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A Comprehensive Treatise on Inorganic and Theoretical Chemistry

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588 GENERAL INDEX<br />

Ir<strong>on</strong> germanium alloys, 13. 576<br />

glance, 8. 86O ; 12. 53O<br />

glass, acti<strong>on</strong>, 13. 364<br />

glycerol sol, 12. 77«<br />

gold alloys, 13. 540<br />

growth of cast, 13. 142<br />

gymnite, 3« 423<br />

Hall effect, 18. 234<br />

hardness, 13. 14<br />

abrasive, 18. 26<br />

—— heat i<strong>on</strong>izati<strong>on</strong>, 13. 205<br />

— of fusi<strong>on</strong>, 13. 157<br />

-- — • vaporizati<strong>on</strong>, 13. 158<br />

helium, acti<strong>on</strong> of, 13. 297<br />

homiarsenide, 9. 72<br />

hemiboride, 5. 31<br />

hemiearbide, 5. 896<br />

— hemiceride, 13. 557<br />

hemichromido, 18. 587<br />

homimolybdido, 13. 619<br />

heminitride, 8. 133<br />

hemioxide, 13. 702<br />

-—•— hemipentaluminide, 13. 551<br />

_ -— hemipentasilicide, 13. 561<br />

hemipentoxide, 13. 926<br />

hemiphosphide, 8. 856<br />

hemiselenide, 10. 799<br />

hemisilicide, 6. 199<br />

homistannido, 13. 576<br />

hemitriphosphide, 8. 857<br />

hemitriselenide, 10. 799<br />

hemitrisilicide, 6. 200<br />

hemitristannido, 13. 576<br />

homitungstido, 13. 627<br />

heptazincide, 13. 544<br />

hexaboratodiiodide, 5. 141<br />

hexahydride, 13. 309<br />

•—— hexastannide, 13. 576<br />

- —— hoxitacarbide, 5. 896<br />

hexitaceride, 13. 558<br />

hexitaphosphide, 8. 855<br />

history, 12. 482<br />

hydrazine, acti<strong>on</strong>, 13. 342<br />

-— hydrazoic acid, acti<strong>on</strong>, 13. 342<br />

hydride, 13. 309<br />

hydriodic acid, acti<strong>on</strong> of, 13. 314<br />

hydrobromic acid, acti<strong>on</strong> of, 13. 314<br />

hydrocarb<strong>on</strong>s, acti<strong>on</strong>, 13. 354<br />

hydrochloric acid, acti<strong>on</strong> of, 13. 314<br />

——— hydrofluoric acid, acti<strong>on</strong> of, 13. 314<br />

hydrogen, acti<strong>on</strong> of, 13. 297<br />

chloride, acti<strong>on</strong> of, 13. 314<br />

dioxide, acti<strong>on</strong> of, 18. 313<br />

fluoride, acti<strong>on</strong> of, 13. 314<br />

overvoltage, 13. 223<br />

selenide, acti<strong>on</strong>, 18. 336<br />

siilphide, acti<strong>on</strong>, 13. 326<br />

telluride, acti<strong>on</strong>, 18. 336<br />

hydrosol, 12. 769<br />

hydroxides of metal, acti<strong>on</strong>, 18. 365,<br />

366, 367<br />

hypochlorous acid, acti<strong>on</strong>, 18. 321<br />

hypophosphate, 8. 939<br />

hysteresis loss, 18. 259<br />

(magnetic), 18. 259<br />

imides, acti<strong>on</strong>, 18. 342<br />

impact strains, effect <strong>on</strong> corrosi<strong>on</strong>, 13.<br />

466<br />

test, 13. 78<br />

index of refracti<strong>on</strong>, 13. 170<br />

Ir<strong>on</strong> ingot, 12. 7IO<br />

• intermetallic compounds, 13. 526<br />

internal fricti<strong>on</strong>, 18. 28<br />

pressure, 13. 27<br />

iodic acid, acti<strong>on</strong>, 13. 321<br />

iodides, 14. 127<br />

—— iodine, acti<strong>on</strong> of, 18. 314<br />

— i<strong>on</strong>izati<strong>on</strong> energy, 13. 205<br />

._ — iridium alloy, 15. 750<br />

isotopes, 13. 496<br />

Joule effect, 13. 278<br />

Kerr effect, 18. 173<br />

knebelite, 6. 908<br />

knobbled .charcoal, 12. 709<br />

lag, 13. 68<br />

lanthanum alloy, 13. 557<br />

__ — lead alloys, 13. 579<br />

hydroxysulphatarsenate, 9. 334<br />

potassium nitrite, 8. 501<br />

I*educ effect, 13. 236<br />

limit of proporti<strong>on</strong>, 13. 68<br />

restituti<strong>on</strong>, 13. 68<br />

liquor, 14. 386<br />

— lithium nitride, acti<strong>on</strong>, 13. 342<br />

luminescence spectrum, 13. 176<br />

magnesia spinel, 5. 154, 297<br />

-- magnesium alloy, 13. 543<br />

zinc alloys, 13. 545<br />

magnetic hardness, 13. 259<br />

-- -— properties, 13. 135, 244<br />

— _ viscosity, 13. 259<br />

—— magnetostricti<strong>on</strong>, 13. 278<br />

manganese alloy, 13. 644<br />

- — aluminium alloys, 13. 667<br />

carbide, 13. 648<br />

chromium-nickel alloys, 15. 330<br />

— copper alloys, 13. 666 .<br />

molybdenum alloys, 13. 668<br />

— tritasilicide, 6. 199<br />

—— - tungsten alloys, 13. 668<br />

uranium alloys, 13. 668<br />

vanadium alloys, 13. 668<br />

manganiferous ores, 12. 15O<br />

Matteucci effect, 13. 278<br />

— mechanical properties, 13. 1, 34<br />

molting point, 13. 155<br />

-- - mercury alloys, 13. 545<br />

_ .— tin alloys, 13. 579<br />

metal acti<strong>on</strong>, 13. 364<br />

salts, acti<strong>on</strong>, 13. 367, 368, 369,<br />

37O, 371<br />

meteoric, 15. 260<br />

cubic, 15. 261<br />

octahedral, 15. 261<br />

methane, acti<strong>on</strong>, 13. 353<br />

microstructure, 12. 791<br />

mirrors, 12. 769<br />

modulus of transverse elasticity, 13. 76<br />

molecular fricti<strong>on</strong>, 13. 28<br />

molybdenum alloy, 18. 617<br />

carbide, 13. 619<br />

manganese-nickel alloys, 15. 330<br />

tritacarbide, 13. 620<br />

tungsten alloys, 18. 643<br />

vanadium alloys, 13. 626<br />

molybdide, 13. 618<br />

m<strong>on</strong>antim<strong>on</strong>ide, 9. 412<br />

m<strong>on</strong>arsenide, 9. 72<br />

m<strong>on</strong>oboride, 5. 30.<br />

m<strong>on</strong>ophosphide, 8. 857

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