very little, but they move. :D
Liquid water molecules have more kinetic energy and are moving more freely than ice molecules, which are in a more ordered and rigid structure. As a result, liquid water flows more easily compared to ice, which is more solid and less fluid.
The amount of water can affect the rate at which ice melts due to the transfer of thermal energy. More water means more molecules available to transfer their energy to the ice, causing it to melt faster. However, the overall mass of the ice and its melting point will remain constant regardless of the amount of water present.
The movement of glacial ice is called glaciation or glacial flow. Glaciers move due to the force of gravity and the deformation of the ice under pressure. This movement can result in the formation of features like moraines, crevasses, and glacial valleys.
When molecules exchange places, they undergo a process known as diffusion. Diffusion is the movement of molecules from an area of high concentration to an area of low concentration until equilibrium is reached. This movement allows molecules to mix and redistribute throughout a space.
Yes, mass movement can be caused by ice. For example, glaciers can erode and carry large amounts of soil and rock downhill, leading to mass movement such as landslides and rockfalls. Additionally, when ice within rock fractures melts and refreezes, it can cause the rock to weaken, making it more susceptible to mass movement.
It has a different amount of space between molecules
It has a different amount of space between molecules.
Ice has the least amount of kinetic energy among the options provided. This is because the molecules in ice are in a solid state, tightly packed and vibrating in place, resulting in lower kinetic energy compared to the more mobile molecules in water vapor, skin, or air. Water vapor, being in a gaseous state, has the highest kinetic energy due to the rapid movement of its molecules.
heat.
heat.
Liquid water molecules have more kinetic energy and are moving more freely than ice molecules, which are in a more ordered and rigid structure. As a result, liquid water flows more easily compared to ice, which is more solid and less fluid.
in the solid state of water {ice} the molecules are well orderly arranged .as thermal energy decreases the freedom for movement of molecules are affected. Thus when temperature increases the thermal energy of molecules increasesand they began to move in random motion. that is the melting of ice.
The large amount of heat required to melt ice and boil water is due to the energy needed to break the intermolecular bonds that hold the water molecules together in a solid or liquid state. This process absorbs energy and increases the temperature until the phase change is complete.
A fixed amount of water tends to have the least amount of kinetic energy in its solid state, as the molecules are tightly packed and have limited movement. This is why ice has lower kinetic energy compared to liquid water or water vapor.
The velocity of ice movement is primarily controlled by factors such as the slope of the glacier, the amount of snowfall or ice accumulation, temperature, and the presence of liquid water at the base of the glacier that acts as a lubricant. These factors can either speed up or slow down the movement of the ice.
In ice, water molecules are arranged in a crystalline structure, where they are held together by hydrogen bonds. This arrangement restricts their movement, causing the molecules to vibrate in fixed positions rather than move freely. As a result, water molecules in ice maintain a relatively stable and organized structure, which is why ice is solid and less dense than liquid water.
Ice is less dense than water because its molecules are arranged in a crystalline lattice structure, which causes it to take up more space compared to the same amount of water molecules in liquid form. This is why ice floats on water.