Question 10. Question 10 (1 point) There is extensive H-bonding between water mo
ID: 185202 • Letter: Q
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Question 10. Question 10 (1 point) There is extensive H-bonding between water molecules in liquid water. This means that cohesion between water molecules leads to high surface tension on bodies of water be suspended. on which some plants and insects can Solid water (ice) is less dense than liquid water: ice floats! cohesion between water molecules explains how water gets from the roots of a plant to its upper branches, without a pump of any kind water molecules are locked tightly together, H-bonds are very difficult to make and break. water is resistant to temperature changes: it can absorb a lot of energy without major temperature increases or phase change to gas (steam). SaveExplanation / Answer
a. Yes, the cohesion between water molecule leads to high surface tension on bodies of water on which some plants and insects suspended due to hydrogen bonding and that creates the surface tension and insects they walk on rafts of hydrogen bonds present in water
b. Yes, Solid water is less dense than liquid water that's why the ice floats on water because the ice has an open lattice with hydrogen bonds holding the water molecules apart when the ice forms but in the liquid water, water molecules arrange themselves into an orderly pattern and hydrogen bonds form between the molecules leads to more denser than ice.
c. Cohesion between water molecules leads to the formation of hydrogen bonding and creates adhesion and capillary actions due to that water can move from bottom to upper branches in plants
d. Yes, they are locked tightly together with hydrogen bonds very difficult to make or break
e. Water molecules are resistance to temperature because of high heat specific capacity and high heat of vaporization it absorbs more energy without major temperature change.
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