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Test
Math
Domain
Advanced Math
Skill
Nonlinear functions
Difficulty
Hard
ID: 7902bed0
Modded SAT Question Bank by Abdullah Mallik

A machine launches a softball from ground level. The softball reaches a maximum height of 51.84 meters above the ground at 1.8 seconds and hits the ground at 3.6 seconds. Which equation represents the height above ground h, in meters, of the softball t seconds after it is launched?

  1. h=-t2+3.6

  2. h=-t2+51.84

  3. h=-16t-1.82-3.6

  4. h=-16t-1.82+51.84


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Correct Answer: D
Rationale

Choice D is correct. An equation representing the height above ground h, in meters, of a softball t seconds after it is launched by a machine from ground level can be written in the form h=-at-b2+c, where a, b, and c are positive constants. In this equation, b represents the time, in seconds, at which the softball reaches its maximum height of c meters above the ground. It's given that this softball reaches a maximum height of 51.84 meters above the ground at 1.8 seconds; therefore, b=1.8 and c=51.84. Substituting 1.8 for b and 51.84 for c in the equation h=-at-b2+c yields h=-at-1.82+51.84. It's also given that this softball hits the ground at 3.6 seconds; therefore, h=0 when t=3.6. Substituting 0 for h and 3.6 for t in the equation h=-at-1.82+51.84 yields 0=-a3.6-1.82+51.84, which is equivalent to 0=-a1.82+51.84, or 0=-3.24a+51.84. Adding 3.24a to both sides of this equation yields 3.24a=51.84. Dividing both sides of this equation by 3.24 yields a=16. Substituting 16 for a in the equation h=-at-1.82+51.84 yields h=-16t-1.82+51.84. Therefore, h=-16t-1.82+51.84 represents the height above ground h, in meters, of this softball t seconds after it is launched.

Choice A is incorrect. This equation represents a situation where the maximum height is 3.6 meters above the ground at 0 seconds, not 51.84 meters above the ground at 1.8 seconds.

Choice B is incorrect. This equation represents a situation where the maximum height is 51.84 meters above the ground at 0 seconds, not 1.8 seconds.

Choice C is incorrect and may result from conceptual or calculation errors.

Question Difficulty: Hard
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