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Question
assignment 1b - temperature and kinetic energy
directions 1 - 12: determine whether the bolded term makes each statement true or false. if the statement is true, write true in the blank. if the statement is false, write false the blank
- particles that make up matter are in constant motion.
- the faster particles move the less kinetic energy they have.
- temperature is the measure of the average kinetic energy of the particles in an object.
- when temperature increases, the average kinetic energy of the particles decreases.
- the thermal energy of an object is the total energy of the particles in a material.
- a thermometer is used to measure the specific heat of a material.
- thermal energy flows from a higher temperature to a lower temperature.
- heat is measured in newtons.
- the same amount of different materials need the same amount of heat to have the same change in temperature.
- the amount of energy it takes to raise the temperature of 1 kg of a material 1 kelvin is the specific heat of the material.
- water has a relatively low specific heat.
- materials with a high specific heat can absorb a lot of energy and show little change in temperature.
Brief Explanations
- According to the kinetic - molecular theory of matter, particles that make up matter are in constant motion.
- Kinetic energy formula is \(KE=\frac{1}{2}mv^{2}\), so the faster particles move (higher \(v\)), the more kinetic energy they have.
- Temperature is defined as the measure of the average kinetic energy of the particles in an object.
- Since temperature is related to average kinetic energy (\(T\propto\overline{KE}\)), when temperature increases, the average kinetic energy of the particles increases.
- Thermal energy is the total kinetic and potential energy of the particles in a material.
- A thermometer is used to measure temperature, not specific heat. Specific heat is calculated using \(Q = mc\Delta T\).
- Thermal energy (heat) flows from a region of higher temperature to a region of lower temperature according to the second law of thermodynamics.
- Heat is measured in joules. Newtons are the unit of force.
- Different materials have different specific heats (\(c\)). Using \(Q = mc\Delta T\), for the same \(m\) and \(\Delta T\), different \(c\) means different \(Q\).
- The specific heat \(c\) is defined as the amount of energy it takes to raise the temperature of \(1\space kg\) of a material \(1\space K\) (or \(1^{\circ}C\)) (\(Q=mc\Delta T\), when \(m = 1\space kg\) and \(\Delta T=1\space K\), \(Q = c\)).
- Water has a relatively high specific heat (\(c_{water}=4200\space J/(kg\cdot K)\)).
- From \(Q = mc\Delta T\), for a given \(Q\) and \(m\), a higher \(c\) means a smaller \(\Delta T\).
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