User:Gah4/sandbox

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Wave function

Quad FM

50 Hz to 15 kHz Main Channel (sum of all 4 channels) (LF+LR+RF+RR) signal, for mono FM listening compatibility.

23 to 53 kHz (cosine quadrature subcarrier) (LF+LR) - (RF+RR) Left minus Right difference signal. This signal's modulation in algebraic sum and difference with the Main channel is used for 2 channel stereo listener compatibility.

23 to 53 kHz (sine quadrature 38 kHz subcarrier) (LF+RF) - (LR+RR) Front minus Back difference signal. This signal's modulation in algebraic sum and difference with the Main channel and all the other subcarriers is used for the Quadraphonic listener.

61 to 91 kHz (cosine quadrature 76 kHz subcarrier) (LF+RR) - (LR+RF) Diagonal difference signal. This signal's modulation in algebraic sum and difference with the main channel and all the other subcarriers is also used for the Quadraphonic listener.

(LF+LR+RF+RR) + ((LF+LR) - (RF+RR)) cos(2*pi*38kHz) + ((LF+RF) - (LR+RR)) sin(2*pi*38kHz) + ((LF+RR) - (LR+RF)) * cos(4*pi*38kHz)

Activation Product Table

class="wikitable"

|+ Half-lives and decay branching fractions for activation products{{cite web|title=Half-lives and decay branching fractions for activation products|url=https://www-nds.iaea.org/sgnucdat/d1.htm|website=www-nds.iaea.org|publisher=IAEA|accessdate=11 November 2016}}

3H12.312 ± 0.025 yβ-1.0LNHB
10Be( 1.51 ± 0.06 ) x 106 yβ-1.0ENSDF
14C( 5.7 ± 0.03 ) x 103 yβ-1.0LNHB
15C2.449 ± 0.005 sβ-1.0ENSDF
16N7.13 ± 0.02 sβ-1.0ENSDF
19O26.88 ± 0.05 sβ-1.0ENSDF
rowspan="2"|22Narowspan="2"|950.57 ± 0.23 dEC0.1011 ± 0.0002arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
-+0.8989 ± 0.0002a
24Na0.62329 ± 0.00006 dβ-1.0IAEA-CRP-XG
27Mg9.458 ± 0.012 mβ-1.0ENSDF
rowspan="2"|26Alrowspan="2"|( 7.17 ± 0.24 ) x 105 yEC0.1825 ± 0.0023browspan="2"|LNHBrowspan="2"|[2]
-+0.8175 ± 0.0023b
35S87.32 ± 0.16 dβ-1.0LNHB
rowspan="2"|36Clrowspan="2"|( 0.01 ± 0.03 ) x 105 yEC0.019 ± 0.001rowspan="2"|LNHB
-0.981 ± 0.001
39Ar269 ± 3 yβ-1.0ENSDF
41Ar109.61 ± 0.04 mβ-1.0ENSDF
rowspan="2"|40Krowspan="2"|( 4.563 ± 0.013 ) x 1011 dEC0.1086 ± 0.0013arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
-0.8914 ± 0.0013a
42K12.36 ± 0.012 hβ-1.0ENSDF
41Ca( 1.02 ± 0.07 ) x 105 yEC1.0ENSDF
45Ca162.61 ± 0.09 dβ-1.0ENSDF
47Sc3.3492 ± 0.0006 dβ-1.0ENSDF
48Sc43.67 ± 0.09 hβ-1.0ENSDF
51Cr27.7009 ± 0.002 dEC1.0IAEA-CRP-XG
54Mn312.29 ± 0.26 dEC1.0IAEA-CRP-XG
56Mn0.107449 ± 0.000019 dβ-1.0IAEA-CRP-XG
55Fe( 1.0027 ± 0.0023 ) x 103 dEC1.0IAEA-CRP-XG
59Fe44.494 ± 0.013 dβ-1.0IAEA-CRP-XG
57Co271.8 ± 0.05 dEC1.0IAEA-CRP-XG
rowspan="2"|58Corowspan="2"|70.86 ± 0.06 dβ-+0.15 ± 0.0020arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
|EC0.85 ± 0.0020a
60Co( 1.92523 ± 0.00027 ) x 103 dβ-1.0IAEA-CRP-XG
59Ni( 7.6 ± 0.5 ) x 104 yEC1.0ENSDF
63Ni98.7 ± 2.4 yβ-1.0LNHB
65Ni2.51719 ± 0.00026 hβ-1.0ENSDF
rowspan="3"|64Curowspan="3"|0.52929 ± 0.00018 dβ-+0.179 ± 0.002arowspan="3"|IAEA-CRP-XGrowspan="3"|[1]
-0.39 ± 0.003a
|EC0.431 ± 0.005a
66Cu5.12 ± 0.014 mβ-1.0ENSDF
rowspan="2"|65Znrowspan="2"|243.86 ± 0.2 dβ-+0.0142 ± 0.0001arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
|EC0.9858 ± 0.0001a
93mNb( 5.73 ± 0.22 ) x 103 dIT1.0IAEA-CRP-XG
93Mo( 4.0 ± 0.8 ) x 103 yEC1.0ENSDF
rowspan="2"|99mTcrowspan="2"|0.250281 ± 0.000022 dβ-0.000037 ± 0.000006arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
|IT0.999963 ± 0.000006a
rowspan="2"|110mAgrowspan="2"|249.85 ± 0.1 dIT0.0136 ± 0.0008arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
-0.9864 ± 0.0008a
rowspan="2"|115mInrowspan="2"|4.486 ± 0.004 hβ-0.05 ± 0.008rowspan="2"|ENSDF
|IT0.95 ± 0.008
rowspan="2"|126Irowspan="2"|12.93 ± 0.05 dβ-0.473 ± 0.006rowspan="2"|ENSDF
|EC0.527 ± 0.006
175Hf70 ± 2 dEC1.0ENSDF
181Hf42.39 ± 0.06 dβ-1.0ENSDF
182Ta114.43 ± 0.04 dβ-1.0ENSDF
181W121.2 ± 0.2 dEC1.0ENSDF
185W75.1 ± 0.3 dβ-1.0ENSDF
187W23.72 ± 0.06 hβ-1.0ENSDF
198Au2.695 ± 0.0007 dβ-1.0IAEA-CRP-XG
197Hg64.14 ± 0.05 hEC1.0ENSDF
203Hg46.594 ± 0.012 dβ-1.0IAEA-CRP-XG

class="wikitable"
LNHB

| Laboratoire National Henri Becquerel, Recommended Data, http://www.nucleide.org/DDEP_WG/DDEPdata.htm, 5 June 2008.

style="width: 12em;"| IAEA-CRP-XG

| M.-M. Bé, V.P. Chechev, R. Dersch, O.A.M. Helene, R.G. Helmer, M. Herman, S. Hlav ác , A. Marcinkowski, G.L. Molnár, A.L. Nichols, E. Schönfeld, V.R. Vanin, M.J. Woods, IAEA CRP "Update of X Ray and Gamma Ray Decay Data Standards for Detector Calibration and Other Applications", IAEA Scientific and Technical Information report STI/PUB/1287, May 2007, International Atomic Energy Agency, Vienna, Austria, {{ISBN|92-0-113606-4}}.

ENSDF

| Evaluated Nuclear Structure Data File, http://www-nds.iaea.org/ensdf/, 5 June 2008.

[1] Branching fractions from LNHB database.

[2] Branching fractions renormalised to sum to 1.0..

Activation product half lives

class="wikitable"

|+ Lives and decay branching fractions for activation products.

NuclideHalf-lifeDecay modebranching fractionSourceNotes
{{nuclide2|H|3}}12.312 ± 0.025 yβ-1.0LNHB
{{nuclide2|Be|10}}( 1.51 ± 0.06 ) x 106 yβ-1.0ENSDF
{{nuclide2|C|14}}( 5.7 ± 0.03 ) x 103 yβ-1.0LNHB
{{nuclide2|C|15}}2.449 ± 0.005 sβ-1.0ENSDF
{{nuclide2|N|16}}7.13 ± 0.02 sβ-1.0ENSDF
{{nuclide2|O|19}}26.88 ± 0.05 sβ-1.0ENSDF
rowspan="2"|{{nuclide2|Na|22}}rowspan="2"|950.57 ± 0.23 dEC0.1011 ± 0.0002arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
-+0.8989 ± 0.0002a
{{nuclide2|Na|24}}0.62329 ± 0.00006 dβ-1.0IAEA-CRP-XG
{{nuclide2|Mg|27}}9.458 ± 0.012 mβ-1.0ENSDF
rowspan="2"|{{nuclide2|Al|26}}rowspan="2"|( 7.17 ± 0.24 ) x 105 yEC0.1825 ± 0.0023browspan="2"|LNHBrowspan="2"|[2]
-+0.8175 ± 0.0023b
{{nuclide2|S|35}}87.32 ± 0.16 dβ-1.0LNHB
rowspan="2"|{{nuclide2|Cl|36}}rowspan="2"|( 0.01 ± 0.03 ) x 105 yEC0.019 ± 0.001rowspan="2"|LNHB
-0.981 ± 0.001
{{nuclide2|Ar|39}}269 ± 3 yβ-1.0ENSDF
{{nuclide2|Ar|41}}109.61 ± 0.04 mβ-1.0ENSDF
rowspan="2"|{{nuclide2|K|40}}rowspan="2"|( 4.563 ± 0.013 ) x 1011 dEC0.1086 ± 0.0013arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
-0.8914 ± 0.0013a
{{nuclide2|K|42}}12.36 ± 0.012 hβ-1.0ENSDF
{{nuclide2|Ca|41}}( 1.02 ± 0.07 ) x 105 yEC1.0ENSDF
{{nuclide2|Ca|45}}162.61 ± 0.09 dβ-1.0ENSDF
{{nuclide2|Sc|47}}3.3492 ± 0.0006 dβ-1.0ENSDF
{{nuclide2|Sc|48}}43.67 ± 0.09 hβ-1.0ENSDF
{{nuclide2|Cr|51}}27.7009 ± 0.002 dEC1.0IAEA-CRP-XG
{{nuclide2|Mn|54}}312.29 ± 0.26 dEC1.0IAEA-CRP-XG
{{nuclide2|Mn|56}}0.107449 ± 0.000019 dβ-1.0IAEA-CRP-XG
{{nuclide2|Fe|55}}( 1.0027 ± 0.0023 ) x 103 dEC1.0IAEA-CRP-XG
{{nuclide2|Fe|59}}44.494 ± 0.013 dβ-1.0IAEA-CRP-XG
{{nuclide2|Co|57}}271.8 ± 0.05 dEC1.0IAEA-CRP-XG
rowspan="2"|{{nuclide2|Co|58}}rowspan="2"|70.86 ± 0.06 dβ-+0.15 ± 0.0020arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
|EC0.85 ± 0.0020a
{{nuclide2|Co|60}}( 1.92523 ± 0.00027 ) x 103 dβ-1.0IAEA-CRP-XG
{{nuclide2|Ni|59}}( 7.6 ± 0.5 ) x 104 yEC1.0ENSDF
{{nuclide2|Ni|63}}98.7 ± 2.4 yβ-1.0LNHB
{{nuclide2|Ni|65}}2.51719 ± 0.00026 hβ-1.0ENSDF
rowspan="3"|{{nuclide2|Cu|64}}rowspan="3"|0.52929 ± 0.00018 dβ-+0.179 ± 0.002arowspan="3"|IAEA-CRP-XGrowspan="3"|[1]
-0.39 ± 0.003a
|EC0.431 ± 0.005a
{{nuclide2|Cu|66}}5.12 ± 0.014 mβ-1.0ENSDF
rowspan="2"|{{nuclide2|Zn|65}}rowspan="2"|243.86 ± 0.2 dβ-+0.0142 ± 0.0001arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
|EC0.9858 ± 0.0001a
{{nuclide2|Nb|93m}}( 5.73 ± 0.22 ) x 103 dIT1.0IAEA-CRP-XG
{{nuclide2|Mo|93}}( 4.0 ± 0.8 ) x 103 yEC1.0ENSDF
rowspan="2"|{{nuclide2|Tc|99m}}rowspan="2"|0.250281 ± 0.000022 dβ-0.000037 ± 0.000006arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
|IT0.999963 ± 0.000006a
rowspan="2"|{{nuclide2|Ag|110m}}rowspan="2"|249.85 ± 0.1 dIT0.0136 ± 0.0008arowspan="2"|IAEA-CRP-XGrowspan="2"|[1]
-0.9864 ± 0.0008a
rowspan="2"|{{nuclide2|In|115m}}rowspan="2"|4.486 ± 0.004 hβ-0.05 ± 0.008rowspan="2"|ENSDF
|IT0.95 ± 0.008
rowspan="2"|{{nuclide2|I|126}}rowspan="2"|12.93 ± 0.05 dβ-0.473 ± 0.006rowspan="2"|ENSDF
|EC0.527 ± 0.006
{{nuclide2|Hf|175}}70 ± 2 dEC1.0ENSDF
{{nuclide2|Hf|181}}42.39 ± 0.06 dβ-1.0ENSDF
{{nuclide2|Ta|182}}114.43 ± 0.04 dβ-1.0ENSDF
{{nuclide2|W|181}}121.2 ± 0.2 dEC1.0ENSDF
{{nuclide2|W|185}}75.1 ± 0.3 dβ-1.0ENSDF
{{nuclide2|W|187}}23.72 ± 0.06 hβ-1.0ENSDF
{{nuclide2|Au|198}}2.695 ± 0.0007 dβ-1.0IAEA-CRP-XG
{{nuclide2|Hg|197}}64.14 ± 0.05 hEC1.0ENSDF
{{nuclide2|Hg|203}}46.594 ± 0.012 dβ-1.0IAEA-CRP-XG

Yields Table C3

class="wikitable" style="text-align:center"
+ Cumulative Fission Yields for U-235 (% per fission)
ProductThermal Fission YieldFast Fission Yield14-MeV Fission Yield
{{nuclide2|H|1}}0.00171 ± 0.000180.00269 ± 0.000440.00264 ± 0.00045
{{nuclide2|H|2}}0.00084 ± 0.000150.00082 ± 0.000120.00081 ± 0.00012
{{nuclide2|H|3}}0.0108 ± 0.00040.0108 ± 0.00040.0174 ± 0.0036
{{nuclide2|He|3}}0.0108 ± 0.00040.0108 ± 0.00040.0174 ± 0.0036
{{nuclide2|He|4}}0.1702 ± 0.00490.17 ± 0.00490.1667 ± 0.0088
{{nuclide2|Br|85}}1.304 ± 0.0121.309 ± 0.0431.64 ± 0.31
{{nuclide2|Kr|82}}0.000285 ± 0.0000760.00044 ± 0.000160.038 ± 0.012
{{nuclide2|Kr|85}}0.286 ± 0.0210.286 ± 0.0260.47 ± 0.1
{{nuclide2|Kr|85m}}1.303 ± 0.0121.307 ± 0.0431.65 ± 0.31
{{nuclide2|Sr|90}}5.73 ± 0.135.22 ± 0.184.41 ± 0.18
{{nuclide2|Zr|95}}6.502 ± 0.0726.349 ± 0.0835.07 ± 0.19
{{nuclide2|Nb|94}}0.00000042 ± 0.000000112.90 x 10-8 ± 7.70 x 10-90.00004 ± 0.000015
{{nuclide2|Nb|95}}6.498 ± 0.0726.345 ± 0.0835.07 ± 0.19
{{nuclide2|Nb|95m}}0.0702 ± 0.00670.0686 ± 0.00710.0548 ± 0.0072
{{nuclide2|Mo|92}}0 ± 00 ± 00 ± 0
{{nuclide2|Mo|94}}8.70 x 10-10 ± 3.20 x 10-100 ± 06.20 x 10-8 ± 2.50 x 10-8
{{nuclide2|Mo|96}}0.00042 ± 0.000150.000069 ± 0.0000250.0033 ± 0.0015
{{nuclide2|Mo|99}}6.132 ± 0.0925.8 ± 0.135.02 ± 0.13
{{nuclide2|Tc|99}}6.132 ± 0.0925.8 ± 0.135.02 ± 0.13
{{nuclide2|Ru|103}}3.103 ± 0.0843.248 ± 0.0423.14 ± 0.11
{{nuclide2|Ru|106}}0.41 ± 0.0110.469 ± 0.0362.15 ± 0.59
{{nuclide2|Rh|106}}0.41 ± 0.0110.469 ± 0.0362.15 ± 0.59
{{nuclide2|Sn|121m}}0.00106 ± 0.000110.0039 ± 0.000910.142 ± 0.023
{{nuclide2|Sb|122}}0.000000366 ± 0.0000000980.0000004 ± 0.000000140.00193 ± 0.00068
{{nuclide2|Sb|124}}0.000089 ± 0.0000210.000112 ± 0.0000340.027 ± 0.01
{{nuclide2|Sb|125}}0.026 ± 0.00140.067 ± 0.0111.42 ± 0.42
{{nuclide2|Te|132}}4.276 ± 0.0434.639 ± 0.0653.85 ± 0.16
{{nuclide2|I|129}}0.706 ± 0.0321.03 ± 0.261.59 ± 0.18
{{nuclide2|I|131}}2.878 ± 0.0323.365 ± 0.0544.11 ± 0.14
{{nuclide2|I|133}}6.59 ± 0.116.61 ± 0.135.42 ± 0.4
{{nuclide2|I|135}}6.39 ± 0.226.01 ± 0.184.8 ± 1.4
{{nuclide2|Xe|128}}0 ± 00 ± 00.00108 ± 0.00048
{{nuclide2|Xe|130}}0.000038 ± 0.00000980.000152 ± 0.0000550.038 ± 0.014
{{nuclide2|Xe|131m}}0.0313 ± 0.0030.0365 ± 0.00310.047 ± 0.0049
{{nuclide2|Xe|133}}6.6 ± 0.116.61 ± 0.135.57 ± 0.41
{{nuclide2|Xe|133m}}0.189 ± 0.0150.19 ± 0.0150.281 ± 0.049
{{nuclide2|Xe|135}}6.61 ± 0.226.32 ± 0.186.4 ± 1.8
{{nuclide2|Xe|135m}}1.22 ± 0.121.23 ± 0.132.17 ± 0.66
{{nuclide2|Cs|134}}0.0000121 ± 0.00000320.0000279 ± 0.00000730.0132 ± 0.0035
{{nuclide2|Cs|137}}6.221 ± 0.0695.889 ± 0.0965.6 ± 1.3
{{nuclide2|Ba|140}}6.314 ± 0.0955.959 ± 0.0484.474 ± 0.081
{{nuclide2|La|140}}6.315 ± 0.0955.96 ± 0.0484.508 ± 0.081
{{nuclide2|Ce|141}}5.86 ± 0.155.795 ± 0.0814.44 ± 0.2
{{nuclide2|Ce|144}}5.474 ± 0.0555.094 ± 0.0763.154 ± 0.038
{{nuclide2|Pr|144}}5.474 ± 0.0555.094 ± 0.0763.155 ± 0.038
{{nuclide2|Nd|142}}6.30 x 10-9 ± 1.70 x 10-91.70 x 10-9 ± 4.80 x 10-100.0000137 ± 0.0000049
{{nuclide2|Nd|144}}5.475 ± 0.0555.094 ± 0.0763.155 ± 0.038
{{nuclide2|Nd|147}}2.232 ± 0.042.148 ± 0.0281.657 ± 0.045
{{nuclide2|Pm|147}}2.232 ± 0.042.148 ± 0.0281.657 ± 0.045
{{nuclide2|Pm|148}}5.00 x 10-8 ± 1.70 x 10-87.40 x 10-9 ± 2.50 x 10-90.0000013 ± 0.00000042
{{nuclide2|Pm|148m}}0.000000104 ± 0.0000000391.78 x 10-8 ± 6.60 x 10-90.0000048 ± 0.0000018
{{nuclide2|Pm|149}}1.053 ± 0.0211.064 ± 0.030.557 ± 0.09
{{nuclide2|Pm|151}}0.4204 ± 0.00710.431 ± 0.0150.388 ± 0.061
{{nuclide2|Sm|148}}0.000000149 ± 0.0000000412.43 x 10-8 ± 6.80 x 10-90.0000058 ± 0.0000018
{{nuclide2|Sm|150}}0.000061 ± 0.0000220.0000201 ± 0.00000770.00045 ± 0.00018
{{nuclide2|Sm|151}}0.4204 ± 0.00710.431 ± 0.0150.388 ± 0.061
{{nuclide2|Sm|153}}0.1477 ± 0.00710.1512 ± 0.00970.23 ± 0.015
{{nuclide2|Eu|151}}0.4204 ± 0.00710.431 ± 0.0150.388 ± 0.061
{{nuclide2|Eu|152}}3.24 x 10-10 ± 8.50 x 10-110 ± 03.30 x 10-8 ± 1.10 x 10-8
{{nuclide2|Eu|154}}0.000000195 ± 0.0000000644.00 x 10-8 ± 1.10 x 10-80.0000033 ± 0.0000011
{{nuclide2|Eu|155}}0.0308 ± 0.00130.044 ± 0.010.088 ± 0.014

class="wikitable" style="text-align:center"
+ Cumulative Fission Yields for Pu-239 (% per fission)
ProductThermal Fission YieldFast Fission Yield14-MeV Fission Yield
{{nuclide2|H|1}}0.00408 ± 0.000410.00346 ± 0.00057|
{{nuclide2|H|2}}0.00135 ± 0.000190.00106 ± 0.00016|
{{nuclide2|H|3}}0.0142 ± 0.00070.0142 ± 0.0007|
{{nuclide2|He|3}}0.0142 ± 0.00070.0142 ± 0.0007|
{{nuclide2|He|4}}0.2192 ± 0.0090.219 ± 0.009|
{{nuclide2|Br|85}}0.574 ± 0.0260.617 ± 0.049|
{{nuclide2|Kr|82}}0.00175 ± 0.00060.00055 ± 0.0002|
{{nuclide2|Kr|85}}0.136 ± 0.0140.138 ± 0.017|
{{nuclide2|Kr|85m}}0.576 ± 0.0260.617 ± 0.049|
{{nuclide2|Sr|90}}2.013 ± 0.0542.031 ± 0.057|
{{nuclide2|Zr|95}}4.949 ± 0.0994.682 ± 0.098|
{{nuclide2|Nb|94}}0.0000168 ± 0.00000450.00000255 ± 0.00000069|
{{nuclide2|Nb|95}}4.946 ± 0.0994.68 ± 0.098|
{{nuclide2|Nb|95m}}0.0535 ± 0.00660.0506 ± 0.0062|
{{nuclide2|Mo|92}}0 ± 00 ± 0|
{{nuclide2|Mo|94}}3.60 x 10-8 ± 1.30 x 10-84.80 x 10-9 ± 1.70 x 10-9|
{{nuclide2|Mo|96}}0.0051 ± 0.00180.0017 ± 0.00062|
{{nuclide2|Mo|99}}6.185 ± 0.0565.82 ± 0.13|
{{nuclide2|Tc|99}}6.184 ± 0.0565.82 ± 0.13|
{{nuclide2|Ru|103}}6.948 ± 0.0836.59 ± 0.16|
{{nuclide2|Ru|106}}4.188 ± 0.0924.13 ± 0.24|
{{nuclide2|Rh|106}}4.188 ± 0.0924.13 ± 0.24|
{{nuclide2|Sn|121m}}0.0052 ± 0.00110.0053 ± 0.0012|
{{nuclide2|Sb|122}}0.000024 ± 0.00000630.0000153 ± 0.000005|
{{nuclide2|Sb|124}}0.00228 ± 0.000490.00154 ± 0.00043|
{{nuclide2|Sb|125}}0.117 ± 0.0150.138 ± 0.022|
{{nuclide2|Te|132}}5.095 ± 0.0944.92 ± 0.32|
{{nuclide2|I|129}}1.407 ± 0.0861.31 ± 0.13|
{{nuclide2|I|131}}3.724 ± 0.0784.09 ± 0.12|
{{nuclide2|I|133}}6.97 ± 0.136.99 ± 0.33|
{{nuclide2|I|135}}6.33 ± 0.236.24 ± 0.22|
{{nuclide2|Xe|128}}0.00000234 ± 0.000000850.0000025 ± 0.0000012|
{{nuclide2|Xe|130}}0.00166 ± 0.000560.00231 ± 0.00085|
{{nuclide2|Xe|131m}}0.0405 ± 0.0040.0444 ± 0.0044|
{{nuclide2|Xe|133}}6.99 ± 0.137.03 ± 0.33|
{{nuclide2|Xe|133m}}0.216 ± 0.0160.223 ± 0.021|
{{nuclide2|Xe|135}}7.36 ± 0.247.5 ± 0.23|
{{nuclide2|Xe|135m}}1.78 ± 0.211.97 ± 0.25|
{{nuclide2|Cs|134}}0.00067 ± 0.000180.00115 ± 0.0003|
{{nuclide2|Cs|137}}6.588 ± 0.086.35 ± 0.12|
{{nuclide2|Ba|140}}5.322 ± 0.0595.303 ± 0.074|
{{nuclide2|La|140}}5.333 ± 0.0595.324 ± 0.075|
{{nuclide2|Ce|141}}5.205 ± 0.0735.01 ± 0.16|
{{nuclide2|Ce|144}}3.755 ± 0.033.504 ± 0.053|
{{nuclide2|Pr|144}}3.756 ± 0.033.505 ± 0.053|
{{nuclide2|Nd|142}}0.00000145 ± 0.00000040.00000251 ± 0.00000072|
{{nuclide2|Nd|144}}3.756 ± 0.033.505 ± 0.053|
{{nuclide2|Nd|147}}2.044 ± 0.0391.929 ± 0.046|
{{nuclide2|Pm|147}}2.044 ± 0.0391.929 ± 0.046|
{{nuclide2|Pm|148}}0.0000056 ± 0.00000190.000012 ± 0.000004|
{{nuclide2|Pm|148m}}0.0000118 ± 0.00000440.000029 ± 0.000011|
{{nuclide2|Pm|149}}1.263 ± 0.0321.275 ± 0.056|
{{nuclide2|Pm|151}}0.776 ± 0.0180.796 ± 0.037|
{{nuclide2|Sm|148}}0.0000168 ± 0.00000460.000039 ± 0.000011|
{{nuclide2|Sm|150}}0.00227 ± 0.000780.0051 ± 0.0019|
{{nuclide2|Sm|151}}0.776 ± 0.0180.797 ± 0.037|
{{nuclide2|Sm|153}}0.38 ± 0.030.4 ± 0.18|
{{nuclide2|Eu|151}}0.776 ± 0.0180.797 ± 0.037|
{{nuclide2|Eu|152}}0.000000195 ± 0.000000050.00000048 ± 0.00000014|
{{nuclide2|Eu|154}}0.000049 ± 0.0000120.000127 ± 0.000043|
{{nuclide2|Eu|155}}0.174 ± 0.030.171 ± 0.054|

Half Lives

class="wikitable"

|+ Half-lives and decay branching fractions for fission products

NuclideHalf-lifeDecay modeBranching fractionSourceNotes
{{nuclide2|Br|85}}2.9 ± 0.06 mβ-1.0ENSDF[1]
{{nuclide2|Kr|85}}10.752 ± 0.023 yβ-1.0BIPM-5
rowspan="2"|{{nuclide2|Kr|85m}}rowspan="2"|4.48 ± 0.008 hIT0.214 ± 0.005rowspan="2"|ENSDF
-0.786 ± 0.005
{{nuclide2|Sr|90}}28.8 ± 0.07 yβ-1.0LNHB
{{nuclide2|Zr|95}}64.032 ± 0.006 dβ-1.0LNHB
{{nuclide2|Nb|94}}( 7.3 ± 0.9 ) x 106 dβ-1.0IAEA-CRP-XG
rowspan="2"|{{nuclide2|Nb|95m}}rowspan="2"|3.61 ± 0.03 dβ-0.025 ± 0.001rowspan="2"|LNHBrowspan="2"|[2]
|IT0.975 ± 0.001
{{nuclide2|Nb|95}}34.985 ± 0.012 dβ-1.0IAEA-CRP-XG
{{nuclide2|Tc|99}}(2.111 ± 0.012) x 105 yβ-1.0ENSDF
{{nuclide2|Ru|103}}39.247 ± 0.013 dβ-1.0IAEA-CRP-XG
{{nuclide2|Ru|106}}1.018 ± 0.005 yβ-1.0IAEA-CRP-XG
{{nuclide2|Rh|106}}30.1 ± 0.3 sβ-1.0IAEA-CRP-XG
rowspan="2"|{{nuclide2|Sn|121m}}rowspan="2"|55 ± 5 yβ-0.224 ± 0.02rowspan="2"|ENSDF
|IT0.776 ± 0.02
rowspan="2"|{{nuclide2|Sb|122}}rowspan="2"|2.7238 ± 0.0002 dEC0.0241 ± 0.0012rowspan="2"|ENSDF
-0.9759 ± 0.0012
{{nuclide2|Sb|124}}60.2 ± 0.03 dβ-1.0ENSDF
{{nuclide2|Sb|125}}2.7584 ± 0.0006 yβ-1.0IAEA-CRP-XG
{{nuclide2|I|129}}( 5.89 ± 0.23 ) x 109 dβ-1.0IAEA-CRP-XG
{{nuclide2|I|131}}8.0233 ± 0.0019 dβ-1.0BIPM-5
{{nuclide2|I|133}}20.87 ± 0.08 hβ-1.0LNHB[3]
{{nuclide2|I|135}}6.57 ± 0.02 hβ-1.0ENSDF
{{nuclide2|Xe|131m}}11.930 ± 0.016 dIT1.0BIPM-5
{{nuclide2|Xe|133}}5.243 ± 0.001 dβ-1.0ENSDF
{{nuclide2|Xe|133m}}2.19 ± 0.01 dIT1.0ENSDF
{{nuclide2|Xe|135}}9.14 ± 0.02 hβ-1.0ENSDF
rowspan="2"|{{nuclide2|Xe|135m}}rowspan="2"|15.29 ± 0.05 mβ-0.003 ± 0.003rowspan="2"|ENSDFrowspan="2"|[4]
|IT0.997 ± 0.003
rowspan="2"|{{nuclide2|Cs|134}}rowspan="2"|2.063 ± 0.003 yEC0.000003 ± 0.000001rowspan="2"|IAEA-CRP-XGrowspan="2"|[5]
-0.999997 ± 0.000001
{{nuclide2|Cs|137}}30.05 ± 0.08 yβ-1.0IAEA-CRP-XG
{{nuclide2|Ba|140}}12.753 ± 0.004 dβ-1.0BIPM-5
{{nuclide2|La|140}}1.67850 ± 0.00017 dβ-1.0BIPM-5
{{nuclide2|Ce|141}}32.508 ± 0.010 dβ-1.0LNHB
{{nuclide2|Ce|144}}285.1 ± 0.6 dβ-1.0IAEA-CRP-XG
{{nuclide2|Pr|144}}17.28 ± 0.05 mβ-1.0ENSDF
{{nuclide2|Nd|147}}10.98 ± 0.01 dβ-1.0ENSDF
{{nuclide2|Pm|147}}2.6234 ± 0.0002 yβ-1.0ENSDF
rowspan="2"|{{nuclide2|Pm|148m}}rowspan="2"|41.29 ± 0.11 dIT0.042 ± 0.007rowspan="2"|ENSDF
-0.958 ± 0.007
{{nuclide2|Pm|148}}5.368 ± 0.002 dβ-1.0ENSDF
{{nuclide2|Pm|149}}2.2117 ± 0.0021 dβ-1.0ENSDF
{{nuclide2|Pm|151}}1.1833 ± 0.0017 dβ-1.0ENSDF
{{nuclide2|Sm|151}}90 ± 6 yβ-1.0ENSDF
{{nuclide2|Sm|153}}1.938 ± 0.010 dβ-1.0IAEA-CRP-XG
rowspan="2"|{{nuclide2|Eu|152}}rowspan="2"|( 4.941 ± 0.007 ) x 103 dβ-0.279 ± 0.003rowspan="2"|IAEA-CRP-XGrowspan="2"|[6]
|EC0.721 ± 0.003
rowspan="2"|{{nuclide2|Eu|154}}rowspan="2"|( 3.1381 ± 0.0014 ) x 103 dEC0.00018 ± 0.00013rowspan="2"|IAEA-CRP-XGrowspan="2"|[6]
-0.99982 ± 0.00013
{{nuclide2|Eu|155}}4.753 ± 0.016 yβ-1.0IAEA-CRP-XG

class="wikitable"

|+ References

style="width: 12em;"|BIPM-5

| style="width: 40em;"| M.-M. Bé, V. Chisté, C. Dulieu, E. Browne, V. Chechev, N. Kuzmenko, R. Helmer, A. Nichols,

E. Schönfeld, R. Dersch, Monographie BIPM-5, Table of Radionuclides, Vol. 2 - A = 151 to 242, 2004.

LNHB

| Laboratoire National Henri Becquerel, Recommended Data,

http://www.nucleide.org/DDEP_WG/DDEPdata.htm, 16 January 2006.

IAEA-CRP-XG

| style="width: 60em;"| M.-M. Bé, V.P. Chechev, R. Dersch, O.A.M. Helene, R.G. Helmer, M. Herman, S. Hlavác,

A. Marcinkowski, G.L. Molnár, A.L. Nichols, E. Schönfeld, V.R. Vanin, M.J. Woods, IAEA CRP "Update of X-ray and Gamma-ray Decay Data Standards for Detector Calibration and Other Applications", IAEA Scientific and Technical Information report STI/PUB/1287, May 2007, International Atomic Energy Agency, Vienna, Austria, {{ISBN|92-0-113606-4}}.

ENSDF

| Evaluated Nuclear Structure Data File, http://www-nds.iaea.org/ensdf/, 26 January 2006.

class="wikitable"

|+ Notes

style="width: 72em;"|[1] β- decay branches of 0.9982 ± 0.0002 to Kr-85m and 0.0018 ± 0.0002 to Kr-85.
[2] ENSDF branching fractions: 0.944 ± 0.007 for IT and 0.056 ± 0.007 for β-.
[3] β- decay branch of 0.0288 ± 0.0002 to Xe-133m.
[4] Branching fractions were averaged from ENSDF database.
[5] Branching fractions were adopted from ENSDF database.
[6] Branching fractions were adopted from LNHB data.

Test

{{#if:{{CheckElement|nocategory=|link=|H|3|}}|{{CheckElement|nocategory=|link=|H|3|}}|{{Physics particle|link={{#if:|{{LinkForElement|nocategory=|H|3|}}}}|anti=|{{SymbolForElement|nocategory=|H}}|TL={{#if:3|3|{{#expr:{{NeutronsForElement|nocategory=|H}}+{{ProtonsForElement|nocategory=|H}}}}}}|BL={{ProtonsForElement|nocategory=|H}}|BLc={{DigitsInNumber|{{ProtonsForElement|nocategory=|H}}}}|TR=}}}}

class="wikitable"

|+ Half-lives and decay branching fractions for activation products

style="width: 1em;" |NuclideHalf-lifeDecay modebranching fractionSourceNotes
{{nuclide2|H|3}}12.312 ± 0.025 yβ-1.0LNHB
{{nuclide2|Be|10}}( 1.51 ± 0.06 ) x 106 yβ-1.0ENSDF

{{Tl|citation needed span}}

{{Tl|citation needed span}}

Table A1

class="wikitable"

|+ Half-lives and branching fractions for actinides and natural decay products

!Nuclide!!Half-life!!Decay mode !!Branching fraction!!Source

{{nuclide2|Tl|206}}4.202 ± 0.011 mβ-1.0LNHB
{{nuclide2|Tl|208}}3.060 ± 0.008 mβ-1.0BIPM-5
rowspan="2"|{{nuclide2|Pb|210}}rowspan="2"|22.20 ± 0.22 yβ-1.0rowspan="2"|ENSDF
( 1.9 ± 0.4 ) x 10-8
{{nuclide2|Pb|211}}36.1 ± 0.2 mβ-1.0ENSDF
{{nuclide2|Pb|212}}10.64 ± 0.01 hβ-1.0BIPM-5
{{nuclide2|Pb|214}}26.8 ± 0.9 mβ-1.0ENSDF
rowspan="2"|{{nuclide2|Bi|211}}rowspan="2"|2.14 ± 0.02 mβ-0.00276 ± 0.00004rowspan="2"|ENSDF
0.99724 ± 0.00004
rowspan="2"|{{nuclide2|Bi|212}}rowspan="2"|60.54 ± 0.06 mα0.3593 ± 0.0007rowspan="2"|BIPM-5
-0.6407 ± 0.0007
rowspan="2"|{{nuclide2|Bi|214}}rowspan="2"|19.9 ± 0.4 mα0.00021 ± 0.00001rowspan="2"|ENSDF
-0.99979 ± 0.00001
{{nuclide2|Po|210}}138.376 ± 0.002 dα1.0ENSDF
{{nuclide2|Rn|219}}3.96 ± 0.01 sα1.0ENSDF
{{nuclide2|Rn|220}}55.8 ± 0.3 sα1.0BIPM-5
rowspan="2"|{{nuclide2|Fr|221}}rowspan="2"|4.9 ± 0.2 mβ-0.00005 ± 0.00003rowspan="2"|ENSDF
0.99995 ± 0.00003
rowspan="2"|{{nuclide2|Ra|223}}rowspan="2"|11.43 ± 0.05 dα1.0rowspan="2"|ENSDF
|14C( 8.9 ± 0.4 ) x 10-10
{{nuclide2|Ra|224}}3.627 ± 0.007 dα1.0BIPM-5
{{nuclide2|Ra|225}}14.9 ± 0.2 dβ-1.0ENSDF
{{nuclide2|Ra|226}}( 1.600 ± 0.007 ) x 103 yα1.0BIPM-5
{{nuclide2|Ra|228}}5.75 ± 0.03 yβ-1.0ENSDF
rowspan="2"|{{nuclide2|Ac|224}}rowspan="2"|2.78 ± 0.17 hα0.091 +0.020 -0.014rowspan="2"|ENSDF
|EC0.909 +0.014 -0.020
{{nuclide2|Ac|225}}10.0 ± 0.1 dα1.0ENSDF
rowspan="2"|{{nuclide2|Ac|227}}rowspan="2"|21.772 ± 0.003 yα0.01380 ± 0.00004rowspan="2"|ENSDF
-0.98620 ± 0.00004
{{nuclide2|Ac|228}}6.15 ± 0.02 hβ-1.0ENSDF
{{nuclide2|Th|227}}18.718 ± 0.005 dα1.0BIPM-5
{{nuclide2|Th|228}}698.60 ± 0.23 dα1.0BIPM-5
{{nuclide2|Th|229}}( 7.34 ± 0.16 ) x 103 yα1.0ENSDF
rowspan="2"|{{nuclide2|Th|230}}rowspan="2"|( 7.538 ± 0.030 ) x 104 yα1.0rowspan="2"|ENSDF
|SF≤ 4 x 10-13
rowspan="2"|{{nuclide2|Th|231}}rowspan="2"|25.52 ± 0.01 hβ-1.0rowspan="2"|ENSDF
~ 4 x 10-13
rowspan="2"|{{nuclide2|Th|232}}rowspan="2"|( 1.405 ± 0.006 ) x 1010 yα1.0rowspan="2"|ENSDF
|SF( 1.1 ± 0.4 ) x 10-11
{{nuclide2|Th|233}}22.15 ± 0.15 mβ-1.0LNHB
{{nuclide2|Th|234}}24.10 ± 0.03 dβ-1.0ENSDF
rowspan="2"|{{nuclide2|Pa|231}}rowspan="2"|( 3.276 ± 0.011 ) x 104 yα1.0rowspan="2"|ENSDF
|SF≤ 3 x 10-12
rowspan="2"|{{nuclide2|Pa|232}}rowspan="2"|1.32 ± 0.02 dEC0.00003 ± 0.00001rowspan="2"|ENSDF
-0.99997 ± 0.00001
{{nuclide2|Pa|233}}26.98 ± 0.02 dβ-1.0LNHB
{{nuclide2|Pa|234}}6.70 ± 0.05 hβ-1.0ENSDF
rowspan="2"|{{nuclide2|Pa|234m}}rowspan="2"|1.159 ± 0.016 mIT0.0016 ± 0.0002rowspan="2"|IAEA-CRP-XG
-0.9984 ± 0.0002
rowspan="2"|{{nuclide2|U|232}}rowspan="2"|68.9 ± 0.4 yα1.0rowspan="2"|ENSDF
|SF
rowspan="2"|{{nuclide2|U|233}}rowspan="2"|( 1.592 ± 0.002 ) x 105 yα1.0rowspan="2"|ENSDF
|SF
rowspan="2"|{{nuclide2|U|234}}rowspan="2"|( 2.455 ± 0.006 ) x 105 yα1.0rowspan="2"|LNHB
|SF( 1.6 ± 0.2 ) x 10-11
{{nuclide2|U|235m}}26 ± 1 mIT1.0ENSDF
rowspan="2"|{{nuclide2|U|235}}rowspan="2"|( 7.038 ± 0.005 ) x 108 yα1.0rowspan="2"|ENSDF
|SF( 7 ± 2 ) x 10-11
rowspan="2"|{{nuclide2|U|236}}rowspan="2"|( 2.342 ± 0.004 ) x 107 yα1.0rowspan="2"|ENSDF
|SF( 9.4 ± 0.4 ) x 10-10
{{nuclide2|U|237}}6.749 ± 0.016 dβ-1.0LNHB
rowspan="2"|{{nuclide2|U|238}}rowspan="2"|( 4.468 ± 0.005 ) x 109 yα1.0rowspan="2"|LNHB
|SF( 5.45 ± 0.04 ) x 10-7
{{nuclide2|U|239}}23.45 ± 0.02 mβ-1.0ENSDF
rowspan="3"|{{nuclide2|Np|236}}rowspan="3"|( 1.55 ± 0.08 ) x 105 yα0.0016 ± 0.0006rowspan="3"|LNHB
-0.120 ± 0.006
|EC0.878 ± 0.006
rowspan="2"|{{nuclide2|Np|236m}}rowspan="2"|22.5 ± 0.4 hβ-0.47 ± 0.01rowspan="2"|LNHB
|EC0.53 ± 0.01
rowspan="2"|{{nuclide2|Np|237}}rowspan="2"|( 2.144 ± 0.007 ) x 106 yα1.0rowspan="2"|ENSDF
|SF
{{nuclide2|Np|238}}2.117 ± 0.002 dβ-1.0ENSDF
{{nuclide2|Np|239}}2.356 ± 0.003 dβ-1.0ENSDF
{{nuclide2|Pu|236}}2.858 ± 0.008 yα1.0ENSDF

class="wikitable"

|+ References

style="width: 12em;"|LNHB

| style="width: 40em;"| Laboratoire National Henri Becquerel, Recommended Data,

http://www.nucleide.org/DDEP_WG/DDEPdata.htm, 3 October 2006.

BIPM-5

| M.-M. Bé, V. Chisté, C. Dulieu, E. Browne, V. Chechev, N. Kuzmenko, R. Helmer,

A. Nichols, E. Schönfeld, R. Dersch, Monographie BIPM-5, Table of Radionuclides,

Vol. 2 - A = 151 to 242, 2004.

ENSDF

| Evaluated Nuclear Structure Data File, http://www-nds.iaea.org/ensdf/,

15 November 2006.

IAEA-CRP-XG

| M.-M. Bé, V. P. Chechev, R. Dersch, O. A. M. Helene, R. G. Helmer, M. Herman,

S. Hlavác, A. Marcinkowski, G. L. Molnár, A. L. Nichols, E. Schönfeld, V. R. Vanin,

M. J. Woods, IAEA CRP "Update of X Ray and Gamma Ray Decay Data Standards for Detector Calibration and Other Applications", IAEA Scientific and Technical Information report STI/PUB/1287, May 2007, International Atomic Energy Agency, Vienna, Austria, ISBN 92-0-113606-4.

{{reflist-talk}}

radii

[https://webcache.googleusercontent.com/search?q=cache:4IjOn0ktJuQJ:https://arxiv.org/pdf/1505.06924+&cd=4&hl=en&ct=clnk&gl=us&client=firefox-b-1-d]

H1 (proton) 0.84fm

H2 (deuteron) radius: 2.13fm

He3 radius: 1.97fm

He4 radius: 1.681fm

Li6 radius: 2.59fm

convert

$125 million (equivalent to ${{Format price|{{Inflation|US-GDP|125000000|1979}}}} in {{Inflation/year|US-GDP}})

$125 million (equivalent to ${{Inflation|US-GDP|125|1979|r=0}} million in {{Inflation/year|US-GDP}})

table transclusion test

I removed __NOEDITSECTION__ from the table.

{{User:Gah4/sandbox/table}}

Leakage current detector interrupter

I leakage current detector interrupter attaches to a power cord and shuts power off if leakage current is detected inside the power cord. This commonly happens when someone puts a nail or tack through the cord, most commonly on window air conditioner units.

convert again

{{convert|2|cuyd|m3|disp=out}}

{{convert|2|nPa|torr}}

{{convert|2|nPa|torr|disp=out}}

{{convert|1|kg|lb|sigfig=20}}

{{convert|100002|kg|lb|round=25|sigfig=6}}

{{tl|ComplexNuclide2}} test

{{ComplexNuclide2|Helium|4}}

{{ComplexNuclide2|neutron}}

[[Special:WhatLinksHere/List_of_Nobel_laureates_by_university_affiliation]]

including tables

There is discussion above about edit links, which came do to testing of included tables. So far, I only have table includes in my sandbox, but would like to put them into some articles. The tables are computer generated, and should not be edited. Is there somewhere discussion or help pages on table inclusion? For one, where the tables should go? Gah4 (talk) 02:52, 25 February 2022 (UTC)

:

:{{ping|Gah4}} Table transclusion works like any other transclusion so I'm not sure which help you want. If tables are transcluded into articles then they should be in templates. There are ways to store multiple tables in the same template and only transclude a selected table. See Help:Labeled section transclusion for one way. Above I wrote: "If a transcluded page has section headings then they are included but the section edit link goes to the transcluded page with the section code". You can avoid such section edit links by outputting the section header with a parser function, e.g.: {{#if:1|== Section heading ==}}. The section edit link will also be omitted on the transcluded page. PrimeHunter (talk) 03:17, 25 February 2022 (UTC)

::

::One question is where the transcluded tables go. I found out once, unrelated to tables, not to put subpages in main space, otherwise that would be my first thought. Mostly I am wondering about conventions that people use and expect. Gah4 (talk) 07:20, 25 February 2022 (UTC)

:::

:::Not that I am in a hurry, but any thoughts on this one? 06:44, 27 February 2022 (UTC)

[[Coherent spectrum shaper]]

Used by the CIA along with the Watergate recordings.

LEDs

Red, presumably GaAsP, Vf=1.65 luminous intensity 3 mcd @ 20ma

https://www.alliedelec.com/m/d/6355b8aba0b01578df0bb7b871ceefd7.pdf

Yellow, more GaAsP, Vf=2.1 luminous intensity 15000 mcd @ 20ma

blue, Vf=3.2 luminous intensity 6300 mcd @ 20ma

http://descargas.cetronic.es/WW05A3SBQ4-N.pdf

Units

{{convert|10|GeV|g}}

{{convert|1|m|s}}

{{convert|1|kK}}

New section