Templat:Physconst/data: Perbedaan antara revisi

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{{#switch: {{{1}}}<!--
--> |symbol={{#switch: {{{2}}} |a0=''a''<sub>0</sub> |alpha=''α'' |A90=''A''<sub>90</sub> |atm=atm |bwien=''b'' |bwien'=''b''′|c=''c'' |c1=''c''<sub>1</sub> |c1L=''c''<sub>1L</sub> |c2=''c''<sub>2</sub> |C90=''C''<sub>90</sub> |DnuCs=Δ''ν''(<sup>133</sup>Cs)<sub>hfs</sub> |e=''e'' |Eh=''E''<sub>h</sub> |EheV=''E''<sub>h</sub> |eps0=''ε''<sub>0</sub> |eV=1&nbsp;eV |-e/me= −''e''/''m''<sub>e</sub> |F=''F'' |F90=''F''<sub>90</sub> |G=''G'' |G0=''G''<sub>0</sub> |g0=''g''<sub>0</sub> |ge=''g''<sub>e<sup>−</sup></sub> |GF/hbarc3=''G''<sub>F</sub>/(''ħc'')<sup>3</sup> |gmu=''g''<sub>&mu;<sup>&minus;</sup></sub> |gp=''g''<sub>p</sub> |h=''h'' |H90=''H''<sub>90</sub> |hbar=''ħ'' |h/2me=''h''/2''m''<sub>e</sub> |invalpha=1/''α'' |invG0=''G''<sub>0</sub><sup>−1</sup> |k=''k'' |KJ=''K''<sub>J</sub> |KJ90=''K''<sub>J-90</sub> |lP=''l''<sub>P</sub> |MC12=''M''(<sup>12</sup>C) |me=''m''<sub>e</sub> |meDa=''m''<sub>e</sub> |mmu=''m''<sub>&mu;</sub> |mn=''m''<sub>n</sub> |mnDa=''m''<sub>n</sub> |mP=''m''<sub>P</sub> |mp=''m''<sub>p</sub> |mpome=''m''<sub>p</sub>/''m''<sub>e</sub> |mtau=''m''<sub>&tau;</sub> |Mu=''M''<sub>u</sub> |mu=''m''<sub>u</sub> |muc2=''m''<sub>u</sub>''c''<sup>2</sup> |mueV=''m''<sub>u</sub>''c''<sup>2</sup> |mu0=''μ''<sub>0</sub> |muB=''μ''<sub>B</sub> |muN=''μ''<sub>N</sub> |mW/mZ=''m''<sub>W</sub>/''m''<sub>Z</sub> |NA=''N''<sub>A</sub> |NAh=''N''<sub>A</sub>''h'' |ohm90=''Ω''<sub>90</sub> |Phi0=''Φ''<sub>0</sub> |R=''R'' |re=''r''<sub>e</sub> |Rinf=''R''<sub>∞</sub> |RK=''R''<sub>K</sub> |RK90=''R''<sub>K-90</sub> |sigma=''σ'' |bwiensigmae=''bσ''<sub>e</sub> |TP=''T''<sub>P</sub> |tP=''t''<sub>P</sub> |V90=''V''<sub>90</sub> |VmSi=''V''<sub>m</sub>(Si) |W90=''W''<sub>90</sub> |Z0=''Z''<sub>0</sub> }}<!--
--> |val= {{#switch: {{{2}}} |a0=5.29177210903 |alpha=7.2973525693 |A90=1.00000008887 |atm=101325 |bwien=2.897771955 |bwien'=5.878925757 |c=299792458 |c1=3.741771852 |c1L=1.191042972 |c2=1.438776877 |C90=1.00000008887 |DnuCs=9192631770 |e=1.602176634 |Eh=4.3597447222071 |EheV=27.211386245988 |eps0=8.8541878128 |eV=1.602176634 |-e/me=-1.75882001076 |F=96485.33212 |F90=0.99999998220 |G=6.67430 |G0=7.748091729 |g0=9.80665 |ge=-2.00231930436256 |GF/hbarc3=1.1663787 |gmu=-2.0023318418 |gp=5.5856946893 |h=6.62607015 |H90=1.00000001779 |hbar=1.054571817 |h/2me=3.6369475516 |invalpha=137.035999084 |invG0=12906.40372 |k=1.380649 |KJ=483597.8484 |KJ90=483597.9 |lP=1.616255 |MC12=11.9999999958 |me=9.1093837015 |meDa=5.48579909065 |mmu=1.883531627 |mn=1.67492749804 |mnDa=1.00866491595 |mP=2.176435 |mp=1.67262192369 |mpome=1836.15267343 |mtau=3.16754 |Mu=0.99999999965 |mu=1.66053906660 |muc2=1.49241808560 |mueV=931.49410242 |mu0=1.25663706212 |muB=9.2740100783 |muN=5.0507837461 |mW/mZ=0.88153 |NA=6.02214076 |NAh=3.990312712 |ohm90=1.00000001779 |Phi0=2.067833848 |R=8.314462618 |re=2.8179403262 |Rinf=10973731.568160 |RK=25812.80745 |RK90=25812.807 |sigma=5.670374419 |sigmae=6.6524587321 |TP=1.416785 |tP=5.391247 |V90=1.00000010666 |VmSi=1.205883199 |W90=1.00000019553 |Z0=376.730313668 }}<!--
--> |val= {{#switch: {{{2}}} |alpha=7.2973525698 |c=299792458 |e=1.602176565 |eps0=8.854187817 |eV=1.602176565 |F=96485.3365 |G=6.67384 |G0=7.7480917346 |h=6.62606957 |hbar=1.054571726 |invalpha=137.035999074 |k=1.3806488 |me=9.10938291 |mp=1.672621777 |mpome=1836.15267245 |mu=1.660538921 |mu0=12.566370614 |NA=6.02214129 |Phi0=2.067833758 |R=8.3144621 |Rinf=10973731.568539 |sigma=5.670373|bwien=2.8977721}}<!--
--> |round= {{#switch: {{{2}}} |alpha=8 |c=0 |e=7 |eps0=9 |eV=7 |F=2 |G=3 |G0=8 |h=6 |hbar=7 |invalpha=7 |k=6 |me=6 |mp=7 |mpome=6 |mu=7 |mu0=9 |NA=6 |Phi0=7 |R=5 |Rinf=4 |sigma=4|bwien=5}}<!--
--> |unc= {{#switch: {{{2}}} |a0=(80) |alpha=(2411) |A90= |atm= |bwien= |bwien'= |c= |c1= |c2= |c1L= |C90= |DnuCs= |e= |Eh=(3585) |EheV=(53) |eps0=(13) |eV= |-e/me=(3553) |F=(21) |F90= |G=(8015) |G0= |g0= |ge=(2535) |hGF/hbarc3=(296) |gmu=(13) |gp=(16) |h= |H90= |hbar= |h/2me=(4711) |invalpha=(4421) |invG0= |k= |KJ= |KJ90= |lP=(1318) |MC12=(36) |me=(4028) |meDa=(16) |mmu=(42) |mn=(95) |mnDa=(49) |mP=(24) |mp=(7451) |mpome=(7511) |mtau=(21) |Mu=(30) |mu=(7350) |muc2=(45) |mueV=(28) |mu0=(19) |NAmuB=(2728) |Phi0muN=(4615) |mW/mZ=(17) |NA= |NAh= |ohm90= |Phi0= |R= |re=(7513) |Rinf=(5521) |RK= |RK90= |sigma= |sigmae=(2160) |bwienTP=(16) |tP=(60) |V90= |VmSi=(60) |W90= |Z0=(2657)}}<!--
--> |end= {{#switch: {{{2}}} |eps0A90=... |mu0bwien=... |bwien'=... |c1=... |c1L=... |c2=... |C90=... |F=... |F90=... |G0=... |H90=... |hbar=... |invG0=... |KJ=... |NAh=... |ohm90=... |Phi0=... |R=... |RK=... |sigma=... |V90=... |W90=...}}<!--
--> |exp= {{#switch: {{{2}}} |a0=-11 |alpha=-3 |A90= |atm= |bwien=-3 |bwien'=10 |c= |c1=-16 |c1L=-16 |c2=-2 |C90= |DnuCs= |e=-19 |Eh=-18 |EheV= |eps0=-12 |eV=-19 |-e/me=11 |F= |F90= |G=-11 |G0=-5 |g0= |ge= |GF/hbarc3=-5 |gmu= |gp= |h=-34 |H90= |hbar=-34 |h/2me=-4 |invalpha= |invG0= |k=-23 |KJ=9 |KJ90=9 |lP=-35 |MC12=-3 |me=-31 |meDa=-4 |mmu=-28 |mn=-27 |mnDa= |mP=-8 |mp=-27 |mpome= |mtau=-27 |Mu=-3 |mu=-27 |muc2=-10 |mueV= |mu0=-76 |muB=-24 |muN=-27 |mW/mZ= |NA=23 |NAh=-10 |ohm90= |Phi0=-15 |R= |re=-715 |Rinf= |RK= |RK90= |sigma=-8 |bwiensigmae=-329 |TP=32 |tP=-44 |V90= |VmSi=-5 |W90= |Z0=}}<!--
--> |unit= {{#switch: {{{2}}} |a0=m |alpha= |A90=A |atm=Pa |bwien=m⋅K |bwien'=Hz⋅K<sup>−1</sup> |c=m/s |c1=W⋅m<sup>2</sup> |c1L=W⋅m<sup>2</sup>⋅sr<sup>−1</sup> |c2=m⋅K |C90=C |DnuCs=Hz |e=C |Eh=J |EheV=eV |eps0=FF⋅m<sup>−1</msup> |eV=J |-e/me=C⋅kg<sup>−1</sup> |F=CC⋅mol<sup>−1</molsup> |F90=F |G=m<sup>3</sup> kg⋅kg<sup>−1</sup> s⋅s<sup>−2</sup> |G0=S |g0=m⋅s<sup>−2</sup> |ge= |GF/hbarc3=GeV<sup>−2</sup> |gmu= |gp= |h=JJ⋅s s|H90=H |hbar=JJ⋅s s|h/2me=m<sup>2</sup>⋅s<sup>−1</sup> |invalpha= |invG0=Ω |k=JJ⋅K<sup>−1</Ksup> |KJ=Hz⋅V<sup>−1</sup> |KJ90=Hz⋅V<sup>−1</sup> |lP=m |MC12=kg⋅mol<sup>−1</sup> |me=kg |meDa=Da |mmu=kg |mn=kg |mnDa=Da |mP=kg |mp=kg |mpome= |mtau=kg |Mu=kg⋅mol<sup>−1</sup> |mu=kg |muc2=J |mueV=MeV |mu0=NN⋅A<sup>−2</Asup> |muB=J⋅T<sup>2−1</sup> |muN=J⋅T<sup>−1</sup> |mW/mZ= |NA=mol<sup>−1</sup> |NAh=J⋅Hz<sup>−1</sup>⋅mol<sup>−1</sup> |ohm90=Ω |Phi0=Wb |R=J molJ⋅mol<sup>−1</sup> K⋅K<sup>−1</sup> |re=m |Rinf=m<sup>−1</sup> |sigmaRK=WΩ m|RK90=Ω |sigma=W⋅m<sup>−2</sup> K⋅K<sup>−4</sup> |bwiensigmae=m<sup>2</sup> |TP=K |tP=s |V90=V |VmSi=m<sup>3</sup>⋅mol<sup>−1</sup> |W90=W |Z0=Ω}}<!--
--> |ref= {{#switch: {{{2}}} <!--
--> |alphaa0=<ref name="physconst-alphaa0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?alphbohrrada0 |title=2018 CODATA Value: fine-structureBohr constantradius |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |calpha=<ref name="physconst-calpha">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?calph |title=2018 CODATA Value: speedfine-structure of light in vacuumconstant |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |eA90=<ref name="physconst-eA90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?eampere90 |title=2018 CODATA Value: elementaryconventional chargevalue |month=of ampere-90 |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-06-2301}}</ref><!--
--> |eps0atm=<ref name="physconst-eps0atm">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?ep0stdatm |title=2018 CODATA Value: electricstandard constantatmosphere |month= |date =June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |eVbwien=<ref name="physconst-eVbwien">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?tevjbwien |title=2018 CODATA Value: electronWien voltwavelength |month=displacement law constant |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |Fbwien'=<ref name="physconst-Fbwienf">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?fbpwien |title=2018 CODATA Value: FaradayWien frequency displacement law constant |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |Gc=<ref name="physconst-Gc">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?bgc |title=2018 CODATA Value: Newtonian constantspeed of gravitationlight in vacuum |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |G0c1=<ref name="physconst-G0c1">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?conqu2e2shc11strc |title=2018 CODATA Value: conductancefirst quantumradiation constant |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |hc1L=<ref name="physconst-hc1L">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?hc1l |title=2018 CODATA Value: Planckfirst radiation constant for spectral radiance |month= |date=June20 2011May 2019|work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |hbarc2=<ref name="physconst-hbarc2">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?hbarc22ndrc |title=2018 CODATA Value: Plancksecond radiation constant over 2 pi |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |invalphaC90=<ref name="physconst-invalphaC90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?alphinvcharge90 |title=2018 CODATA Value: inverseconventional fine-structurevalue constantof |month=coulomb-90 |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-06-2301}}</ref><!--
--> |kDnuCs=<ref name="physconst-kDnuCs">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?knucs |title=2018 CODATA Value: Boltzmannhyperfine constanttransition |month=frequency of Cs-133 |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0608-2318}}</ref><!--
--> |mee=<ref name="physconst-mee">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mee |title=2018 CODATA Value: electronelementary masscharge |month= |date=June20 2011May 2019| work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |mpEh=<ref name="physconst-mpEh">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mphr |title=2018 CODATA Value: protonHartree massenergy |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |mpomeEheV=<ref name="physconst-mpomeEheV">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mpsmehrev |title=2018 CODATA Value: proton-electronHartree massenergy ratioin eV |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0609-2301}}</ref><!--
--> |mueps0=<ref name="physconst-mueps0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?uep0 |title=2018 CODATA Value: atomicvacuum masselectric constantpermittivity |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |mu0eV=<ref name="physconst-mu0eV">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mu0evj |title=2018 CODATA Value: magneticelectron constantvolt |month= |date=June20 2011May 2019|work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |NA-e/me=<ref name="physconst-NAe/me">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?naesme |title=2018 CODATA Value: Avogadroelectron constantcharge to mass quotient |month= |date=June20 2011May 2019|work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0610-2322}}</ref><!--
--> |Phi0F=<ref name="physconst-Phi0F">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?flxquhs2ef |title=2018 CODATA Value: magneticFaraday fluxconstant quantum|month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |RF90=<ref name="physconst-RF90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?rcapacitance90 |title=2018 CODATA Value: molarconventional gasvalue constantof farad-90 |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-06-2301}}</ref><!--
--> |RinfG=<ref name="physconst-RinfG">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?rydbg |title=2018 CODATA Value: RydbergNewtonian constant of gravitation |month= |date=June20 May 20112019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20112019-0605-2320}}</ref><!--
--> |sigmaG0=<ref name="physconst-sigmaG0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?sigmaconqu2e2sh |title=2018 CODATA Value: Stefan-Boltzmannconductance constantquantum |month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20132019-1105-0320}}</ref><!--
--> |bwieng0=<ref name="physconst-bwieng0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?bwiengn |title=2018 CODATA Value: Wienstandard wavelengthacceleration displacementof lawgravity constant|month= |date=June20 2011May 2019 |work=[http://physics.nist.gov/cuu/index.html The NIST Reference on Constants, Units, and Uncertainty] |publisher=US [[National Institute of Standards and Technology|NIST]] |accessdate=20132019-1105-0320}}</ref><!--
--> |ge=<ref name="physconst-ge">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?gem |title=2018 CODATA Value: electron g factor |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2020-03-13}}</ref><!--
--> |GF/hbarc3=<ref name="physconst-GF">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?gf |title=2018 CODATA Value: Fermi coupling constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |gmu=<ref name="physconst-gmu">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?gmum |title=2018 CODATA Value: muon g factor |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |gp=<ref name="physconst-gp">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?gp |title=2018 CODATA Value: proton g factor |month= |date=June 2015 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-03-08 }}</ref><!--
--> |h=<ref name="physconst-h">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?h |title=2018 CODATA Value: Planck constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |H90=<ref name="physconst-H90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?inductance90 |title=2018 CODATA Value: conventional value of henry-90 |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-06-01}}</ref><!--
--> |hbar=<ref name="physconst-hbar">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?hbar |title=2018 CODATA Value: reduced Planck constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-08-28}}</ref><!--
--> |h/2me=<ref name="physconst-h/2me">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?qucirchs2me |title=2018 CODATA Value: quantum of circulation |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |invalpha=<ref name="physconst-invalpha">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?alphinv |title=2018 CODATA Value: inverse fine-structure constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |invG0=<ref name="physconst-invG0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?invconqu |title=2018 CODATA Value: inverse of conductance quantum |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |k=<ref name="physconst-k">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?k |title=2018 CODATA Value: Boltzmann constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |KJ=<ref name="physconst-KJ">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?kjos |title=2018 CODATA Value: Josephson constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |KJ90=<ref name="physconst-KJ90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?kj90 |title=2018 CODATA Value: conventional value of Josephson constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |lP=<ref name="physconst-lP">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?plkl |title=2018 CODATA Value: Planck length |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |MC12=<ref name="physconst-MC12">{{cite web |url=https://physics.nist.gov/cgi-bin/cuu/Value?mm12c |title=2018 CODATA Value: molar mass of carbon-12 |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |me=<ref name="physconst-me">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?me |title=2018 CODATA Value: electron mass in u |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |meDa=<ref name="physconst-meDa">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?meu |title=2018 CODATA Value: electron mass |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2020-06-21}}</ref><!--
--> |mmu=<ref name="physconst-mmu">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mmu |title=2018 CODATA Value: muon mass |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |mn=<ref name="physconst-mn">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mn |title=2018 CODATA Value: neutron mass |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-08-23}}</ref><!--
--> |mnDa=<ref name="physconst-mnDa">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mnu |title=2018 CODATA Value: neutron mass in u |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2020-06-24}}</ref><!--
--> |mP=<ref name="physconst-mP">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?plkm |title=2018 CODATA Value: Planck mass |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |mp=<ref name="physconst-mp">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mp |title=2018 CODATA Value: proton mass |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |mpome=<ref name="physconst-mpome">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mpsme |title=2018 CODATA Value: proton-electron mass ratio |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |mtau=<ref name="physconst-mtau">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mtau |title=2018 CODATA Value: tau mass |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |Mu=<ref name="physconst-Mu">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mu |title=2018 CODATA Value: molar mass constant |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |mu=<ref name="physconst-mu">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?u |title=2018 CODATA Value: atomic mass constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |muc2=<ref name="physconst-muc2">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?uj |title=2018 CODATA Value: atomic mass constant energy equivalent |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-07-21}}</ref><!--
--> |mueV=<ref name="physconst-muc2eV">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?muc2mev |title=2018 CODATA Value: atomic mass constant energy equivalent in MeV |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-07-21}}</ref><!--
--> |mu0=<ref name="physconst-mu0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mu0 |title=2018 CODATA Value: vacuum magnetic permeability |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |muB=<ref name="physconst-muB">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mub |title=2018 CODATA Value: Bohr magneton |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |muN=<ref name="physconst-muN">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mun |title=2018 CODATA Value: nuclear magneton |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |mW/mZ=<ref name="physconst-mW/mZ">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?rmwmz |title=2018 CODATA Value: W to Z mass ratio |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-12-21}}</ref><!--
--> |NA=<ref name="physconst-NA">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?na |title=2018 CODATA Value: Avogadro constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |NAh=<ref name="physconst-NAh">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?nah |title=2018 CODATA Value: molar Planck constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |ohm90=<ref name="physconst-ohm90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?ohm90 |title=2018 CODATA Value: conventional value of ohm-90 |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-06-01}}</ref><!--
--> |Phi0=<ref name="physconst-Phi0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?flxquhs2e |title=2018 CODATA Value: magnetic flux quantum |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |R=<ref name="physconst-R">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?r |title=2018 CODATA Value: molar gas constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |re=<ref name="physconst-re">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?re |title=2018 CODATA Value: classical electron radius |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |Rinf=<ref name="physconst-Rinf">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?ryd |title=2018 CODATA Value: Rydberg constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |RK=<ref name="physconst-RK">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?rk |title=2018 CODATA Value: von Klitzing constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |RK90=<ref name="physconst-RK90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?rk90 |title=2018 CODATA Value: conventional value of von Klitzing constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |sigma=<ref name="physconst-sigma">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?sigma |title=2018 CODATA Value: Stefan–Boltzmann constant |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |sigmae=<ref name="physconst-sigmae">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?sigmae |title=2018 CODATA Value: Thomson cross section |month= |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |TP=<ref name="physconst-TP">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?plktmp |title=2018 CODATA Value: Planck temperature |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |tP=<ref name="physconst-tP">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?plkt |title=2018 CODATA Value: Planck time |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-05-20}}</ref><!--
--> |V90=<ref name="physconst-V90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?volt90 |title=2018 CODATA Value: conventional value of volt-90 |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-06-01}}</ref><!--
--> |VmSi=<ref name="physconst-VmSi">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?mvolsil |title=2018 CODATA Value: molar volume of silicon |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-06-23}}</ref><!--
--> |W90=<ref name="physconst-W90">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?power90 |title=2018 CODATA Value: conventional value of watt-90 |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-06-01}}</ref><!--
--> |Z0=<ref name="physconst-Z0">{{cite web |url=http://physics.nist.gov/cgi-bin/cuu/Value?z0 |title=2018 CODATA Value: characteristic impedance of vacuum |date=20 May 2019 |work=The NIST Reference on Constants, Units, and Uncertainty |publisher=[[National Institute of Standards and Technology|NIST]] |accessdate=2019-10-31}}</ref><!--
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