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the speed of a falling object increases at a constant rate as time incr…

Question

the speed of a falling object increases at a constant rate as time increases since the object was dropped. which graph could represent the relationship between \\(t\\), time in seconds, and \\(s\\), speed in meters per second?

Explanation:

Analyze the rate of change

Using the Function Modeling knowledge point

  • The problem states that the speed increases at a "constant rate" over time.
  • A constant rate of change represents a linear relationship, which is graphed as a straight line.

Identify the initial state

  • The object is "dropped", meaning its initial speed at time \(t = 0\) is \(s = 0\).
  • The graph must start at the origin \((0, 0)\).

Evaluate the graph options

  • Graph 1 (top-left) shows an increasing curve that is not straight (exponential or quadratic growth).
  • Graph 2 (top-middle) shows a straight line of points starting at \((0,0)\) and increasing at a constant rate.
  • Graph 3 (top-right) shows a decreasing curve.
  • Graph 4 (bottom-left) shows a decreasing straight line.
  • Therefore, the second graph (top-middle) correctly represents the relationship.

Answer:

  • (A) Graph showing an upward curve starting at (0,0)
  • (B) Graph showing a straight line of points increasing from (0,0) (Correct answer)
  • (C) Graph showing a downward curve
  • (D) Graph showing a straight line of points decreasing