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In most substances, as you solidify the product by cooling, its density rises (that is - it gets heavier). Water has a density inversion point, so ice is actually lighter than water - this is due to the way the molecules rearrange within the ice relative to the way they are packed together in the water.


Hydrogen bonding in water molecules is quite strong (in the liquid phase) so the water is sort of "compacted" by this force - pulled together more tightly.

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Q: How do water's relative densities as a solid and a liquid from that of most other substances?
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How does waters relative densities as a solid and a liquid differ from that of most other substances?

Water has a lower density as a solid than it does as a liquid. In the vast majority of substances are denser as solids than as liquids.


How do waters relative densities as a solid and a liquid from that of most other substances?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relative densities as a solid and a liquid differ from that most other substances?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relative densities as a solid and liquid differ from that of most other substances?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relative densities as a solid and liquid differ from that of most other substance?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relative densities as a solid and a liquid differ from that of most other substance?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relative densities as solid and a liquid differ from that of most other substance?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relatives densities as a solid and a liquid differ from that of most other substances?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


How do waters relative as a solid and a liquid differ from that of most other substances?

The solid state of water is less dense than its liquid state, which is why ice floats on water. The solid state of nearly all other substances is more dense than the liquid state and sinks in the liquid state.


What substances can be separated by evaporation?

For example a solid from a liquid; evaporation of water from sea waters give salt.


What is the removal from soil of substances that can be dissolved in waters called?

The answer is infiltration


Why do different plastics separate like oil and water?

because they have different densities. waters density is 1.000 and plastic is 3.842