate the difference between the two readings. This difference indicates the temperature change in the system.
The heat capacity equation is Q mcT, where Q represents the amount of heat energy, m is the mass of the substance, c is the specific heat capacity of the substance, and T is the change in temperature. This equation is used to calculate the amount of heat required to change the temperature of a substance by multiplying the mass, specific heat capacity, and temperature change.
Thermistors are temperature-sensitive resistors that change resistance with temperature. They are commonly used in electronic devices for temperature measurement and control. Their resistance can be used to calculate the temperature of the surrounding environment.
Observing temperature change when two chemicals are mixed can provide insight into whether a chemical reaction has occurred. An increase or decrease in temperature may indicate that the reaction is exothermic or endothermic, respectively. Monitoring temperature change can also help determine the reaction rate and the efficiency of the reaction.
To calculate the heat of formation of a substance at a different temperature, you can use the heat capacity of the substance to adjust for the change in temperature. You would need to integrate the heat capacity over the temperature range to determine the change in enthalpy and then correct the heat of formation using this adjusted value.