Answer:
A) The average speed for the trip is .
B) The total distance traveled is .
Explanation:
Knowing that 1 hour has 60 minutes, we have that for each part of the trip:
Total distance traveled
The distance traveled is the speed multiplied by a period of time. The total distance traveled is calculated adding up the speeds multiplied by the given periods of time.
B) The total distance traveled is .
Average speed
The average speed could be calculated using the total distance traveled divided by the total time . We need to take into account the time spent eating lunch and buying gas.
A) The average speed for the trip is .
Answer: 8 m
Explanation:
From the equation distance = velocity * time, we can find the distance from a velocity vs. time graph by finding the area under the curve, since we get that area from multiplying velocity and time together.
For the first 0.5 seconds, the velocity is 16 m/s and the change in time is 0.5.
16 * 0.5 = 8 m.
Learn more about the relationship between distance and velocity here: brainly.com/question/29409777
The displacement vector, d, can be recomposed as follows: d = (Dx, Dy) and the magnitude of the displacement vector is approximately 11.24 meters.
To recompose the displacement vector, d, using the given X and Y components, you can use vector addition. The X and Y components represent the horizontal and vertical displacements, respectively.
Given:
Dx = 6.68 m (left)
Dy = 9.04 m (down)
The displacement vector, d, can be recomposed as follows:
d = (Dx, Dy)
So, the displacement vector is (6.68 m left, 9.04 m down). This means that the object moved 6.68 meters to the left (in the negative X direction) and 9.04 meters downward (in the negative Y direction) from its starting point.
The magnitude of the displacement can be found using the Pythagorean theorem:
|d| = √((Dx)^2 + (Dy)^2)
|d| = √((6.68 m)^2 + (9.04 m)^2)
|d| ≈ √(44.49 m^2 + 81.72 m^2)
|d| ≈ √(126.21 m^2)
|d| ≈ 11.24 meters
So, the magnitude of the displacement vector is approximately 11.24 meters.
Learn more about displacement vector here:
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B. Inertia
C. Gravitational Force