Interpretation:
The heat required to convert
Concept Introduction:
Specific heat of a substance refers to the quantity of heat per unit mass of substance that rises the temperature of the substance by one degree Celsius. The quantity of heat added and the specific heat is related as follows –
Molar heat of vaporization is the heat energy required to boil one mole of a substance at its boiling point.
Molar heat of fusion is the heat energy required to melt one mole of the substance at its melting point.
Answer to Problem 12.65QP
The heat required to convert
Explanation of Solution
The ice is warmed from
Mass of water is converted to number of moles. The heat required to convert one mole of ice to liquid water at its melting point is known which is termed as molar heat of fusion. The number of water in given mass of ice (water) is obtained by multiplying with the standard value.
Water is heated from its melting point
Mass of water is converted to number of moles. The heat required to convert one mole of water to steam at its boiling point is known which is termed as molar heat of vaporization. The number of water in given mass of ice (water) is obtained by multiplying with the standard value. Hence calculate the heat required to convert
We know,
The temperature of steam has to be risen from
The total heat energy utilized to convert
The heat required to convert
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Chapter 12 Solutions
Chemistry: Atoms First
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- Print Last Name, First Name Initial Statifically more chances to abstract one of these 6H 11. (10pts total) Consider the radical chlorination of 1,3-diethylcyclohexane depicted below. 4 4th total • 6H total 래 • 4H total 21 total ZH 2H Statistical H < 3° C-H weakest - product abstraction here bund leads to thermo favored a) (6pts) How many unique mono-chlorinated products can be formed and what are the structures for the thermodynamically and statistically favored products? Product 6 Number of Unique Mono-Chlorinated Products Thermodynamically Favored Product Statistically Favored Product b) (4pts) Draw the arrow pushing mechanism for the FIRST propagation step (p-1) for the formation of the thermodynamically favored product. Only draw the p-1 step. You do not need to include lone pairs of electrons. No enthalpy calculation necessary H H-Cl Waterfoxarrow_forward10. (5pts) Provide the complete arrow pushing mechanism for the chemical transformation → depicted below Use proper curved arrow notation that explicitly illustrates all bonds being broken, and all bonds formed in the transformation. Also, be sure to include all lone pairs and formal charges on all atoms involved in the flow of electrons. CH3O II HA H CH3O-H H ①arrow_forwardDo the Lone Pairs get added bc its valence e's are a total of 6 for oxygen and that completes it or due to other reasons. How do we know the particular indication of such.arrow_forward
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