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A particular reaction has the following rate rnnctant at diffarant tamneratures: a. Convert the temperature to kelvin, find 1/T(K), and take the natural log of
A particular reaction has the following rate rnnctant at diffarant tamneratures: a. Convert the temperature to kelvin, find 1/T(K), and take the natural log of the rate constant and complete the chart above. b. Plot 1/T(K) in the x-axis and ln(k) in the y-axis. This is the linear form of the Arrhenius Equation. ln(k2/k1)=Ea/Rx(1/T1/T2) a= activertion energy of the reaction in i= ideal gas constant =8.314JJ/kimol ii: T2=absolute temps (inkelun) ii : 122 reaction rate constant s at T1&T2 c. Find the slope of the line and then calculate the activation energy of the reaction. d. Use the 2-point Arrhenius Equation to find the rate constant at T=OC
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