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A Comprehensive Treatise on Inorganic and Theoretical Chemistry

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59O GENERAL, INDEX<br />

Ir<strong>on</strong>, reacti<strong>on</strong>s of analytical interest, 13. 371<br />

recovery, 13. 68<br />

reflecting power, 13. 171<br />

— refracti<strong>on</strong> equivalents, 13. 171<br />

reluctivity, 13. 259<br />

residual rays, 13. 176<br />

rhodium alloys, 15. 565<br />

rigidity, 18. 74<br />

rust, 13. 890<br />

rusting effect acidity, 13. 436<br />

aerati<strong>on</strong>, 18. 421<br />

H*-i<strong>on</strong> c<strong>on</strong>e, 18. 436<br />

oxygen, 13. 427<br />

ruthenium alloys, 15. 5IO<br />

scale, 13. 734<br />

Scythian, 12. 499<br />

selenic acid, acti<strong>on</strong>, 18. 335<br />

selenium, acti<strong>on</strong>, 18. 335<br />

___ m<strong>on</strong>obromide, acti<strong>on</strong>, 13. 336<br />

— m<strong>on</strong>oehloride, acti<strong>on</strong>, 13. 336<br />

oxybromide, acti<strong>on</strong>, 13. 336<br />

sensitiveness of spectrum, 13. 176<br />

series spectra, 18. 177<br />

sesquicarbide, 5. 894<br />

sesquioxide, 13. 775<br />

sesquiphosphide, 8. 857<br />

shearing stress, 13. 72<br />

- — shock test, 18. 78<br />

silicates, 6. 905<br />

of metals, acti<strong>on</strong>, 13. 364<br />

silicide, 18. 561<br />

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

alloys, 18. 658<br />

tetrachloride, acti<strong>on</strong>, 18. 364<br />

silver alloys, IS. 359, 539<br />

copper alloys, 18. 540<br />

nitrate, acti<strong>on</strong>, 13- 346<br />

selenide, 10. 80O<br />

sinter, 9. 227 ; 12. 530 ; 13. 889<br />

arsenical, 9. 227<br />

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

Bodium alloys, 13. 526<br />

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

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

hypochlorite, acti<strong>on</strong>, 13. 321<br />

—___ persulphate, acti<strong>on</strong>, 13. 335<br />

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

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

thiosulphate, acti<strong>on</strong>, 18. 335<br />

xanthate, acti<strong>on</strong>, 18. 326<br />

solar spectrum, 13. 176<br />

solubility of hydrogen, 1. 305, 306<br />

soluti<strong>on</strong> pressure, 18. 221<br />

spark spectrum, 13. 174<br />

specific cohesi<strong>on</strong>, 13. 27<br />

gravity, 18. 1<br />

heat, 18. 150<br />

volume, 18. 11<br />

speotrum-arc, 13. 175<br />

flame, 18. 173<br />

luminescence, 13. 176<br />

sensitiveness of, 13. 176<br />

solar, 13. 176<br />

spark, 13. 174<br />

ultra-red, 18. 176<br />

ultra-violet, 13. 176<br />

spinel, 4. 251 ; 5. 54<br />

sp<strong>on</strong>gy, 12. 635, 767<br />

stannic chloride, acti<strong>on</strong>, 13. 364<br />

stannide, IS. 576<br />

Ir<strong>on</strong> stark effect, 18. 176<br />

starvati<strong>on</strong>, 18. 376<br />

stellar spectra, 13. 177<br />

str<strong>on</strong>tium alloys, 18. 541<br />

subcarbide, 5. 896<br />

subsulphides, 14. 138<br />

sulphides, 14. 136, 199<br />

sulphur, acti<strong>on</strong>, 18. 32<br />

dioxide, acti<strong>on</strong>, 18. 327<br />

m<strong>on</strong>oehloride, acti<strong>on</strong>, 18. 327<br />

sulphuric acid, acti<strong>on</strong> of, 13. 328<br />

sulphurous acid, acti<strong>on</strong>, 18. 327<br />

sulphuryl chloride, acti<strong>on</strong>, IS. 328<br />

fluoride, acti<strong>on</strong>, 18. 327<br />

surface tensi<strong>on</strong>, 13. 27<br />

Swedish, 12. 708<br />

—— synthetic, 12. 635<br />

tantalum alloy, 18. 585<br />

tarnishing in air, 18. 451<br />

tellurium, acti<strong>on</strong>, 18. 335<br />

tensile strains, effect <strong>on</strong> corrosi<strong>on</strong>, 18.<br />

465<br />

strength, 13. 35<br />

tetracarb<strong>on</strong>yl, 5. 96O<br />

tetrapentitarsenide, 9. 73<br />

tetrarsenide, 9. 73<br />

tetratriantim<strong>on</strong>ide, 9. 412<br />

tetratritaphosphide, 8. 857<br />

tetritacarbide, 5. 894, 895<br />

— tetritaluminide, 13. 550<br />

tetritanitride, 8. 133<br />

tetritapentastannide, 18. 576<br />

tetritaphosphide, 8. 855<br />

tetritastannide, 18. 576<br />

tetritoxide, 13. 702<br />

tetroxide, 13. 702, 936<br />

thallium alloys, 18. 557<br />

thermal changes during transformati<strong>on</strong>s,<br />

13. 159<br />

limit, 13. 68<br />

— properties, IS. 130<br />

thermoelectric force, 13. 229<br />

thin filaments, 12. 769<br />

thiocarb<strong>on</strong>ate hexammine, 6. 129<br />

— thiohypophosphate, 8. 1064<br />

thi<strong>on</strong>yl chloride, acti<strong>on</strong>, 13. 328<br />

Thoms<strong>on</strong> effect, 13. 173, 234<br />

tin alloys, 18. 576<br />

bismuth alloys, 13. 579<br />

titanium alloys, 18. 571<br />

fluoride, acti<strong>on</strong>, 18. 364<br />

- _ nitride, acti<strong>on</strong>, 13. 34O<br />

tetrachloride, acti<strong>on</strong>, 18. 364<br />

vanadium alloys, 13. 585<br />

torsi<strong>on</strong> modulus, 18. 74<br />

torsi<strong>on</strong>al strain, effect <strong>on</strong> corrosi<strong>on</strong>, 13.<br />

465<br />

stress, 13. 72<br />

— tourmalines, 6. 741 ; 12. 530<br />

transformati<strong>on</strong> points, 18. 158<br />

heat of, 13. 159<br />

thermal changes during, 13. 159<br />

transport number, 18. 206<br />

transverse strength, 18. 71<br />

trialuminide, 18. 55O<br />

triamidodiphosphate, 8. 712<br />

triantim<strong>on</strong>ide, 9. 412<br />

triboelectrio effect, 18. 205<br />

triboelectricity, 18. 189<br />

tricarbide, 5. 894

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