By Maria E. Gamboa-Adelco, Robert J. Gale (auth.)
It has been constantly an incentive for college students to discover even if his/her efforts to resolve routines supply right effects, or to discover guidance for difficulties that he/she reveals more challenging. those are the most purposes for the looks of the current ebook. As a part of the textbook ModernElectrochemistry 1: Ionics, A consultant to difficulties in ModernElectrochemistry: half 1: Ionics compiles some of the strategies to the routines and difficulties awarded within the textual content, in addition to many new problems.
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Extra resources for A Guide to Problems in Modern Electrochemistry: 1: Ionics
3. 34. f = 1. 86D See Fig. 3(c). Comment This problem follows the 1933 Bernal and Fowler approach, which is still very appreciable. , quadrupole ones, have been proposed in latter years. 35 (a) Using data for the solution enthalpy (Allso/n ) and lattice enthalpy (AIl/alike = -Lsub) in the Table below, calculate the hydration heats for various alkali halides (AIls). Comment on the possible source of major error. (b) Using cation radii data, explain the trend and the sign of AIlso/n. What is the driving force of the solution process when AIlsoin > O?
6 kJ mol -I. Calculate the quadrupole moment of water at 298 K. (Cf. f. Eq. :. 18 Evaluate the heat of solvation for the ions K+, Ca+2, F, and cr on terms of the ion-dipole approach. Neglect the quadrupole effect of water. ilS6 KI. (Cf. 356K-I Answer: The heat of solvation for cations expressed in the mksa system is (cf. Eq. 7 kJ mOrl. The heat of solvation for F- and cr can be obtained from a similar equation, Eq. 0 kJ mor l, respectively. 19 Calculate the differences of the heat of hydrations when using the ionquadrupole model or the ion-dipole model for the ions K+, Ca+ 2, F, and Cr.
95. 30)] = 56. 33 For a given water molecule, what is the maximum number of hydrogen bonds that can be form with other neighboring water molecules? Are these hydrogen bonds identical in bonding nature? Explain. If there were a difference in bonding nature for these hydrogen bonds, how would you differentiate them experimentally? The word maximum is emphasized because in liquid state the actual number of hydrogen bonds per molecule is less. Even in the crystal ice-II there are dangling hydrogen atoms that do not participate in hydrogen bonding.