Question

In: Physics

While a roofer is working on a roof that slants at 45.0 ∘∘ above the horizontal,...

While a roofer is working on a roof that slants at 45.0 ∘∘ above the horizontal, he accidentally nudges his 90.0 NN toolboxes, causing it to start sliding downward, starting from rest.

a)If it starts 4.70 mm from the lower edge of the roof, how fast will the toolbox be moving just as it reaches the edge of the roof if the kinetic friction force on it is 19.0 NN ?

Solutions

Expert Solution

Hope this will help you. Thanks. Please give me a thumbs up.


Related Solutions

A worker stands on the roof of a 45.0 m high building that is under construction....
A worker stands on the roof of a 45.0 m high building that is under construction. He throws a bag of debris giving it an initial velocity of 12.0 m/s at an angle of 33.0 ∘ from downward direction. How long is the bag in flight? How far from the building does the bag land? What is the bag's final speed just before it hits the ground? Can you please explain to me step by step
A baseball has a mass of 3kg and is thrown off a roof with a horizontal...
A baseball has a mass of 3kg and is thrown off a roof with a horizontal velocity of 55m/s with a drag coefficient of 33Ns/m. The baseball falls for 5s before hitting the ground, what the horizontal and vertical velocity? How far did the ball travel both vertically and horizontally? If the bat was thrown off the roof with a horizontal velocity of 13m/s and has a mass of 15kg, what is the bats drag coefficient if it take’s 5s...
A 45.0-kg crate is dragged at constant velocity 8.20 m across a horizontal floor with a...
A 45.0-kg crate is dragged at constant velocity 8.20 m across a horizontal floor with a rope making a 30 degree angle above the horizontal. The coefficient of kinetic friction is 0.250. Find the work done by friction. Give your answer in Joules.
A playground is on the flat roof of a city school, 4.9 m above the street...
A playground is on the flat roof of a city school, 4.9 m above the street below (see figure). The vertical wall of the building is h = 6.40 m high, to form a 1.5-m-high railing around the playground. A ball has fallen to the street below, and a passerby returns it by launching it at an angle of θ = 53.0° above the horizontal at a point d = 24.0 m from the base of the building wall. The...
A playground is on the flat roof of a city school, hb = 5.40 m above...
A playground is on the flat roof of a city school, hb = 5.40 m above the street below (see figure). The vertical wall of the building is h = 6.60 m high, to form a 1.2-m-high railing around the playground. A ball has fallen to the street below, and a passerby returns it by launching it at an angle of θ = 53.0° above the horizontal at a point d = 24.0 m from the base of the building...
A playground is on the flat roof of a city school, 6.00 m above the street...
A playground is on the flat roof of a city school, 6.00 m above the street below. The vertical wall of the building is 7.00 m high, forming a 1.00 m high railing around the playground. A ball has fallen to the street below, and a passerby returns it by launching it at an angle of 53.0° above the horizontal at a point 28.0 m from the base of the building wall. The ball takes 2.10 s to reach a...
A squirrel sitting on a peak of a roof which is 1.50 m above the bottom...
A squirrel sitting on a peak of a roof which is 1.50 m above the bottom of the roof and 4.50 m above the ground puts an acorn on the roof. It starts from rest at the peak and slides down the sloped roof (coefficient of friction = 0.150) which is angled at 25.0 degrees to the horizontal. After the acorn reaches the edge of the roof it flies off and becomes a projectile. You may ignore air resistance. Part...
A projectile is fried at an angle of 58° above the horizontal at a speed of...
A projectile is fried at an angle of 58° above the horizontal at a speed of 100 m/s. Part A: calculate the magnitude of its velocity at t= 5.0 s Part B: calculate the direction of its velocity (above the horizontal) at t= 5.0s Part C: Calculate the magnitude of its velocity at t= 10s part D: calculate the direction of its velocity (above the horizontal) at t= 10s part E: calculate the magnitude of its velocity at t= 15s...
A ball is thrown at an angle of θ0 = 60° above the horizontal with an...
A ball is thrown at an angle of θ0 = 60° above the horizontal with an initial speed of v0 = 11.5 m/s. What will be the direction of the ball's velocity after 0.62 sec? Submit the angle between the velocity and the horizontal (in degrees). The angle, θ = _____ deg. At what time will the velocity of the ball make an angle 12° relative to the horizontal? The time, t = _____  
Mahmut with mass 70.0 kg and Güllü with mass 45.0 kg are skating. While Mahmut stands...
Mahmut with mass 70.0 kg and Güllü with mass 45.0 kg are skating. While Mahmut stands at rest, He is struck by Güllü. She is moving at 15.0 m/s before she collides with him. Güllü has a velocity of magnitude 10.00 m/s at an angle of 55.0 ∘ from her initial direction after the collision. Both skaters move on the frictionless and horizontal surface . a)Find the magnitude of Mahmut's velocity after the collision? b)Find the direction of Mahmut's velocity...
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT