2 3. Particle P moves down the hill from the origin with its speed given by v = √√2gy, where the magnitude of the acceleration due to gravity acting in the y direction is g = 9.81m/s², and y is in metres. When x = 4 m determine the total acceleration. Clearly specify the magnitude and the angle measured clockwise from the positive x-axis to the acceleration vector. - ୮ y I P y = (+)² m บ
2 3. Particle P moves down the hill from the origin with its speed given by v = √√2gy, where the magnitude of the acceleration due to gravity acting in the y direction is g = 9.81m/s², and y is in metres. When x = 4 m determine the total acceleration. Clearly specify the magnitude and the angle measured clockwise from the positive x-axis to the acceleration vector. - ୮ y I P y = (+)² m บ
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3.
Particle P moves down the hill from the origin with its speed given by v = √√2gy, where the
magnitude of the acceleration due to gravity acting in the y direction is g = 9.81m/s², and y is in metres.
When x = 4 m determine the total acceleration. Clearly specify the magnitude and the angle measured
clockwise from the positive x-axis to the acceleration vector.
-
୮
y
I
P
y = (+)² m
บ"
Transcribed Image Text:2
3.
Particle P moves down the hill from the origin with its speed given by v = √√2gy, where the
magnitude of the acceleration due to gravity acting in the y direction is g = 9.81m/s², and y is in metres.
When x = 4 m determine the total acceleration. Clearly specify the magnitude and the angle measured
clockwise from the positive x-axis to the acceleration vector.
-
୮
y
I
P
y = (+)² m
บ
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