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An 18 kg person climbs up a uniform ladder with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.25. The angle between the horizontal and the ladder is θ . The person wants the ladder a distance of 2.6 m along the ladder from the ladder's foot. to clim b up 4 m 2.6 m...
An 18 kg person climbs up a uniform ladder with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.25. The angle between the horizontal and the ladder is θ . The person wants the ladder a distance of 2.6 m along the ladder from the ladder's foot. to clim b up 4 m 2.6 m...
013 10.0 points A 25.6 kg person climbs up a uniform ladder with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.25. The angle between the horizontal and the ladder is . The person wants to climb up the ladder a distance of 2.5 m along the ladder from the ladder's foot. 3.8 m 125.6...
A 25.2 kg person climbs up a uniform ladder with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.21. The angle between the horizontal and the ladder is 0. The person wants to climb up the ladder a distance of 0.83 m along the ladder from the ladder's foot. 3.1 m 11 XX 0.83 m...
008 10.0 points An 18.5 kg person climbs up a uniform lad- der with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.4. The angle between the hori- zontal and the ladder is θ. The person wants to climb up the ladder a distance of 1.5 m along the ladder from the ladder's foot. 2...
Answer in units of o. 008 10.0 points A 20.7 kg person climbs up a uniform ladder with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.4. The angle between the horizontal and the ladder is θ . The person wants to climb up the ladder a distance of 1.8 m along the ladder from...
A 21.7 kg person climbs up a uniform ladder with negligible mass. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface where the coefficient of static friction is 0.29. The angle between the horizontal and the ladder is 0. The person wants to climb up the ladder a distance of 1.2 m along the ladder from the ladder's foot. 2.9 m WWW +01 1.2 m...
020 10.0 points A 23.5 kg person climbs up a uniform 95 N ladder. The upper end of the ladder rests on a frictionless wall. The bottom of the ladder rests on a floor with a rough surface. The angle between the horizontal and the ladder is 460 . The person can climb 73% up the ladder before the base of the ladder slips on the floor 2.5 m 46° 95 N 3.5 kg Hs >0 What is the coefficient...
A uniform ladder 12 meters long rests against a vertical frictionless wall, as shown in the figure. The ladder weighs 400 N and makes an angle θ = 51° with the floor. A man weighing 874 N climbs slowly up the ladder. When he is 78 m from the bottom of the ladder, it just starts to slip. What is the coefficient of static friction between the floor and the ladder? 7.8 m
A 5.0-m long, 15-kg uniform ladder rests against a smooth
vertical wall with the bottom of the ladder 3.0 m from the wall.
The coefficient of static friction between the floor and the ladder
is 0.38. What distance, measured along the ladder from the bottom,
can a 70-kg person climb before the ladder starts to slip?
Question 2 (1 point) A 5.0-m long, 15-kg uniform ladder rests against a smooth vertical wall with the bottom of the ladder 3.0 m...