true
The statement is false. Faster-moving gas particles have greater kinetic energy, which corresponds to a higher temperature. In thermodynamics, temperature is a measure of the average kinetic energy of particles in a substance; therefore, as particle speed increases, so does the temperature.
True. In an oxidation-reduction (redox) reaction, electrons are transferred from one substance (the reducing agent) to another substance (the oxidizing agent). This transfer of electrons results in a change in oxidation states of the elements involved in the reaction.
False. The faster gas particles are moving, the greater their kinetic energy, which corresponds to a higher temperature. Temperature is a measure of the average kinetic energy of the particles in a substance, so increased speed of gas particles leads to an increase in temperature, not a decrease.
do you have homeschool that your asking this because i do and im looking for the same answer
No, not all molecules of a substance possess the average kinetic energy value. Instead, individual molecules in a substance will have a range of kinetic energies, following a distribution based on the temperature of the substance.
True. When a substance loses energy, its temperature can decrease, while when it absorbs energy, its temperature can increase. This is because energy is transferred as heat, which can lead to changes in temperature.
How hot or cold a substance is the temperature, so a thermometer will measure it.
True. In a substance, all molecules possess the average kinetic energy value because temperature is a measure of the average kinetic energy of the particles in a substance.
No. In gases, 'Absolute temperature' is proportionally related to the kinetic energy of the particles. Therefore, increase in temperature results in increase in the kinetic energy of the particles.
False. It is a measure of how much enegry a substance has.
Yes, temperature directly impacts the amount of thermal energy in a substance. As temperature increases, the kinetic energy of the particles in the substance increases, leading to a higher amount of thermal energy. Conversely, a decrease in temperature results in a lower amount of thermal energy.
False because the particles begin to go all crazy.
The statement is false. Faster-moving gas particles have greater kinetic energy, which corresponds to a higher temperature. In thermodynamics, temperature is a measure of the average kinetic energy of particles in a substance; therefore, as particle speed increases, so does the temperature.
False, the two are totally unrelated. Temperature is related to the average energy of the particles.False, the two are totally unrelated. Temperature is related to the average energy of the particles.False, the two are totally unrelated. Temperature is related to the average energy of the particles.False, the two are totally unrelated. Temperature is related to the average energy of the particles.
True. Temperature is a measure of the average kinetic energy of particles in a substance, which is associated with the heat they produce.
False. The temperature of a substance remains constant during a change in state until all of the substance has completed the phase change.
False. The density of a substance can vary depending on factors such as temperature and pressure. Additionally, impurities in a sample can also affect its density.