Description
If you want your students to be engaged and working collaboratively in a competitive activity, then this “placemat” is what you need!
Students will work in groups to practice problems related to the Pythagorean Theorem. The mats start with the basics and move through various applications; students work through real-world scenarios in and out of the coordinate plane.
Calculators are required for this activity.
Students will work in groups to practice problems related to the Pythagorean Theorem. The mats start with the basics and move through various applications; students work through real-world scenarios in and out of the coordinate plane.
Calculators are required for this activity.
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Highlights
Digital downloads
Grades
8th
Subjects
Standards
CCSS8.G.B.7
CCSS8.G.B.8
CCSSMP3
Tags
Pages
14
Answer Key
Included
Teaching Duration
30 minutes
Description
If you want your students to be engaged and working collaboratively in a competitive activity, then this “placemat” is what you need!
Students will work in groups to practice problems related to the Pythagorean Theorem. The mats start with the basics and move through various applications; students work through real-world scenarios in and out of the coordinate plane.
Calculators are required for this activity.
Students will work in groups to practice problems related to the Pythagorean Theorem. The mats start with the basics and move through various applications; students work through real-world scenarios in and out of the coordinate plane.
Calculators are required for this activity.
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.
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Questions & Answers
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Standards
to see state-specific standards (only available in the US).
CCSS8.G.B.7
Apply the Pythagorean Theorem to determine unknown side lengths in right triangles in real-world and mathematical problems in two and three dimensions.
CCSS8.G.B.8
Apply the Pythagorean Theorem to find the distance between two points in a coordinate system.
CCSSMP3
Construct viable arguments and critique the reasoning of others. Mathematically proficient students understand and use stated assumptions, definitions, and previously established results in constructing arguments. They make conjectures and build a logical progression of statements to explore the truth of their conjectures. They are able to analyze situations by breaking them into cases, and can recognize and use counterexamples. They justify their conclusions, communicate them to others, and respond to the arguments of others. They reason inductively about data, making plausible arguments that take into account the context from which the data arose. Mathematically proficient students are also able to compare the effectiveness of two plausible arguments, distinguish correct logic or reasoning from that which is flawed, and-if there is a flaw in an argument-explain what it is. Elementary students can construct arguments using concrete referents such as objects, drawings, diagrams, and actions. Such arguments can make sense and be correct, even though they are not generalized or made formal until later grades. Later, students learn to determine domains to which an argument applies. Students at all grades can listen or read the arguments of others, decide whether they make sense, and ask useful questions to clarify or improve the arguments.
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