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Non-Mendelian Inheritance - Genetics - Science Centers / Lab Stations

Rated 4.81 out of 5, based on 44 reviews
4.8 (44 ratings)
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Grade Levels
5th - 10th, Homeschool
Standards
Formats Included
  • Zip
Pages
28 PDF
$5.50
$5.50
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What educators are saying

This ended up being a great resource! It kept my students occupied for about 50-55 minutes, and I feel that it adequately assessed their knowledge and challenged them to think more critically about the genetics unit we had just finished.
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Description

Non-Mendelian Inheritance - Science Centers / Lab Stations - Genetics & Heredity Differentiated Student Led Cross-curricular STEAM Lab Stations

Students will use this Punnett square lab station to practice non-Mendelian inheritance.

With science as the primary background subject, students will learn about the genetics and its components by using Social Studies (which includes history, current events and geography), Technology (computers and engineering), ELA (reading and writing), the Arts (music, art, PE/dance and debate), and Math. These print and go, low-to-no prep Science Circuit Stations are easy to implement with a few household items and provide a method for reinforcing life science that shows how science concepts flow across the curricula and are relatable in all aspects of life.

This Cross-Curricular Science Circuit Station pack includes 7 activities and one assessment aligned to NGSS (Next Generation Science Standards) covering:

- Incomplete Dominance

- Codominance

- Sex-linked traits

- Multiple Alleles

- Polygenic Inheritance

This lesson is found in our GENETICS BUNDLE which includes:

- Punnett Squares & Mendelian Inheritance

- DNA Discovery & Composition

- Protein Synthesis

- Genetic Engineering, Selective Breeding, and Hybridization

- Pedigrees, Genetic Disorders, and Mutations

It can also be found in our Life Science Bundle: Cross Curricular STEAM Stations which will include over 40 stations for all Life Science topics!

Our STEAM stations are student-led activities that are great for enrichment, differentiation, assessment, group activities, mini-labs, and more! Students should go into the lessons with some background knowledge on each topic. These unit includes directions for each activity, answer keys, station signs, student answer sheets (which can be turned into an interactive notebook booklet), cover sheet, and blank answer sheets for your own stations.

This Cross-Curricular Science Circuit Station includes the following student-led stations:

Explorer: As an explorer, students engage in Social Studies, Geography, and History as they learn about current events, historical figures and events, etc.

Researcher: Students use a computer, smart phone, ipad or other electronic device to research related topics.

Maker: This station entails students taking on the role of engineering, designing, building, assembling, and/or experimenting with manipulatives. 

Scriber: At this station, students write a response to a question or problem.

Reader: Students answer questions related to a reading passage .

Performer: For this station, students get their creative juices flow as they participate in one of the many arts

Solver: Students use their math skills to answer science related math problems

Scholar: An assessment piece that aligns with the lessons included in the Science Circuit

Click this link to find out how this lesson fits with your NGSS, TEKS or GSE Science Classroom

Getting Nerdy's Terms of Use (TOU):

- Purchase of the product is for single classroom use by the purchaser only. It is a violation for individuals, schools, and districts to redistribute, edit, sell, or post this item on the Internet or to other individuals. Disregarding the copyright is a violation of the Digital Millennium Copyright Act and subject to legal action. Clipart and other elements within our products are copyrighted and cannot be used on its own without permission or license.

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Cross-Curricular STEAM Circuits Science Stations by © 2016 Getting Nerdy. All rights reserved.

Total Pages
28 PDF
Answer Key
Included
Teaching Duration
90 minutes
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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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