In the following exercises, solve by using methods of factoring, the square root principle, or the
158. An arrow is shot vertically upward at a rate of 220 feet per second. Use the projectile formula
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- In the following exercises, solve by using the method of factoring, the square root principle, or the Quadratic Formula. Round your answers to the nearest te nth, if needed. 464. Find two consecutive odd numbers whose product is 323.arrow_forwardIn the following exercises, solve by using the method of factoring, the square root principle, or the Quadratic Formula. Round your answers to the nearest tenth, if needed. A ball is thrown vertically in the air with a velocity of 160 ft/sec. Use the formula h=16t2+v0t to determine when the ball will be 384 feet from the ground. Round to the nearest tenth.arrow_forwardA man throws a ball into the air with a velocity of 96 ft/s. Use the formula h=16t2+v0t to determine when the height of the ball will be 48 feet. Round to the nearest tenth.arrow_forward
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- Solve by using the Quadratic Formula: r2+10r+25=0 .arrow_forwardIn the following exercises, solve by using methods of factoring, the square root principle, or the Quadratic Formula. Round your answers to the nearest tenth. 149. A triangle with area 45 square inches has a height that is two less than four times the width. Find the height and width of the triangle.arrow_forwardSolve by completing the square: 4t2+2t=20 .arrow_forward
- In the following exercises, solve using the Square Root Property. 60. v2+18v+81=50arrow_forwardIn the following exercises, solve by using methods of factoring, the square root principle, or the quadratic formula. 295. A ball is thrown vertically in the air with a velocity of 160 ft/sec. Use the formula h=16t2+v0t to determine when the ball will be 384 feet from the ground. Round to the nearest tenth.arrow_forwardUse the Square Root Property to solve the quadratic equation: 3(w+5)2=27 .arrow_forward
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