The relationship between hydrogen bonding and water's specific heat capacity?

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Multiple Choice

The relationship between hydrogen bonding and water's specific heat capacity?

Explanation:
Hydrogen bonding gives water a heat-absorbing network. When heat is added, energy first goes into weakening, breaking, and rearranging the hydrogen-bonded structure rather than immediately increasing the molecules’ kinetic energy. Because water forms a dense, dynamic network of hydrogen bonds, a lot of energy is required to raise its temperature, which makes its specific heat capacity high. So, more hydrogen bonds mean more energy can be stored before the temperature rises, which is why the statement that more hydrogen bonds lead to a higher specific heat capacity is the best fit. If there were fewer bonds, less energy would be needed to raise the temperature, leading to a lower specific heat.

Hydrogen bonding gives water a heat-absorbing network. When heat is added, energy first goes into weakening, breaking, and rearranging the hydrogen-bonded structure rather than immediately increasing the molecules’ kinetic energy. Because water forms a dense, dynamic network of hydrogen bonds, a lot of energy is required to raise its temperature, which makes its specific heat capacity high. So, more hydrogen bonds mean more energy can be stored before the temperature rises, which is why the statement that more hydrogen bonds lead to a higher specific heat capacity is the best fit. If there were fewer bonds, less energy would be needed to raise the temperature, leading to a lower specific heat.