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xlviii  INDEX

           LaPlace transformation, 382       Macroions
             equation, 392                     effect upon a solvent, 191
             explained, 383                    partial molar volumes,  192
             partial differential to  total  differential,  Mammantov, and “the cutting edge of technol-
                  385                              ogy,” 1
             schematized, 393                Marinelli and Squire, successive molecules
           LaPlace transforms                      added to hydration shell, 150
             of a constant, 584              Materials, and surfaces, 6
             and dependence with concentration of time  Mayer’s
                  and distance, 404            helpful stratagem, 317
             tabulated, 384                    theory, 316
             and the treatment of constant flux, 398  compared with  that of Debye and  Hückel,
           Lattice, a thermal loosening, 602        327
           Lee and Tai                         virial coefficient approach, to ionic solu-
             doubtful assumptions, 112             tions, 317
             significant contribution to ionic entropies,  McMillan–Mayer theory, 316
                  111                        MD and Monte Carlo: are they just answer get-
           Lee and Wheaton, their contributions to con-  ters?, 322
                  ductance theory, 523       Mean activity coefficients, their theory, 345
           Leonard–Jones equation, 45        Mean jump distance, 464
           Levesqe, and autocorrelation functions, 417  a structural question, 412
           Life time,                        Mean square distance, traveled in time t, 374
             of complex ions, in molten salts, 699  Mechanistic thoughts, on dielectric breakdown,
             of holes, in molten salts, 676         181
             of water in hydration shells, 83  Melting points
           Ligands, dependence of hydration quantities,  of inorganic salts, 604
                  96                           of tetraalkylammonium chlorides, 724
           Lin, and waste disposal in molten salts, 719  Metabolism
           Linearization, of the Boltzmann  equation,  and fuel  cells, 24
                  237                          a speculative model, 24
           Linearized Poisson–Boltzmann equation, solu-  Metal oxide, and silica atom, interactions, in
                  tion to,  239                    silica networks, 734
           Liquids, various properties, tabulated, 606  Methanol oxidation, and the spectra therefrom,
           Liquid ammonia, the preferred nonaqueous sol-  21
                  vent, 543                  Migration of ions
           Liquid electrolytes                 how it happens, 441
             ionic  liquids, 603               independent, 440
             at room temperature, 720        Mitochondrion, and a model for the energy ex-
           Liquid oxide electrolytes, 726          change in biology, 25
           Liquid silica,                    Mobilities,  related to  diffusion  coefficients,
             and fused salts, transport processes, com-  450
                  pared, 732                 Mobility
             the effect of ionic additions,  734  absolute, 445
           Liquid silicates                    of electrons, in molten salts, 716
             conductance, 730                  of ions, 444
             and the effect of pressure on  structure, 750  from Stokes’ law, 455
             and the ring anions, 743        Model, for activity coefficients, finite sized
             in spectroscopy, 746                  ions, 280
           Lodge’s experiment, 493           Model calculations, for hydration heats, 114
           Lynntech, a leading electrochemical company,  Modeling approaches, to conceptual structures
                  32                               of molten salts, 632
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