1. The position vector of a butterfly that is flying parallel to the ground is given as a function of time by i= 2.90 m + (0.0900) -] - (00150)*3 a. At what value of t does the velocity vector of the insect make an angle 30.0° clockwise from the +x-axis? b. At the time calculated in (a), what are the magnitude and direction of the acceleration vector of the insect?
1. The position vector of a butterfly that is flying parallel to the ground is given as a function of time by i= 2.90 m + (0.0900) -] - (00150)*3 a. At what value of t does the velocity vector of the insect make an angle 30.0° clockwise from the +x-axis? b. At the time calculated in (a), what are the magnitude and direction of the acceleration vector of the insect?
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![1. The position vector of a butterfly that is flying parallel to the ground is given as a function
of time by
m
i= 290 m + (0.0900) *]i- (00150)*'
a. At what value of t does the velocity vector of the insect make an angle 30.0°
clockwise from the +x-axis?
b. At the time calculated in (a), what are the magnitude and direction of the
acceleration vector of the insect?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb63f09bf-faf0-40d2-a6ee-c706eb41854c%2F1dcfbbf1-3d94-4418-b0ce-1b9ee5e95a40%2Fvntwtd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. The position vector of a butterfly that is flying parallel to the ground is given as a function
of time by
m
i= 290 m + (0.0900) *]i- (00150)*'
a. At what value of t does the velocity vector of the insect make an angle 30.0°
clockwise from the +x-axis?
b. At the time calculated in (a), what are the magnitude and direction of the
acceleration vector of the insect?
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