QUESTION IMAGE
Question
the graph below represents the motion of an object.
- how long does it take for the object to move 30 meters? 2. how far does the object travel in 2 seconds?
- the object is in (circle one: dynamic / static) equilibrium because it moves ______________ meters every second.
Step1: Determine the relationship from the graph
The graph is a position - time graph. The position \(y\) and time \(x\) follow a linear relationship \(y = mx + b\), where \(b = 0\) (passes through the origin) and the slope \(m\) is the velocity. From the graph, when \(x = 1\) s, \(y=10\) m, so the velocity \(v=\frac{\Delta y}{\Delta x}= 10\) m/s.
Step2: Solve for the time to move 30 meters
We know that \(v=\frac{d}{t}\), so \(t=\frac{d}{v}\). Given \(d = 30\) m and \(v = 10\) m/s, then \(t=\frac{30}{10}=3\) s.
Step3: Solve for the distance in 2 seconds
Using \(d=v\times t\), with \(v = 10\) m/s and \(t = 2\) s, we get \(d=10\times2 = 20\) m.
Step4: Determine the equilibrium state
The object is moving at a constant velocity. An object in motion with a constant velocity is in dynamic equilibrium. The velocity is 10 m/s, so it moves 10 meters every second.
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- 3 s
- 20 m
- DYNAMIC; 10