Thermal conductivity affects rocks by determining how quickly heat is conducted through them. Rocks with high thermal conductivity, such as igneous rocks, conduct heat well and can quickly transfer heat away from an area. This property can influence the temperature distribution within rocks and their response to changing thermal conditions.
No, thermal energy does not affect mass. Mass is a measure of the amount of matter an object contains, while thermal energy is a measure of the internal energy of an object due to the movement of its particles.
Yes, the number of particles in an object does affect its thermal energy, as thermal energy is directly proportional to the number of particles. However, the number of particles does not affect its temperature, as temperature is a measure of the average kinetic energy of the particles.
Two things that affect thermal energy are the temperature of an object and its mass. Higher temperatures usually indicate higher thermal energy, while mass influences how much heat energy is required to raise the temperature of an object.
Yes, size and temperature both affect thermal energy. Larger objects typically have more thermal energy due to the increased number of particles in the object. Higher temperatures also result in higher thermal energy as particles have more kinetic energy.
raising of object temperature, the mass, specific heat
No, thermal energy does not affect mass. Mass is a measure of the amount of matter an object contains, while thermal energy is a measure of the internal energy of an object due to the movement of its particles.
the rocks is wet
Thermal energy -apex (:
Rocks formed from thermal metamorphism are very hard. An example is hornfels. Just search thermal metamorphism and/or hornfels and you'll see some nice explanations on the web.
Thermal energy is heat. More heat is more thermal energy.
Thermal expansion can cause rocks to crack and break apart due to the stress caused by the expansion and contraction of minerals within the rock. This can lead to the weathering and breakage of rocks over time. Additionally, variations in temperature can cause rocks to expand and contract at different rates, leading to the development of fractures and joints in the rock.
Thermal energy -apex (:
Wind and water can affect rocks by carrying them around and eroding the rocks by such pressure
How does an increase in the total energy of the particles in a substance affect the thermal energy of the substance.
Thermal energy -apex (:
Thermal energy -apex (:
Thermal energy -apex (: