Q = mcΔT or Q=cpmΔT
Q is the amount of heat needed to change the temperature of a substance
m is the mass of the heated substance
cp is the specific heat capacity (if this is what you're looking for, then the equation should be Q / mΔT = cp )
ΔT (pronounced delta T) is the temperature difference; the difference in temperature before and after you applied the heat
A very helpful PowerPoint: http://www.seaford.k12.de.us/es/smalley/ps%20unit%20lect/Heat%20and%20temperature.ppt
The formula to find the specific heat of water ( Q ) is: ( Q = mc\Delta T ), where (m) is the mass of the water, (c) is the specific heat capacity of water, and ( \Delta T ) is the change in temperature of the water.
The formula to calculate the change in temperature (ΔT) when specific heat (C) and heat (Q) are given is ΔT = Q / (m * C), where m represents the mass of the substance. If the initial and final temperatures are required, then the formula can be rearranged as Tfinal = Tinitial + ΔT.
To convert 2.35 kilojoules of heat to degrees Celsius, you need to know the specific heat capacity of the substance being heated. Once you have this value, you can use the formula: Heat energy (in joules) = mass * specific heat capacity * change in temperature. By rearranging the formula, you can calculate the change in temperature in degrees Celsius.
The formula for finding the final temperature in specific heat calculations is given by: [ T_f = T_i + \frac{Q}{m \cdot c} ] where (T_f) is the final temperature, (T_i) is the initial temperature, (Q) is the heat added or removed, (m) is the mass of the substance, and (c) is the specific heat capacity. This equation assumes no phase change occurs during the process.
The heat removed can be calculated using the formula: q = mcΔT, where q is heat, m is mass, c is specific heat capacity, and ΔT is the change in temperature. Given that the specific heat capacity of water is 4.18 J/g°C, you can calculate the heat removed by substituting the values into the formula.
the formula to find specific heat is specific heat= calories/mass X change in temperature.
The formula for finding mass using specific heat is: mass = (heat energy)/(specific heat x change in temperature). This formula is derived from the specific heat equation, q = mcΔT, where q represents heat energy, m is mass, c is specific heat, and ΔT is the change in temperature. By rearranging the equation to solve for mass, we can determine the mass of a substance based on the amount of heat energy supplied, the specific heat capacity of the material, and the resulting change in temperature.
(change of heat) ____________________ (change of temp)(mass)
The formula for calculating specific heat capacity (c) is: q = mcΔT, where q represents the heat transferred, m is the mass of the material, ΔT is the change in temperature, and c is the specific heat capacity.
To determine specific heat capacity in physics, you can use the formula Q = mcΔT, where Q represents heat transferred, m is the mass of the substance, c is the specific heat capacity, and ΔT is the change in temperature. By rearranging the formula to solve for c, you can find the specific heat capacity of the substance.
heat capacity- ML2T-2K-1 Specific Heat Capacity-M0L2T-2K-1
The formula to find the specific heat of water ( Q ) is: ( Q = mc\Delta T ), where (m) is the mass of the water, (c) is the specific heat capacity of water, and ( \Delta T ) is the change in temperature of the water.
The chemical formula for heat is not a specific compound, as heat is a form of energy and not a substance with a distinct chemical formula. Heat is typically represented in equations using the symbol "Q" or "H" to denote the transfer of thermal energy.
Heat Rejection = mass x specific weight x specific density x difference in temp
The dimensional formula of latent heat is [L^2 T^-2], which signifies energy per unit mass. The dimensional formula of specific heat is [L^2 T^-2 K^-1], representing the amount of heat required to raise the temperature of a unit mass of a substance by one degree Celsius.
Specific heat is the measure of energy it takes to raise a unit mass in temperature by one degree Celsius. When measuring a compound that is water soluble, heat it separately to a specific range, then use the liquid to calculate the amount of heat that was used.
The formula for calculating heat is Q = mcΔT, where Q represents the amount of heat transferred, m is the mass of the object, c is the specific heat capacity of the object, and ΔT is the change in temperature.