Breaking the hydrogen bonds that maintain water
pChanges in bonding arrangements between atoms and molecules result in absorption or release of heat (called latent heat). For example when water freezes, some heat is extracted to the environment, and the temperature does not fall until all is frozen. After that further removal of heat causes the temperature to fall below freezing point.
Latent heat is the energy absorbed or released by a substance during a phase change without a change in temperature.
Latent heat is the amount of energy absorbed or released by a substance during a phase change without a change in temperature. For example, when ice melts into water, it absorbs latent heat, and when water freezes into ice, it releases latent heat. This energy is crucial for processes such as melting, freezing, boiling, and condensing, as it facilitates the transition between solid, liquid, and gas states.
the answer is latent Latent heat is correct, but specifically the latent heat of evaporation of (whatever is evaporated, in this case water) water. When the evaporated water condenses, it releases this latent heat as it precipitates, which is why it tends to feel warmer during rainstorms (unless the water is running down your neck in which case it feels horrible).
Latent heat- the amount of heat required by a system/ substance to change phase. It's also heat absorbed or radiated during a change of phase at a constant temperature and pressure.
pChanges in bonding arrangements between atoms and molecules result in absorption or release of heat (called latent heat). For example when water freezes, some heat is extracted to the environment, and the temperature does not fall until all is frozen. After that further removal of heat causes the temperature to fall below freezing point.
Latent heat is the energy absorbed or released by a substance during a phase change without a change in temperature.
"Latent heat" refers to the heat energy absorbed or released during a change of state without a change in temperature. For example, when ice melts into water, heat is absorbed from the surroundings without a rise in temperature, which is the latent heat of fusion. Similarly, when water vapor condenses into liquid water, heat is released without a decrease in temperature, known as the latent heat of condensation.
The energy absorbed and stored in vaporous molecules is referred to as latent heat. This represents the energy required to change the state of a substance without a change in temperature, such as during the process of evaporation or condensation.
The heat absorbed when a solid liquefies is called latent heat of fusion. This heat is used to break the bonds between the solid particles, allowing them to move freely and change from a solid to a liquid state.
No, latent heat cannot be measured directly with a thermometer. Latent heat is the energy absorbed or released during a phase change (e.g. melting, boiling) without a change in temperature. The amount of latent heat can be calculated using specific equations and constants for each substance.
When water condenses, it changes from a gas to a liquid, releasing latent heat in the process. This latent heat, which was absorbed during evaporation, is now released back into the surroundings, raising the temperature of the surrounding environment.
Latent heat is the energy absorbed or released during a phase change without a change in temperature. It is classified into two types: latent heat of fusion, which is the energy involved in changing a substance from solid to liquid or vice versa, and latent heat of vaporization, which is the energy associated with changing a substance from liquid to gas or vice versa. These energy levels vary depending on the substance and the phase change involved.
Latent heat
Ice cream feels cooler to our teeth than ice cold water because during the change of state some amount of heat is absorbed which is known as Latent Heat. So in ice no hidden heat is absorbed while in cool water latent heat of fusion or melting is absorbed.
When ice thaws, the latent heat that was absorbed during the freezing process is released back into the surroundings. This heat energy is used to break the bonds holding the water molecules in the solid ice structure, allowing them to move more freely and transition into liquid form.
Energy is absorbed when water changes state from a solid to a liquid to a gas. This energy is used to break the bonds between water molecules during melting and vaporization. It is known as the latent heat of fusion and latent heat of vaporization, respectively.