Problem 3: Incline with Friction |A mass m = 2 kg is launched with an initial speed vo = 1 m/s down an incline with coefficient of static friction H, = 3/4 and coefficient of kinetic friction A = 2/3. It travels a distance L = 4 m down the incline before reaching the bottom of the incline with speed vy. The angle 0 such that the values of cos(8) and sin(0) are the ones provided below and you may use g = 10 m/s².
Problem 3: Incline with Friction |A mass m = 2 kg is launched with an initial speed vo = 1 m/s down an incline with coefficient of static friction H, = 3/4 and coefficient of kinetic friction A = 2/3. It travels a distance L = 4 m down the incline before reaching the bottom of the incline with speed vy. The angle 0 such that the values of cos(8) and sin(0) are the ones provided below and you may use g = 10 m/s².
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![Problem 3: Incline with Friction
|A mass m = 2 kg is launched with an initial speed vo = 1 m/s down an incline with coefficient of static friction
H, = 3/4 and coefficient of kinetic friction A = 2/3. It travels a distance L = 4 m down the incline before reaching
the bottom of the incline with speed vy. The angle 0 such that the values of cos(8) and sin(0) are the ones provided
below and you may use g = 10 m/s².](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F880ed5c1-6b37-423c-b7e8-64f0870f0cd7%2Ffb3f4d09-6f35-4012-b873-652a524024c8%2Fyfd7ncj.png&w=3840&q=75)
Transcribed Image Text:Problem 3: Incline with Friction
|A mass m = 2 kg is launched with an initial speed vo = 1 m/s down an incline with coefficient of static friction
H, = 3/4 and coefficient of kinetic friction A = 2/3. It travels a distance L = 4 m down the incline before reaching
the bottom of the incline with speed vy. The angle 0 such that the values of cos(8) and sin(0) are the ones provided
below and you may use g = 10 m/s².
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