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Enzyme Lab Activity Simulation
Enzyme Lab Activity Simulation
Enzyme Lab Activity Simulation
Enzyme Lab Activity Simulation
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Description

In this lab activity, students will act as the enzyme "paperase". Students will collect control group data, then each group will be assigned a variable to test. These variables include: substrate concentration, enzyme concentration, temperature, pH, non-competitive inhibition, and competitive inhibition. Students will teach each other through a gallery walk about how different variables affect the activity of the enzyme.

VOCABULARY THIS ACTIVITY ADDRESS

  • Enzyme
  • Active Site
  • Substrate
  • Reaction Rate
  • Non-competitive inhibition
  • Competitive inhibition
  • Concentration

SKILLS THIS ACTIVITY ADDRESSES

  • Carrying out investigations
  • Constructing explanations
  • Analyzing and interpreting data
  • Developing and using models
  • Using mathematics - rate of reaction

WHAT IS INCLUDED IN YOUR PURCHASE

  • Activity handout
  • Activity handout - editable
  • Paperose molecules
  • Task Powerpoint to keep on screen while students work
  • Teacher instructions

★★OTHER ENZYME PRODUCTS IN MY STORE★★★

OTHER PROFICIENCY SCALES

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Enzyme Lab Activity Simulation

Rated 5 out of 5, based on 1 reviews
5.0 (1 rating)
Science with Ms Katie
105 Followers
$4.00

Highlights

Grades icon
Grades
9th - 11th
Subjects icon
Subjects
Standards icon
Standards
Pages
10
Answer Key
Not Included
Teaching Duration
4 days

Save even more with bundles

This resource includes my enzymes proficiency scale and all the activities I use to help teach enzymes!Vocabulary included with this product: enzyme, substrate, product, activation energy, reaction rate, active site, competitive inhibition, non-competitive inhibition, allosteric site, plus many more
Price $10.00Original Price $12.50Save $2.50
5

Description

In this lab activity, students will act as the enzyme "paperase". Students will collect control group data, then each group will be assigned a variable to test. These variables include: substrate concentration, enzyme concentration, temperature, pH, non-competitive inhibition, and competitive inhibition. Students will teach each other through a gallery walk about how different variables affect the activity of the enzyme.

VOCABULARY THIS ACTIVITY ADDRESS

  • Enzyme
  • Active Site
  • Substrate
  • Reaction Rate
  • Non-competitive inhibition
  • Competitive inhibition
  • Concentration

SKILLS THIS ACTIVITY ADDRESSES

  • Carrying out investigations
  • Constructing explanations
  • Analyzing and interpreting data
  • Developing and using models
  • Using mathematics - rate of reaction

WHAT IS INCLUDED IN YOUR PURCHASE

  • Activity handout
  • Activity handout - editable
  • Paperose molecules
  • Task Powerpoint to keep on screen while students work
  • Teacher instructions

★★OTHER ENZYME PRODUCTS IN MY STORE★★★

OTHER PROFICIENCY SCALES

Be sure to follow my store to be alerted of new products. >> CLICK HERE

Don't forget to leave feedback. You will receive TPT credits that can be used on future purchases!

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

Reviews

5.0
Rated 5 out of 5, based on 1 reviews
1
rating
All verified TPT purchases
great resource
Rated 5 out of 5
January 14, 2026
Met expectations
Great value
Standards-aligned
Took me a minute at first to get going but it was a fun way to investigate enzyme function
michelle C.
367 reviews • Tennessee
Grades taught: 9th, 10th, 11th, 12th

Questions & Answers

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Standards

to see state-specific standards (only available in the US).
NGSSHS-LS1-6
Construct and revise an explanation based on evidence for how carbon, hydrogen, and oxygen from sugar molecules may combine with other elements to form amino acids and/or other large carbon-based molecules. Emphasis is on using evidence from models and simulations to support explanations. Assessment does not include the details of the specific chemical reactions or identification of macromolecules.
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