Quarter Life of Zero Order Reaction Formula

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Quarter Life of Zero Order Reaction is the time at which the concentration of reactant becomes one-fourth of the initial concentration. Check FAQs
T1/4=3C04k
T1/4 - Quarter Life of Zero Order Reaction?C0 - Initial Concentration for Zero Order Reaction?k - Rate Constant of Zero Order Reaction?

Quarter Life of Zero Order Reaction Example

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With units
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Here is how the Quarter Life of Zero Order Reaction equation looks like with Values.

Here is how the Quarter Life of Zero Order Reaction equation looks like with Units.

Here is how the Quarter Life of Zero Order Reaction equation looks like.

36Edit=312Edit40.25Edit
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Quarter Life of Zero Order Reaction Solution

Follow our step by step solution on how to calculate Quarter Life of Zero Order Reaction?

FIRST Step Consider the formula
T1/4=3C04k
Next Step Substitute values of Variables
T1/4=312mol/L40.25mol/L*s
Next Step Convert Units
T1/4=312000mol/m³4250mol/m³*s
Next Step Prepare to Evaluate
T1/4=3120004250
LAST Step Evaluate
T1/4=36s

Quarter Life of Zero Order Reaction Formula Elements

Variables
Quarter Life of Zero Order Reaction
Quarter Life of Zero Order Reaction is the time at which the concentration of reactant becomes one-fourth of the initial concentration.
Symbol: T1/4
Measurement: TimeUnit: s
Note: Value can be positive or negative.
Initial Concentration for Zero Order Reaction
The Initial concentration for zero order reaction is the concentration of reactant present before the start of the reaction.
Symbol: C0
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Rate Constant of Zero Order Reaction
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.
Symbol: k
Measurement: Reaction RateUnit: mol/L*s
Note: Value can be positive or negative.

Other formulas in Zero Order Reaction category

​Go Rate Constant of Zero Order Reaction
k=C0-Cttreaction
​Go Initial Concentration of Zero Order Reaction
C0=(ktreaction)+Ct
​Go Concentration of Time of Zero Order Reaction
Ct=C0-(ktreaction)
​Go Time for Completion of Zero Order Reaction
t=C0k

How to Evaluate Quarter Life of Zero Order Reaction?

Quarter Life of Zero Order Reaction evaluator uses Quarter Life of Zero Order Reaction = (3*Initial Concentration for Zero Order Reaction)/(4*Rate Constant of Zero Order Reaction) to evaluate the Quarter Life of Zero Order Reaction, The Quarter life of zero order reaction is the time at which initial concentration of the reactant becomes half. Quarter Life of Zero Order Reaction is denoted by T1/4 symbol.

How to evaluate Quarter Life of Zero Order Reaction using this online evaluator? To use this online evaluator for Quarter Life of Zero Order Reaction, enter Initial Concentration for Zero Order Reaction (C0) & Rate Constant of Zero Order Reaction (k) and hit the calculate button.

FAQs on Quarter Life of Zero Order Reaction

What is the formula to find Quarter Life of Zero Order Reaction?
The formula of Quarter Life of Zero Order Reaction is expressed as Quarter Life of Zero Order Reaction = (3*Initial Concentration for Zero Order Reaction)/(4*Rate Constant of Zero Order Reaction). Here is an example- 36 = (3*12000)/(4*250).
How to calculate Quarter Life of Zero Order Reaction?
With Initial Concentration for Zero Order Reaction (C0) & Rate Constant of Zero Order Reaction (k) we can find Quarter Life of Zero Order Reaction using the formula - Quarter Life of Zero Order Reaction = (3*Initial Concentration for Zero Order Reaction)/(4*Rate Constant of Zero Order Reaction).
Can the Quarter Life of Zero Order Reaction be negative?
Yes, the Quarter Life of Zero Order Reaction, measured in Time can be negative.
Which unit is used to measure Quarter Life of Zero Order Reaction?
Quarter Life of Zero Order Reaction is usually measured using the Second[s] for Time. Millisecond[s], Microsecond[s], Nanosecond[s] are the few other units in which Quarter Life of Zero Order Reaction can be measured.
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