Search

reduced mass of silver oxide

Input interpretation

silver oxide | reduced mass
silver oxide | reduced mass

Result

13.933 u (unified atomic mass units)
13.933 u (unified atomic mass units)

Unit conversions

13.933 Da (daltons)
13.933 Da (daltons)
0.013933 kDa (kilodaltons)
0.013933 kDa (kilodaltons)
2.3136×10^-23 grams
2.3136×10^-23 grams
2.3136×10^-26 kg (kilograms)
2.3136×10^-26 kg (kilograms)
12.978 GeV/c^2
12.978 GeV/c^2
13.933 chemical atomic mass units  (unit officially deprecated)
13.933 chemical atomic mass units (unit officially deprecated)
13.937 physical atomic mass units  (unit officially deprecated)
13.937 physical atomic mass units (unit officially deprecated)

Comparison as mass

 ≈ 14 × proton mass ( ≈ 1.7×10^-27 kg )
≈ 14 × proton mass ( ≈ 1.7×10^-27 kg )

Corresponding quantities

Relativistic energy E from E = mc^2:  | 13 GeV (gigaelectronvolts)
Relativistic energy E from E = mc^2: | 13 GeV (gigaelectronvolts)
Characteristic length L from L = h/(mc):  | 96 am (attometers)  | 9.6×10^-17 meters
Characteristic length L from L = h/(mc): | 96 am (attometers) | 9.6×10^-17 meters
Thermal de Broglie wavelength at 100 K from λ = h/(2πmkT)^(1/2):  | 47 pm (picometers)
Thermal de Broglie wavelength at 100 K from λ = h/(2πmkT)^(1/2): | 47 pm (picometers)
Characteristic time T from T = h/(mc^2):  | 3.2×10^-25 seconds
Characteristic time T from T = h/(mc^2): | 3.2×10^-25 seconds
Thermodynamic temperature T from kT = mc^2:  | 1.506×10^14 K (kelvins)
Thermodynamic temperature T from kT = mc^2: | 1.506×10^14 K (kelvins)
Compton frequency ν from ν = mc^2/h:  | 3.138×10^24 Hz (hertz)
Compton frequency ν from ν = mc^2/h: | 3.138×10^24 Hz (hertz)