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Maintenance Sheet 7 Due Friday MGSE8. EE. 7a
Maintenance Sheet 7 Due Friday MGSE8.EE.7a. Give examples of linear equations in one variable with one solution, infinitely many solutions, or no solutions. *Hint: What do we use to represent the “unknown”?
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Whip Around Share one WORD that relates to the Pythagorean Theorem.
Learning Targets: I can give or explain a proof of the Pythagorean Theorem and its converse (prove perpendicular sides or right triangle). I can apply the Pythagorean Theorem in real-world situations or drawings to find unknown side lengths in right triangles in two and three dimensions. Share one WORD that relates to the Pythagorean Theorem. Pass the ball to a student of choice. (DON’T AIM AT FACES OR THROW TO HARD) You CANNOT REPEAT what has already been stated. Whip Around
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Learning Targets: I can give or explain a proof of the Pythagorean Theorem and its converse (prove perpendicular sides or right triangle). I can apply the Pythagorean Theorem in real-world situations or drawings to find unknown side lengths in right triangles in two and three dimensions.
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Learning Targets: I can give or explain a proof of the Pythagorean Theorem and its converse (prove perpendicular sides or right triangle). I can apply the Pythagorean Theorem in real-world situations or drawings to find unknown side lengths in right triangles in two and three dimensions.
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Teacher Sign-Off needed for the interactive practice and prodigy.
Learning Targets: I can give or explain a proof of the Pythagorean Theorem and its converse (prove perpendicular sides or right triangle). I can apply the Pythagorean Theorem in real-world situations or drawings to find unknown side lengths in right triangles in two and three dimensions. Teacher Sign-Off needed for the interactive practice and prodigy.
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Learning Targets: I can give or explain a proof of the Pythagorean Theorem and its converse (prove perpendicular sides or right triangle). I can apply the Pythagorean Theorem in real-world situations or drawings to find unknown side lengths in right triangles in two and three dimensions.
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