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Periodensystem der Elemente (Quelle: größtenteils www.lenntech.de)
Neon    Ne    Kernladungszahl Z=10 (p=10)
 Ne(n+p)nSchwere IsotopSchwere KernHäufig-
keit
Spin/
Parität
StabilitätHalbwerts-
zeit [s]
Zerfalls-
arten
Zerfalls-
energie [eV]
Defekt-
energie [eV]
Bindungs-
energie [eV]
Wirkungsquer-
schnitt [barn]
 
1.Ne2010 19.99244021 19.98695441 90.48% 0+   stabil   -7.0419E6 160.645E6 37E-3#σ(n.γ) 
2.Ne2212 21.99138588 21.98590008 9.25% 0+   stabil   -8.024E6 177.77E6 48E3#σ(n.γ) 
3.Ne2111 20.99384666 20.98836086 0.27% 3/2+   stabil   -5.7318E6 167.406E6 0.692#σ(n.γ) 
4.Ne1919.00188021 18.99639441  1/2+ radioakt. 17.22 K/β+=100 3.238E6 1.7513827E6 143.78092E6  
5.Ne1818.00570825 18.00022245  0+ radioakt. 1.672 K/β+=100 4.444E6 5.3172E6 132.143E6  
6.Ne1717.0176715 17.0121857  1/2- radioakt. 109.2E-3 Kp=100  13.909E6 16.4609E6 112.928E6  
7.Ne1616.0257613 16.0202755  0+ radioakt. 9zs p=100 --0.068E6 23.9965E6 97.321E6  
8.Ne2313 22.99446695 22.98898115  5/2+ radioakt. 37.24 ß-=100 4.376E6 -5.154E6 182.971E6  
9.Ne2414 23.99361134 23.98812554  0+ radioakt. 203 ß-=100 2.467E6 -5.951E6 191.839E6  
10.Ne2515 24.99773686 24.99225106  3/2+ radioakt. 602E-3 ß-=100 7.25E6 -2.1081E6 196.068E6  
11.Ne2616 26.00046119 25.9949754  0+ radioakt. 192E-3 β−=100 7.292E6 0.4296E6 201.600998E6  
12.Ne2717 27.00758985 27.00210405  3/2+ radioakt. 32E-3 β−=98; β−n=2.0 12.587E6(β−); 5.861E6(β−n) 7.0699E6 203.032E6  
13.Ne2818 28.01207093 28.00658513  0+ radioakt. 17E-3 β−=84.5; β−n=11.9; β−2n=3.6 12.233E6(β−); 8.69E6(β−n); 1.964E6(β−2n) 11.244E6 206.93E6  
14.Ne2919 29.01938499 29.01389919  3/2+ radioakt. 14.8E-3 β−<100; β−n=27.0; β−n>0 15.392E6(β−); 10.975E6(β−n); 7.432E6(β−2n) 18.057E6 208.188E6  
15.Ne3020 30.02480102 30.01931522  0+ radioakt. 7.3E-3 β−=78.1; β−n=13; β−2n=8.9 14.741E6(β−=); 12.366E6(β−n); 7.949E6(β−2n) 23.102E6 211.214E6  
16.Ne3121 31.03311025 31.02762445   radioakt. 3.4E-3 β−=68.87; β−n=31.13 18.188(β−); 14.41(β−n) 30.842E6 211.546E6  
17.Ne3222 32.04001958 32.03453378  0+ radioakt. 3.5E-3 ß-=73.5; ß-n=46.5 18.214E6(ß-); 16.553E6(ß-n) 37.278E6 213.181E6  
18.Ne3323 33.04937981 33.04389401  7/2− radioakt. 1E-9 n=100 0.684E6 45.997E6 212.533E6  
19.Ne3424 34.05702774 34.05154194  0+ radioakt. 1E-3 β−>60.1; β−n<39.9 --0.947E6(β−); 20.161E6(β−n) 53.121E6 213.48E6  


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Please Select Elements
  all   nothing
Z=1WasserstoffH
Z=2HeliumHe
Z=3LithiumLi
Z=4BerylliumBe
Z=5BorB
Z=6KohlenstoffC
Z=7StickstoffN
Z=8SauerstoffO
Z=9FluorF
Z=10NeonNe
Z=11NatriumNa
Z=12MagnesiumMg
Z=13AluminiumAl
Z=14SiliziumSi
Z=15PhosphorP
Z=16SchwefelS
Z=17ChlorCl
Z=18ArgonAr
Z=19KaliumK
Z=20CalciumCa
Z=21ScandiumSc
Z=22TitanTi
Z=23VanadiumV
Z=24ChromCr
Z=25ManganMn
Z=26EisenFe
Z=27KobaltCo
Z=28NickelNi
Z=29KupferCu
Z=30ZinkZn
Z=31GalliumGa
Z=32GermaniumGe
Z=33ArsenAs
Z=34SelenSe
Z=35BromBr
Z=36KryptonKr
Z=37RubidiumRb
Z=38StrontiumSr
Z=39YttriumY
Z=40ZirkonZr
Z=41NiobNb
Z=42MolybdänMo
Z=43TechnetiumTc
Z=44RutheniumRu
Z=45RohdiumRh
Z=46PalladiumPd
Z=47SilberAg
Z=48CadmiumCd
Z=49IndiumIn
Z=50ZinnSn
Z=51AntimonSb
Z=52TellurTe
Z=53JodJ
Z=54XenonXe
Z=55CäsiumCs
Z=56BariumBa
Z=57LanthanLa
Z=58CerCe
Z=59PraseodymPr
Z=60NeodymNd
Z=61PromethiumPm
Z=62SamariumSm
Z=63EuropiumEu
Z=64GadoliniumGd
Z=65TerbiumTb
Z=66DysprosiumDy
Z=67HolmiumHo
Z=68ErbiumEr
Z=69ThuliumTm
Z=70YtterbiumYb
Z=71LutetiumLu
Z=72HafniumHf
Z=73TantalTa
Z=74WolframW
Z=75RheniumRe
Z=76OsmiumOs
Z=77IridiumIr
Z=78PlatinPt
Z=79GoldAu
Z=80QuecksilberHg
Z=81ThalliumTl
Z=82BleiPb
Z=83WismutBi
Z=84PoloniumPo
Z=85AstatinAt
Z=86RadonRn
Z=87FranciumFr
Z=88RadiumRa
Z=89ActiniumAc
Z=90ThoriumTh
Z=91ProtactiniumPa
Z=92UranU
Z=93NeptuniumNp
Z=94PlutoniumPu
Z=95AmericiumAm
Z=96CuriumCm
Z=97BerkeliumBk
Z=98CaliforniumCf
Z=99EinsteiniumEs
Z=100FermiumFm
Z=101MendeleviumMd
Z=102NobeliumNo
Z=103LawrenciumLr
Z=104RutherfordiumRf
Z=105DubniumDb
Z=106SeaborgiumSg
Z=107BohriumBh
Z=108HassiumHs
Z=109MeitneriumMt
Z=110DarmstadtiumDs
Z=111RoentgeniumRg
Z=112CoperniciumCn
Z=113UnuntriumUut
Z=114FleroviumFl
Z=115UnunpentiumUup
Z=116LivermoriumLv
Z=117UnunseptiumUus
Z=118UnunoctiumUuo


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Actual Settings

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Search for potenz N and factor2 in selected elements Z, for given result with the multiplikation L*factor2
                     L = Z * Cx * Basis^N * Factor
                   N = log(L/(Factor*Z*Cx)) / log(Basis)

and f=c/L and T=L/c with c= m/s and Comptonwavelength Cx [m]:   Ce= 2.4263102389E-12
Cp= 1.32140985623E-15  Cn= 1.3195909068E-15  Plk= 1.616199E-35  orb_Mercur= 57.91E9
Cx m    Basis   Factor
  Basis B with e= 2.7182818284590  phi= 1.618034  or 2 ,   Factor with pi= 3.141592   2pi= 6.283185  g= 0.61803398874989  or 18
show  digits                  Select Units
L Length   Lj   pc   AE   earthR   km   m   dm   cm   mm   µm   nm   A~   pm   fm
Frequency   THz   GHz   MHz   kHz   Hz   mHz   µHz
T Time   j   d   h   min   s   ms   µs   ns   ps
V Volume =L^3   km^3   m^3   hL=100L   dL=10L   dm^3=L   10ml=cL   cm^3=mL   mm^3=µL
m Mass =V*dens.   Mt   kt   t   kg   g   mg   µg   ng   pg   fg

       (Reset with deleting the number)      Reset 3 Factor-Search (Example1)      (Example2)


1 Listing - Modus     2 Searching - Modus     3 Factor-Search     4 Basis(+Factor)-Search     5 Basis(+Factor)-Harmonics-Search

Value for Searching: m      Length
search factor2 (integer) with lattice constants: 118L or 118R
By using this code as text you call the physical lattice constants and atomic radii from the database, for many Z.
If you use the value Factor additional, you can find rational numbers between L and Lattice(Z): 0.333333*ResultF = 1/3*ResultF or Factor=0.5 with Basis>2
error L maximal   0.1% 0.5% 1% 2% 5% all

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Results      with Cn      Attention ! Factor 3.1415926535897932 to L and to T, invers to f      Attention ! Basis 2.7182818284590452353602874713527
BFerror L[%] ZN[1m=1m] Factor2[1MHz=1.0E6Hz][1s=1s]

missing searching value
 
 
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