Q3. 1) As shown in the image, the car has a speed of 21 m/s at point A, and an overall acceleration of a = 2.2 m/s2 in the direction shown, with angle 0 = 33º. Determine the radius of curvature, p, of the path (in unit of m) at point A. Your answer must include 1 place after the decimal point. a n

Elements Of Electromagnetics
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Q3. 1) As shown in the image, the car has a speed of 21 m/s at point A, and an
overall acceleration of a = 2.2 m/s2 in the direction shown, with angle 0 = 33º.
Determine the radius of curvature, p, of the path (in unit of m) at point A. Your
answer must include 1 place after the decimal point.
Your Answer:
Answer
a
n
Transcribed Image Text:Q3. 1) As shown in the image, the car has a speed of 21 m/s at point A, and an overall acceleration of a = 2.2 m/s2 in the direction shown, with angle 0 = 33º. Determine the radius of curvature, p, of the path (in unit of m) at point A. Your answer must include 1 place after the decimal point. Your Answer: Answer a n
Q3. 2) Use the same main problem statement, numbers, and image in Q3. 1). On
paper, draw sketch(es) that show the direction of the car's velocity, the tangential
component and normal component of its acceleration at point A. Please make sure to
draw high quality sketches. In the answering space here, report the magnitudes of the
tangential component and normal component of its acceleration at point A. Your
answers must include proper units and 1 place after the decimal point.
Transcribed Image Text:Q3. 2) Use the same main problem statement, numbers, and image in Q3. 1). On paper, draw sketch(es) that show the direction of the car's velocity, the tangential component and normal component of its acceleration at point A. Please make sure to draw high quality sketches. In the answering space here, report the magnitudes of the tangential component and normal component of its acceleration at point A. Your answers must include proper units and 1 place after the decimal point.
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