kinetics of the decomposition of crystal violet indicator

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Kinetics of the Decomposition of Crystal Violet Indicator

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Kinetics of the Decomposition of Crystal Violet Indicator. Purpose. To conduct an experiment that will collect data and determine the order of a chemical reaction. Concept. Kinetics is the branch of chemistry that describes the rates of reactions and their mechanisms. - PowerPoint PPT Presentation

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Page 1: Kinetics of the Decomposition of Crystal Violet Indicator

Kinetics of the Decomposition of Crystal

Violet Indicator

Page 2: Kinetics of the Decomposition of Crystal Violet Indicator

Purpose

To conduct an experiment that will collect data and determine the order of a chemical reaction.

Page 3: Kinetics of the Decomposition of Crystal Violet Indicator

Concept

Kinetics is the branch of chemistry that describes the rates of reactions and their mechanisms.

Application is left to the student

Page 4: Kinetics of the Decomposition of Crystal Violet Indicator

Safety

H F R Special Crystal Violet 1 0 1 Stains 0.10M NaOH 2 0 2 Caustic

Page 5: Kinetics of the Decomposition of Crystal Violet Indicator

Setup Procedure.1

Set up the CBL-2 with a graphing calculator and a colorimeter in channel 1.

Page 6: Kinetics of the Decomposition of Crystal Violet Indicator

Setup Procedure.2

Calibrate the colorimeter Set the dial to 0%T;

Calibrate point 1 at 0. Place a cuvette with dH2O in the colorimeter.

Page 7: Kinetics of the Decomposition of Crystal Violet Indicator

Setup Procedure.3

Set the dial to 656nm (Green); Calibrate point 2 at 100.

Return to the main screen.

Page 8: Kinetics of the Decomposition of Crystal Violet Indicator

Setup Procedure.4

Set the mode to time graph

Use these values to run the experiment.

Page 9: Kinetics of the Decomposition of Crystal Violet Indicator

Setup Procedure.5

Return to the main screen

Page 10: Kinetics of the Decomposition of Crystal Violet Indicator

Reaction Procedure.1

Begin the reaction. • Add 10 ml of NaOH

and the 80 ml of distilled water to a clean beaker and stir.

10 ml of NaOH80 ml of dH2O10 ml of CV

Page 11: Kinetics of the Decomposition of Crystal Violet Indicator

Reaction Procedure.2

• Add 10 ml of Crystal Violet solution to the beaker and stir.

Page 12: Kinetics of the Decomposition of Crystal Violet Indicator

Reaction Procedure.3

• Obtain an aliquot of the reaction and place it in a cuvette.

• Insert the cuvette into the colorimeter and start recording the data with the CBL-2.

Start

Page 13: Kinetics of the Decomposition of Crystal Violet Indicator

Reaction Procedure.4

The calculator will display the data as it is collected and graphically track the progress of the reaction.

Page 14: Kinetics of the Decomposition of Crystal Violet Indicator

Reaction Procedure.5

Once the CBL-2 has finished collecting data it will display a graph of the collected data.

Page 15: Kinetics of the Decomposition of Crystal Violet Indicator

Reaction Procedure.6

Clean up all the glassware and the cuvette then return the equipment as directed. Rinse all glass ware with dH2O and dry before storing. Do not wipe the cuvette dry with any thing other than the optical wipes.

Page 16: Kinetics of the Decomposition of Crystal Violet Indicator

Data

In this experiment the data was automatically collected by the CBL-2 and stored in the graphing calculator. Nearly 200 data points were collected. For convenience they are not listed here.

Page 17: Kinetics of the Decomposition of Crystal Violet Indicator

Data Analysis.1

The CBL-2 collected absorbance data. By using Beer’s Law we can conclude that absorbance is directly proportional to the concentration of the Crystal Violet indicator. Therefore absorbance data can be treated as concentration data.

Page 18: Kinetics of the Decomposition of Crystal Violet Indicator

Data Analysis.2

In order to determine the order of the kinetics we need to evaluate how the concentration of Crystal Violet [CV] (absorbance data) changed with respect to time.

Page 19: Kinetics of the Decomposition of Crystal Violet Indicator

Data Analysis.3

If the reaction is Zero Order then a graph of [CV] vs. Time will be linear. It’s not

linear.

Page 20: Kinetics of the Decomposition of Crystal Violet Indicator

Data Analysis.5

If the reaction is First Order then a graph of ln[CV] vs. Time will be linear.

It’s Linear!

Page 21: Kinetics of the Decomposition of Crystal Violet Indicator

Data Analysis.6

If the reaction is Second Order then a graph of 1/[CV] vs. Time will be linear.

It’s not.

Page 22: Kinetics of the Decomposition of Crystal Violet Indicator

Conclusion

Summarize the lab procedures. Give the result(s). Determine source(s) of error. Describe an error propagation.