Some Problem Related to Position vs Time Graph

AI Thread Summary
The discussion revolves around a physics problem involving a ball thrown upwards with an initial speed of 29.4 m/s. Key points include the direction of acceleration, which is always downward due to gravity, and the velocity and acceleration at the highest point, where the velocity is zero and acceleration remains constant at -9.8 m/s². The confusion arises in part (c) regarding the signs of position, velocity, and acceleration when the downward direction is defined as positive. Participants clarify that while the ball's acceleration is negative during upward motion, it is considered positive in the downward motion due to the chosen coordinate system. The thread concludes with a consensus on the importance of defining the coordinate system clearly in physics problems.
shubham.bali7
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Hi

So Heres the Question:-
A player throws a ball upwards with an initial speed of 29.4 m s–1.
(a) What is the direction of acceleration during the upward motion of the ball ?
(b) What are the velocity and acceleration of the ball at the highest point of its
motion ?
(c) Choose the x = 0 m and t = 0 s to be the location and time of the ball at its
highest point, vertically downward direction to be the positive direction of
x-axis, and give the signs of position, velocity and acceleration of the ball
during its upward, and downward motion.
(d) To what height does the ball rise and after how long does the ball return to the
player’s hands ? (Take g = 9.8 m s–2 and neglect air resistance).[/CENTER]


So my problem is in Part(c)
Answer Comes Out that in both cases(upward and downward) Acceleration is Positive..
but how? i mean shouldn't it be Negative in downward and Positive in upward motion
 
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They are positive provided downward direction is the positive axis. I just told acceleration is g downwards(or -g upwards:smile:)
 
In general, you can choose any direction you want to be positive. However, in part (c) they specifically say "Choose ... vertically downward direction to be the positive direction"
 
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tnxxx... guyss... u helpd... :)
 
Kindly see the attached pdf. My attempt to solve it, is in it. I'm wondering if my solution is right. My idea is this: At any point of time, the ball may be assumed to be at an incline which is at an angle of θ(kindly see both the pics in the pdf file). The value of θ will continuously change and so will the value of friction. I'm not able to figure out, why my solution is wrong, if it is wrong .
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