WebJan 30, 2024 · H-H bonds: 436 kJ/mol I-I bonds: 151 kJ/mol The sum of enthalpies on the reaction side is: 436 kJ/mole + 151 kJ/mole = 587 kJ/mol. This is how much energy is needed to break the bonds on the reactant side. Then we look at the bond formation which is on the product side: 2 mol H-I bonds: 297 kJ/mol The sum of enthalpies on the product … WebSpecific heat, heat of vaporization, and density of water: Water has a high heat capacity and heat of vaporization, and ice—solid water—is less dense than liquid water. Water owes these unique properties to the polarity of its molecules and, specifically, to their ability to form …
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WebSep 10, 2024 · 0 What I know is that water's high specific heat capacity is due to its strong Hydrogen bonds, causing it to need much more energy for the kinetic energy of molecules … Web9.4 Strengths of Ionic and Covalent Bonds - Chemistry: Atoms First 2e OpenStax Uh-oh, there's been a glitch We're not quite sure what went wrong. Restart your browser. If this doesn't solve the problem, visit our Support Center . ac6f8a6962214a75a0dbf0c36ad39477, 6215c330e4a24605a580514cc6285eee everett inspections
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WebC) Intermolecular forces hold the atoms in molecules together. D) Dispersion forces are generally stronger than dipole-dipole forces. E) None of the above are true. A. Identify the … WebSymmetric Hydrogen Bond. This is a special type of hydrogen bond where the proton is usually placed in the middle between two identical atoms. The strength of the bond between each atom is equal. The symmetric hydrogen bond is a type of a three-centre four-electron bond. This bond is also much stronger compared to the “normal” hydrogen bond ... WebWater has high specific heat because A. it contains oxygen. B. its molecules can form hydrogen bonds with one another. C. it is found in abundance in biological systems. D. it can assume gas,... everett insurance hamilton nc