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second order Arrhenius equation

Input interpretation

second order Arrhenius equation
second order Arrhenius equation

Equation

k = A exp(-E_a/(R T)) |  k | second order rate constant A | pre-exponential factor E_a | activation energy T | temperature R | molar gas constant (≈ 8.314 J/(mol K))
k = A exp(-E_a/(R T)) | k | second order rate constant A | pre-exponential factor E_a | activation energy T | temperature R | molar gas constant (≈ 8.314 J/(mol K))

Units

Input values

pre-exponential factor | 1×10^9 dm^3/(mol s) (cubic decimeters per mole second) activation energy | 50 kJ/mol (kilojoules per mole) temperature | 298 K (kelvins)
pre-exponential factor | 1×10^9 dm^3/(mol s) (cubic decimeters per mole second) activation energy | 50 kJ/mol (kilojoules per mole) temperature | 298 K (kelvins)

Result

second order rate constant | 1.722 L/(mol s) (liters per mole second) = 1722 cm^3/(mol s) (cubic centimeters per mole second)
second order rate constant | 1.722 L/(mol s) (liters per mole second) = 1722 cm^3/(mol s) (cubic centimeters per mole second)

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