Rate Constant by Titration Method for Zero Order Reaction Solution

STEP 0: Pre-Calculation Summary
Formula Used
Rate Constant of Zero Order Reaction = (Initial Reactant Volume-Volume at Time t)/Time for completion
k = (V0-Vt)/t
This formula uses 4 Variables
Variables Used
Rate Constant of Zero Order Reaction - (Measured in Mole per Cubic Meter Second) - The Rate Constant of Zero Order Reaction is equal to the rate of the reaction because in a zero-order reaction the rate of reaction is proportional to zero power of the concentration of the reactant.
Initial Reactant Volume - (Measured in Cubic Meter) - The Initial Reactant Volume is the volume of reactant present before the start of the reaction.
Volume at Time t - (Measured in Cubic Meter) - The Volume at Time t is defined as the volume of reactant after a certain interval of time.
Time for completion - (Measured in Second) - The Time for completion is defined as the time required for a complete transformation of reactant into the product.
STEP 1: Convert Input(s) to Base Unit
Initial Reactant Volume: 50 Liter --> 0.05 Cubic Meter (Check conversion ​here)
Volume at Time t: 40 Liter --> 0.04 Cubic Meter (Check conversion ​here)
Time for completion: 48 Second --> 48 Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
k = (V0-Vt)/t --> (0.05-0.04)/48
Evaluating ... ...
k = 0.000208333333333333
STEP 3: Convert Result to Output's Unit
0.000208333333333333 Mole per Cubic Meter Second -->2.08333333333333E-07 Mole per Liter Second (Check conversion ​here)
FINAL ANSWER
2.08333333333333E-07 2.1E-7 Mole per Liter Second <-- Rate Constant of Zero Order Reaction
(Calculation completed in 00.004 seconds)

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Zero Order Reaction Calculators

Initial Concentration of Zero Order Reaction
​ LaTeX ​ Go Initial Concentration for Zero Order Reaction = (Rate Constant of Zero Order Reaction*Reaction Time)+Concentration at Time t
Concentration of Time of Zero Order Reaction
​ LaTeX ​ Go Concentration at Time t = Initial Concentration for Zero Order Reaction-(Rate Constant of Zero Order Reaction*Reaction Time)
Rate Constant of Zero Order Reaction
​ LaTeX ​ Go Rate Constant of Zero Order Reaction = (Initial Concentration for Zero Order Reaction-Concentration at Time t)/Reaction Time
Time for Completion of Zero Order Reaction
​ LaTeX ​ Go Time for completion = Initial Concentration for Zero Order Reaction/Rate Constant of Zero Order Reaction

Rate Constant by Titration Method for Zero Order Reaction Formula

​LaTeX ​Go
Rate Constant of Zero Order Reaction = (Initial Reactant Volume-Volume at Time t)/Time for completion
k = (V0-Vt)/t

What is zero order reaction?

In zero order reaction, the rate of reaction is proportional to zero power of the concentration of the reactant. The half-life for the zero-order reaction is directly proportional to the initial concentration of the reactant.

How to Calculate Rate Constant by Titration Method for Zero Order Reaction?

Rate Constant by Titration Method for Zero Order Reaction calculator uses Rate Constant of Zero Order Reaction = (Initial Reactant Volume-Volume at Time t)/Time for completion to calculate the Rate Constant of Zero Order Reaction, The Rate constant by titration method for zero order reaction formula is defined as the rate constant directly proportional to the difference in volume and inversely proportional to the time of completion. Rate Constant of Zero Order Reaction is denoted by k symbol.

How to calculate Rate Constant by Titration Method for Zero Order Reaction using this online calculator? To use this online calculator for Rate Constant by Titration Method for Zero Order Reaction, enter Initial Reactant Volume (V0), Volume at Time t (Vt) & Time for completion (t) and hit the calculate button. Here is how the Rate Constant by Titration Method for Zero Order Reaction calculation can be explained with given input values -> 1E-9 = (0.05-0.04)/48.

FAQ

What is Rate Constant by Titration Method for Zero Order Reaction?
The Rate constant by titration method for zero order reaction formula is defined as the rate constant directly proportional to the difference in volume and inversely proportional to the time of completion and is represented as k = (V0-Vt)/t or Rate Constant of Zero Order Reaction = (Initial Reactant Volume-Volume at Time t)/Time for completion. The Initial Reactant Volume is the volume of reactant present before the start of the reaction, The Volume at Time t is defined as the volume of reactant after a certain interval of time & The Time for completion is defined as the time required for a complete transformation of reactant into the product.
How to calculate Rate Constant by Titration Method for Zero Order Reaction?
The Rate constant by titration method for zero order reaction formula is defined as the rate constant directly proportional to the difference in volume and inversely proportional to the time of completion is calculated using Rate Constant of Zero Order Reaction = (Initial Reactant Volume-Volume at Time t)/Time for completion. To calculate Rate Constant by Titration Method for Zero Order Reaction, you need Initial Reactant Volume (V0), Volume at Time t (Vt) & Time for completion (t). With our tool, you need to enter the respective value for Initial Reactant Volume, Volume at Time t & Time for completion and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Rate Constant of Zero Order Reaction?
In this formula, Rate Constant of Zero Order Reaction uses Initial Reactant Volume, Volume at Time t & Time for completion. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Rate Constant of Zero Order Reaction = (Initial Concentration for Zero Order Reaction-Concentration at Time t)/Reaction Time
  • Rate Constant of Zero Order Reaction = Initial Concentration for Zero Order Reaction/(2*Half Life of Zero Order Reaction)
  • Rate Constant of Zero Order Reaction = (2.303/Time for completion)*log10((Initial Pressure of Reactant*(Order of the reaction-1))/((Order of the reaction*Initial Pressure of Reactant)-Pressure at Time t))
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