Which system of equations has a solution of approximately \( (-2.7,-1.2) \) ? \( 4 x-5 y=-5 \) and \( 3 x+10 y=-20 \) \( 4 x-5 y=5 \) and \( 3 x+10 y=20 \) \( 4 x-5 y=5 \) and \( 3 x+10 y=-20 \) \( 4 x-5 y=-5 \) and \( 3 x+10 y=20 \) Mark this and return
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Let’s break down the options by substituting \( x \approx -2.7 \) and \( y \approx -1.2 \) into each equation. 1. For \( 4 x - 5 y = -5 \) and \( 3 x + 10 y = -20 \): - \( 4(-2.7) - 5(-1.2) = -10.8 + 6 = -4.8 \) (not valid) - \( 3(-2.7) + 10(-1.2) = -8.1 - 12 = -20.1 \) (close but not accurate) 2. For \( 4 x - 5 y = 5 \) and \( 3 x + 10 y = 20 \): - \( 4(-2.7) - 5(-1.2) = -4.8 \) (not valid) - \( 3(-2.7) + 10(-1.2) = -20.1 \) (again) 3. For \( 4 x - 5 y = 5 \) and \( 3 x + 10 y = -20 \): - \( 4(-2.7) - 5(-1.2) = -4.8 \) (not valid) - \( 3(-2.7) + 10(-1.2) = -20.1 \) (again in the negative) 4. For \( 4 x - 5 y = -5 \) and \( 3 x + 10 y = 20 \): - \( 4(-2.7) - 5(-1.2) = -4.8 \) (not valid) - \( 3(-2.7) + 10(-1.2) = -20.1 \) (off the mark) None of these options produce the correct approximate values, indicating a possible error in the setup. You may want to double-check the values given. Happy solving!
