At the peak of its trajectory, the ball's vertical velocity (v1,y) is zero, whereas its horizontal velocity (v1,x) maintains its consistency. The accelerations a1,x and a1,y are 0 and -9.8 m/s² respectively.
The physical concept analyzed here is projectile motion. Considering the trajectory of a ball, we can separate its motion into horizontal and vertical components. At the peak of its trajectory (time t1), the ball's vertical velocity (v1,y) is zero, because it temporarily stops moving upwards before it begins to fall again. However, since there is no acceleration in the horizontal direction (a1,x), the ball keeps moving horizontally with constant velocity (v1,x).
The acceleration in the vertical direction (a1,y) is still the acceleration due to gravity (-9.8 m/s²). This is because even at the peak of the trajectory, the ball is still accelerating downwards. Therefore, the correct answer should include v1,y = 0 m/s, v1,x = consistent value, a1,x = 0 m/s², and a1,y = -9.8 m/s². So the most probable answer is D) 15.0, 0, 0, -9.80, assuming the ball's horizontal velocity is 15 m/s. Please check the exact value of horizontal velocity (v1,x) in the settings of your problem.
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B. most metals.
C. glass objects.
D. caramel candy.
The answer is Glass objects C. in this case.
Plungingwaves is important to have for a surfer who wants to do aerial maneuvers.
The correct options is A.
When the ocean floor is steep or has abrupt depth changes, crashingwaves occur. They could be large close-outs or strong barrels. Combining pouring and plungingwaves creates a collapsing wave.
When the incoming surf strikes a steep ocean floor or a sea bottom with abrupt depth changes, plungingwaves are created. The wave's peak curves over and erupts on the trough as a result. A crashing sound is frequently audible due to the compression of the airbeneath the wave's lip.
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Aerial maneuvers in surfing demand taking the surfboard into the air. The best type of waves for such maneuvers are:
- the section of a wave coming towards you should be smaller than the section you are on
- you should try to find closeout sections of waves ( formations that do not allow a tubular ride )
- the wave should be either wedging or bowling in towards you, it should not be a straight wave.
A.PLUNGING WAVES
The time of motion of the car to the given distance is 5 seconds.
The given parameters;
The time of motion of the car to the given distance is determined by applying average velocity formula as shown below;
Thus, the time of motion of the car to the given distance is 5 seconds.
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Answer:
Explanation:
B. Alexander Hamilton
C. Sam Houston
D. George Washington