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molar gas constant |
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E Q U A T I O N S |
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A times B |
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1 |
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Avogardo's number |
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Boltzmann |
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0.106456 |
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2 |
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first radiaton sr |
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molar gas squared |
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6.299827 |
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3 |
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Josephson constnt |
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Nccp squared / pi |
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-0.743985 |
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4 |
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Newtonian gravtat |
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permeability magn |
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-0.094910 |
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5 |
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permittivity elec |
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2pi / Planck |
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-0.138313 |
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6 |
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Nccp density |
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rd ed 1 total srf |
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0.000000 |
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7 |
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sphere diam rt3 |
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rhmb dodeca ed 1 |
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0.000000 |
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8 |
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sphere radius 1 |
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2 |
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0.000000 |
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9 |
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10 |
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A divided by B |
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1 |
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conductance quntm |
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light squared |
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3.131264 |
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2 |
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Faraday constant |
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Sakur - Tetrode |
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3.220229 |
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3 |
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permittivity elec |
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Planck / 2 pi |
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3.072352 |
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4 |
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proton mass kg |
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hc |
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3.143708 |
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5 |
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1 |
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first radiaton sr |
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3.215113 |
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6 |
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4 |
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elementary charge |
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2.381113 |
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7 |
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8 pi |
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light |
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3.059917 |
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8 |
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pi |
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first radiaton cn |
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3.215113 |
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9 |
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rd ed 1 total srf |
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r(sp)d sp vol 1 |
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2.988619 |
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10 |
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11 |
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12 |
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13 |
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14 |
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15 |
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16 |
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17 |
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18 |
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19 |
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20 |
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1.985
calories per degree Celsius, that is the constant
of proportionality (R) in the |
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equation
Pressure × Volume = n (number of moles) × (R) × Temperature, |
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relating the pressure and
volume of a quantity of gas to the absolute temperature. |
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highligted |
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derivative |
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nist |
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copyright steve waterman january 2009 |
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