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`
`
`
`CRC Handbook
`of
`Chemistry and Physics
`
`A Ready-Reference Book of Chemical and Physical Data
`
`EDITION
`
`63°74
`
`Editor-in-Chief
`
`David R. Lide, Ph.D.
`FormerDirector, Standard Reference Data
`NationalInstitute of Standards and Technology
`
`Taylor & Francis
`Taylor & Francis Group
`Boca Raton London NewYork
`
`A CRCtitle, part of the Taylor & Francis imprint, a member of the
`Taylor & Francis Group, the academic division of T&F Informaplc.
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 1
`
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 1
`
`

`

`
`
`© 1974, 1975, 1976, 1977, 1978, 1979, 1980, 1981, 1982, 1983, 1984, 1985, 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996,
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`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 2
`
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 2
`
`

`

`STANDARD DENSITY OF WATER
`
`References
`
`This table gives the density p of water in the temperature range
`from 0°C to 100°C at a pressure of 101325 Pa (one standard atmo-
`sphere). From 0°C to 40°C the values are taken from the IUPAC
`publication in Reference 1 and refer to standard mean ocean water
`(SMOW), free from dissolved salts and gases. SMOW is a stan-
`dard water sample of high purity and known isotopic composi-
`tion. Methodsofcorrectingfor different isotopic compositions are
`discussed in Reference 1. The remainingvalues are taken from the
`NIST Chemistry WebBook, Reference2.
`Note that the IUPAC values refer to the IPTS-68 temperature
`scale, while the NIST values are based on the ITS-90 scale (where
`the normalboiling point is 99.974°C). The conversion between
`these scales can be found in Sec. 1. The difference between the
`scales leadsto a differencein the density of water of about 20 ppm
`in the neighborhood of 100°C and muchless at lower tempera-
`tures.
`
`
`
`» Marsh, K. N., Ed, Recommended Reference Materials for
`
`Realization of Physicochemical Properties, Blackwell
`Scientj
`:
`Publications, Oxford, 1987.
`
`- Lemmon,E.W., McLinden, M.O,, and Friend, D.G., “Thermo
`physi. ee
`-
`Properties of Fluid Systems”
`in NIST Chemistry WebBook, Nisk-
`‘
`Standard Reference Database Number69, Eds.PJ. Linstrom andWg
`
`Mallard, June 2005, National Institute of Standards and Technology= :
`
`53
`Gaithersburg MD, 20899 (http://webbook.nist.gov).
`. Wagner, W., and Pruss, A., “The IAPWS formulation 1995
`for the = ES
`thermodynamic properties of ordinary water substance for gener
`-
`andscientific use’, J. Phys. Chem. Ref. Data 31, 387-535, 2002,
`
`. Saul, A., and Wagner, W., “A Fundamental Equation for Water
`Covering the Range From the Melting Line to 1273 K at Pressy;tesup
`to 25000 MPa’, J. Phys. Chem. Ref. Data 18, 1537-1564, 1989,
`- 7
`
`Be
`
`
`tC p/g em
`tC p/g env?
`p/g cm
`“rec
`tC p/g cm?
`uc p/g cm
`16.9
`0.998794
`12.7
`0.9994167
`0.9998189
`8.5
`4.3
`0.9999742
`0.1
`0.9998493
`
`
`
`
`0.2 4.4—0.99997360.9998558 8.6 0.999812] 12.8 0.9994043 17.0 0.9987769
`
`
`
`
`
`
`0.3
`0.9998622
`4.5
`0,9999728
`8.7
`0.9998051
`12.9
`0.9993918
`17.1
`0,9987595
`
`04
`0.9998683
`4.6
`0.9999719
`8.8
`0.9997980
`13.0
`0.9993792
`17.2
`0,9987419
`
`
`0.5
`0.9998743
`4.7
`0.9999709
`8.9
`0.9997908
`13.1
`0.9993665
`17.3.
`0.9987243
`
`0.6
`0.9998801
`4.8
`0.9999696
`9.0
`0.9997834
`13.2
`0.9993536
`17.4
`0.9987065
`0.7
`0.9998857
`4.9
`0.9999683
`91
`0.9997759
`13.3
`0.9993407
`17.5
`0.9986886
`
`0.8
`0.9998912
`5.0
`0.9999668
`9.2
`0.9997682
`13.4
`0.9993276
`17.6
`0.9986706
`
`0.9
`0.9998964
`5.1
`0.9999651
`9.3
`0.9997604
`13.5
`0.9993143
`17.7
`0.9986525
`1.0
`0.9999015
`5.2
`0.9999632
`94
` 0.9997525
`13.6
`0.9993010
`17.8
`0.9986343
`
`11
`0.9999065
`5.3
`0.9999612
`9.5
`0.9997444.
`13.7.
`0.9992875
`17.9
`0.9986160
`
`1.2
`0.9999112
`5.4
` —0.9999591
`9.6
` 0.9997362
`13.8
`0.9992740
`18.0
`0,9985976
`
`
`1.3
`0.9999158
`5.5
` 0.9999568
`9,7
`0.9997279
`13.9
`0,9992602
`18.1
`0.9985790
`-
`14
`0.9999202
`5.6
`0.9999544.
`9.8
`0.9997 194.
`14.0
`0.9992464
`18.2
`0.9985604
`
`15
`0.9999244
`5.7
`0.9999518
`9.9
`0.9997108
`14.1
`0.9992325
`18.3
`0.9985416 ..
`1.6
`0.9999284
`5.8
`0.9999490
`10.0
` 0,9997021
`14.2
`0.9992184
`18.4
`0.9985228
`1.7
`0.9999323
`5.9
` 0.9999461
`10.1
`0.9996932
`14.3
`0,9992042
`18.5
`0.9985038
`
`1.8
`0.9999360
`6.0
`0.9999430,
`10.2
`0.9996842
`14.4
`0.9991899
`18.6
`0.9984847
`19
`0.9999395
`6.1
`0.9999398
`10.3.
`0.9996751
`14.5.
`0.9991755
`18.7
`0.9984655
`
`2.0
`0.9999429
`6.2
`0.9999365
`10.4
`0.9996658
`14.6
`0.9991609
`18.8
` 0,9984462
`
`
`2.1
`0.9999461
`6.3
`0.9999330
`10.5
`0.9996564
`14.7
`0.9991463
`18.9
` 0.9984268
`2.2
`0.999949]
`6.4
` 0.9999293
`10.6
`0.9996468
`14.8
` 0,9991315
`19.0
`0,9984073
`2.3
`0.9999519
`6.5
`0.9999255
`10.7.
`0.9996372
`14.9
`0.9991166
`19.1
`0.9983877
`
`2.4
`0.9999546
`6.6
`0.9999216
`10.8
` 0.9996274
`15.0
`0.9991016
`19.2
`0.9983680
`
`
`2.5
`0.9999571
`6.7
`0.9999175
`10.9
`0,9996174
`15.1
`0.9990864
`19.3
`0.9983481
`2.6
`0.9999595
`6.8
`0.9999132
`11.0
`0.9996074
`15.2
`0.9990712
`19.4
`0.9983282
`
`2.7
`0.9999616
`6.9
`0.9999088
`11.1
` 0.9995972
`15.3.
`0.9990558
`19.5
` 0.9983081
`
`2.8
`0.9999636
`7.0
` 0.9999043
`11.2
`0.9995869
`15.4
` 0.9990403
`19.6
`0.9982880
`
`2.9
`0.9999655
`7A
`0.9998996
`11.3
`0.9995764
`15.5
`0.9990247
`19.7
`0.9982677
`
`3.0
`0.9999672
`7.2
`0,9998948
`114
`0.9995658
`15.6
`0.9990090
`19.8
` 0.9982474
`3.1
`0.9999687
`7.3
`0.9998898
`11.5
`0.9995551
`15.7
`0.9989932
`19.9
` 0.9982269
`
`3.2
`0.9999700
`74
`0.9998847
`11.6
`0.9995443
`15.8
` 0.9989772
`20.0
`0.9982063
`
`3.3
`0.9999712
`7.5
`0.9998794
`11.7
`0.9995333
`15.9
`0,9989612
`20.1
`0,9981856
`
`3.4
`0.9999722
`7.6
`0,9998740
`11.8
` 0.9995222
`16.0
`0.9989450
`20.2
`0,9981649
`
`3.5
`0.9999731
`7.7
`0.9998684.
`11.9
`0.9995110
`16.1
`0,9989287
`20.3
`0,9981440
`
`3.6
`0.9999738
`7.8
`0.9998627
`12.0
`0,9994996
`16.2
`0.9989123
`20.4
`0.9981230
`
`3.7
`0.9999743
`7.9
`0.9998569
`12.1
`0.9994882
`16.3
`0.9988957
`20.5
` 0.9981019
`
`3.8 20.6—0,99808070.9999747 8.0 0.9998509 12.2 0.9994766 16.4 0.9988791
`
`
`
`
`
`
`
`
`3.9
`0.9999749
`8.1
`0.9998448
`12.3
`0.9994648
`16.5
` 0.9988623
`20.7.
`0.9980594
`
`4.0
`0.9999750
`8.2
`0.9998385
`12.4
`0.9994530
`16.6
`0.9988455
`20.8
` 0.9980380
`
`4.1
`0.9999748
`8.3
`0.9998321
`12.5
`0.9994410
`16.7.
`0.9988285
`20.9
`0,9980164
`4.2
`0.9999746
`8.4
` 0.9998256
`12.6
`0.9994289
`16.8
` 0.9988114
`21.0
`0.9979948
`
`6-4
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 3
`
`
`
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 3
`
`

`

`“°c
`31.1
`31.2
`31.3
`31.4
`31.5
`31.6
`31.7
`31.8
`31.9
`32.0
`32.1
`32.2
`32.3
`32.4
`32.5
`32.6
`32.7
`32.8
`32.9
`33.0
`33.1
`33.2
`33.3
`33.4
`33.5
`33.6
`33.7
`33.8
`33.9
`34.0
`34.1
`34.2
`34.3
`34.4
`34.5
`34.6
`34.7
`34.8
`34.9
`35.0
`35.1
`35.2
`35.3
`35.4
`35.5
`35.6
`35.7
`35.8
`35.9
`36.0
`
`e/g cm"
`0.9953139
`0.9952827
`0.9952514
`0.9952201
`0.9951887
`0.9951572
`0.9951255
`0.9950939
`0.9950621
`0.9950302
`0.9949983
`0.9949663
`0.9949342
`0.9949020
`0.9948697
`0.9948373
`0.9948049
`0.9947724
`0.9947397
`0.9947071
`0.9946743
`0.9946414
`0.9946085
`0.9945755
`0.9945423
`0.9945092
`0.9944759
`0.9944425
`0.994.4091
`0.9943756
`0.9943420
`0.9943083
`0.9942745
`0.994.2407
`0.9942068
`0.994.1728
`0.994.1387
`0.9941045
`0.994.0703
`0.9940359
`0.9940015
`0.9939671
`0.9939325
`0.9938978
`0.9938631
`0.9938283
`0.9937934
`0.9937585
`0.9937234
`0.9936883
`
`“°C
`36.1
`36.2
`36.3
`36.4
`36.5
`36.6
`36.7
`36.8
`36.9
`37.0
`37.1
`37.2
`37.3
`37.4
`37.5
`37.6
`37.7
`37.8
`37.9
`38.0
`38.1
`38.2
`38.3
`38.4
`38.5
`38.6
`38.7
`38.8
`38.9
`39.0
`39.1
`39.2
`39.3
`39.4
`39.5
`39.6
`39.7
`39.8
`39.9
`40.0
`41.0
`42.0
`43.0
`44.0
`45.0
`46.0
`47.0
`48.0
`49.0
`50.0
`
`p/g cnr?.
`0.9936531
`0.9936178
`0.9935825
`0.9935470
`0.9935115
`0.9934759
`0.9934403
`0.9934045
`0.9933687
`0.9933328
`0.9932968
`0.9932607
`0.9932246
`0.9931884
`0.9931521
`0.9931157
`0.9930793
`0.9930428
`0.9930062
`0.9929695
`0.9929328
`0.9928960
`0.9928591
`0.9928221
`0.9927850
`0.9927479
`0.9927107
`0.9926735
`0.9926361
`0.9925987
`0.9925612
`0.9925236
`0.9924860
`0.9924483
`0.9924105
`0.9923726
`0.9923347
`0.9922966
`0.9922586
`0.9922204
`0.99183
`0.99144
`0.99104
`0.99063
`0.99021
`0.98979
`0.98936
`0.98893
`0.98848
`0.98804
`
`tC p/g cm
`51.0
`0.98758
`52.0
`0.98712
`53.0
`0.98665
`54.0
`0.98617
`55.0
`0.98569
`56.0
`0.98521
`57.0
`0.98471
`58.0
`0.98421
`59.0
`0.98371
`60.0
`0.98320
`61.0
`0.98268
`62.0
`0.98216
`63.0
`0.98163
`64.0
`0.98109
`65.0
`0.98055
`66.0
`0.98000
`67.0
`0.97945
`68.0
`0.97890
`69.0
`0.97833
`70.0
`0.97776
`71.0
`0.97719
`72.0
`0.97661
`73.0
`0.97603
`74.0
`0.97544
`75.0
`0.97484
`76.0
`0.97424
`77.0
`0.97364
`78.0
`0.97303
`79.0
`0.97241
`80.0
`0.97179
`81.0
`0.97116
`82.0
`0.97053
`83.0
`0.96990
`84.0
`0.96926
`85.0
`0.96861
`86.0
`0.96796
`87.0
`0.96731
`88.0
`0.96664
`89.0
`0.96598
`90.0
`0.96531
`91.0
`0.96463
`92.0
`0.96396
`93.0
`0.96327
`94.0
`0.96258
`95.0
`0.96189
`96.0
`0.96119
`97.0
`0.96049
`98.0
`0.95978
`99.0
`0.95907
`99,974 0.95837
`
`p/g cm?
`0.9967604
`0.9967337
`0.9967069
`0.9966800
`0.9966530
`0.9966259
`0.9965987
`0.9965714
`0.9965441
`0.9965166
`0.9964891
`0.9964615
`0.9964337
`0.9964059
`0.9963780
`0.9963500
`0.9963219
`0.9962938
`0.9962655
`0.9962371
`0.9962087
`0.9961801
`0.9961515
`0.9961228
`0.9960940
`0.9960651
`0.9960361
`0.9960070
`0.9959778
`0.9959486
`0.9959192
`0.9958898
`0.9958603
`0.9958306
`0.9958009
`0.9957712
`0.9957413
`0.9957113
`0.9956813
`0.9956511
`0.9956209
`0,9955906
`0.9955602
`0.9955297
`0.9954991
`0.9954685
`0.9954377
`0.9954069
`0.9953760
`0.9953450
`
`
`jandard Density of Water
`“°c
`yc p/gem®
`
`26.1
`0.9979731
`26.2
`‘5. 0.9979513
`26.3
`
`3. 0.9979294
`26.4
`<9,9979073
`26.5
`26.6
`26.7
`ee 0.9978182
`
`26.8
`26.9
`0.9977957
`91.9
`27.0
`9,0-- 0.9977730
`
`27.1
`99.1.
`0.9977503
`27.2
`“0.9977275
`
`27.3
`0.9977045
`
`27.4
`_ 0.9976815
`27.5
`" 0.9976584
`
`27.6
`0.9976351
`
`27,7
`”0.9976118
`
`27.8
`0.9975883
`
`27.9
`92.9
`0.9975648
`
`28.0
`‘0'* 0.9975412
`28.1
`0.9975174
`
`28.2
`0.9974936
`
`28.3
`0.9974697
`
`28.4
`0.9974456
`
`28.5
`0.9974215
`
`28.6
`0.9973973
`0.9973730
`28.7
`
`28.8
`
`- 0.9973485
`0.9973240
`28.9
`
`-0,9972994
`29,0
`
`0.9972747
`29.1
`
`0.9972499
`29.2
`
`0.9972250
`29.3
`
`0.9972000
`29.4
`
`0.9971749
`29.5
`
`0.9971497
`29.6
`
`0.9971244
`29.7
`
`.0.9970990
`29.8
`
`29.9
`0.9970735
`
`30.0
`0.9970480
`
`30.1
`-0.9970223
`
`0.9969965
`30.2
`30.3
`0.9969707
`
`30.4
`_ 0.9969447
`30.5
`_ 0.9969186
`
`30.6
`0.9968925
`
`30.7
`0.9968663
`
`30.8
`- 0.9968399
`
`30.9
`* 0.9968135
`31.0
`0.9967870
`
`
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 4
`
`
`IPR2018-01020 and IPR2018-01021, Exhibit 1038, Page 4
`
`

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