Densities of Aromatic Hydrocarbons (Landolt-Bornstein, by K.R. Hall, K.N. Marsh, R.C. Wilhoit, X. Hong, M. Frenkel

By K.R. Hall, K.N. Marsh, R.C. Wilhoit, X. Hong, M. Frenkel

Facts at the densities of natural compounds are crucial for either medical and business functions. wisdom of densities is necessary in lots of parts, together with custody move of fabrics, product specification, improvement of varied predictive tools, and for characterizing compounds and estimating their purity. The densities of fragrant hydrocarbons have been accumulated from the unique literature released from 1870 to early 1997 and severely evaluated. The tables comprise the unique literature info besides their expected uncertainties, and the evaluated info, in either numerical shape and as coefficients to equations with chosen statistical info. the quantity additionally comprises the CASR quantity Index, a Chemical identify Index and a CD-ROM which permits quickly complete textual content index seek.

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The symbols show the deviation of the calculated from the experimental values from Table 2. The curves above and below the zero line indicate the calculated error region of the recommended values given in Table 3. The error bars represent the experimental errors. ) cont. ) Table 3. 75(1 - T/Tc)][ρc + A(Tc -T ) + B(Tc - T )2 + C(Tc - T )3 + D(Tc - T )4] ). 19 8 Table 1. Coefficients of the polynomial expansion equation. 2505 · 10-1 (combined temperature ranges, unweighted). 57988 · 10-1 Coefficient A B Table 2.

01 92-ano-31) 92-ano-31) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 93-gar/ban1) 93-gar/ban1) 93-gar/ban(✕ ) 93-gar/ban1) 93-gar/ban(✕ ) 93-gar/ban(✕ ) 93-gar/ban(✕ ) 93-gar/ban(✕ ) 93-gar/ban(✕ ) 93-gar/ban(✕ ) 93-gar/ban(✕ ) 93-gar/ban(✕ ) Not included in Fig. 1. Further references: [1883-sch-3, 1884-gla, 1884-sch-6, 1886-bru, 1891-gla, 1892-lan/jah, 1894-tho/rod1, 1896-per, 02-pat, 08-ric/mat, 12-mor/dag, 12-wal/swi, 13-haw, 14-kre/mei, 14-kre/mei-2, 19-von, 24mil, 26-mat, 28-ric/rob, 29-ham/and, 30-fis/kle, 30-tim/hen, 31-dec, 32-gri/kof, 32-hei, 32-hof/lan, 32whi/ros, 32-zel/mar, 33-azi/bha, 35-mil, 36-mar-1, 36-mas, 37-loz/dya, 39-gro/wac, 40-ano, 42-gei, 43ano, 43-ano-2, 43-ham/mca, 44-ano, 44-ano-2, 44-can, 44-sch, 46-gei/can, 48-rey/ebe, 49-foe/fen, 49vve/tak, 50-nic/hei, 50-par/gol, 50-tei/gor, 51-ano, 53-par/cha, 55-cut/jon, 56-ano, 57-pet/smy, 60-fro/shr, 61-sch/sau, 63-plu/dow, 65-shr/pec-1, 67-seu/mor, 69-rod/hsu, 70-gal, 74-jai/nor, 75-mil/wac, 79-kri/sre, 80-cha/ses, 80-pit/sur, 83-gop/rao, 86-osh/han, 86-tar/dia-1, 87-dah/dag, 88-jas/nag, 90-ser/sil, 91-ric/lau, 92-qin/hof, 93-hai/guo, 94-sha/sin, 94-sin/kal, 95-aic/jun, 95-hai/cha, 95-hai/min-1, 95-toj/dia].

30 ρexp − ρcalc Ref. (Symbol in Fig. 40 ρexp − ρcalc Ref. (Symbol in Fig. 20 1887-neu(✕ ) 1887-neu(✕ ) 1887-neu(✕ ) 1887-neu(✕ ) 1887-neu(✕ ) 1887-neu(✕ ) 14-tyr1) 14-tyr1) 14-tyr1) Not included in Fig. 1. cont. 1 Alkylbenzenes (CnH2n-6), C6 - C10 29 Table 2. 30 ρexp − ρcalc Ref. (Symbol in Fig. 15 ρexp − ρcalc Ref. (Symbol kg ⋅ m−3 in Fig. 03 65-shr/pec1) 65-shr/pec1) 65-shr/pec1) 65-shr/pec(✕ ) 65-shr/pec(✕ ) 65-shr/pec1) 72-hal/tow1) 72-hal/tow1) 72-hal/tow1) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow(◆) 72-hal/tow1) 72-hal/tow1) 85-alm/aww( ) 88-dah/sin-1(∆) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) 92-ano-3(✕ ) { Not included in Fig.

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