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Monohybrid Cross Punnett Square Genetics Coloring Worksheet Set with Monsters

Elly Thorsen
3.6k Followers
Grade Levels
5th - 8th
Standards
Formats Included
  • PDF
  • Activity
Pages
9 pages
$4.00
$4.00
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Elly Thorsen
3.6k Followers
Easel Activity Included
This resource includes a ready-to-use interactive activity students can complete on any device. Easel by TpT is free to use! Learn more.

Description

This resource comes with three worksheets involving monohybrid crosses. In order to successfully complete these worksheets, students need an understanding of how to solve Punnett squares and know the definitions of dominant, recessive, heterozygous, homozygous, genotype, phenotype and purebred. Read below for more details about each worksheet.

--Worksheet 1: Students read descriptions and solve Punnett squares to identify each monster’s genotype and phenotype. Then they color the monsters accordingly. A second version of this worksheet gives easy differentiation by providing the allele pairs next to the Punnett squares. Both versions have the same questions and answers.

--Worksheet 2: This worksheet is similar to worksheet one but has different questions and monsters. A differentiated worksheet is provided.

--Worksheet 3: Students get more creative in this worksheet by choosing the monster’s parents’ genetic makeup. Then they solve a Punnett square to find each monster’s genotype and phenotype. This worksheet does not come with a differentiated version.

Click on PREVIEW to see the worksheets and more details of what is included in this set. Or, if you are wanting to use this resource digitally for distance learning, check out this video of how the worksheet can look when using TpT's Digital Activities tool (compatible only with Google Classroom).

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Total Pages
9 pages
Answer Key
Included
Teaching Duration
N/A
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Standards

to see state-specific standards (only available in the US).
NGSSMS-LS3-2
Develop and use a model to describe why asexual reproduction results in offspring with identical genetic information and sexual reproduction results in offspring with genetic variation. Emphasis is on using models such as Punnett squares, diagrams, and simulations to describe the cause and effect relationship of gene transmission from parent(s) to offspring and resulting genetic variation.

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