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Rotations (Easier Method) 90 180 270
1:33
YouTubeMario's Math Tutoring
Rotations (Easier Method) 90 180 270
Learn how to rotate figures about the origin 90 degrees, 180 degrees, or 270 degrees using this easier method. We discuss how to find the new coordinates of the rotated image by going through a step by step example rotating a triangle 90 degrees counterclockwise about the origin. We use graph paper as well as a separate sheet of paper to record ...
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8x9+1? #algebra #math #mathematics #questions #quiz #quizzes #trigonometry #trivia
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8x9+1? #algebra #math #mathematics #questions #quiz #quizzes #trigonometry #trivia
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Math Simplify#shorts#maths #power#simplify#division#easymaths
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Math Simplify#shorts#maths #power#simplify#division#easymaths
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Stem Antics on Instagram: "Euler’s Identity is this compact equation: e^(iπ) + 1 = 0 It brings together five fundamental constants: • e (base of natural logs) • i (imaginary unit, √−1) • π (pi) • 1 (multiplicative identity) • 0 (additive identity)  It’s a special case of Euler’s Formula: e^(iθ) = cos θ + i sin θ  When θ = π, cos π = −1 and sin π = 0, so e^(iπ) = −1 → e^(iπ) + 1 = 0  Why it’s deep: • It connects algebra, geometry, analysis. • It’s about rotating on the complex plane: multiplyi
2:56
Stem Antics on Instagram: "Euler’s Identity is this compact equation: e^(iπ) + 1 = 0 It brings together five fundamental constants: • e (base of natural logs) • i (imaginary unit, √−1) • π (pi) • 1 (multiplicative identity) • 0 (additive identity)  It’s a special case of Euler’s Formula: e^(iθ) = cos θ + i sin θ  When θ = π, cos π = −1 and sin π = 0, so e^(iπ) = −1 → e^(iπ) + 1 = 0  Why it’s deep: • It connects algebra, geometry, analysis. • It’s about rotating on the complex plane: multiplyi
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