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What is the maximum height a person may climb without causing the Ladder to slip. Ladder is leaning against a smooth wall. the angle from the ladder to the ground is 40 degrees. Givens: 4 meter length ladder with a mass of 5 kilograms. static friction of .60. mass of person is 150 kilograms. center of mass of ladder should be at the middle of ladder. A free body diagram would help. Im not sure if there's various ways to solve this problem but we need to use torque specifically.
A 1.80 kg block slides on a frictionless horizontal surface. The block hits a spring with a speed of 2.00 m/s and compresses it a distance of 11.0 cm before coming to rest. Illustrate what is the force constant of the spring?
Blocks A (mass 2.00 kg) and B (mass 15.00 kg) move on a frictionless, horizontal surface. Find the velocity of each block after they have moved apart
The reasoning for the second distance (19300 km) solution is a little fuzzy. There is less miss distance "because there is less of the Earth to miss"? What does the quoted phrase mean?
You have a lens whose focal length is 12.7 cm. You place an object on the axis of the lens at a distance of 6.25 cm from it. How far is the object\'s image from the lens
Eq: D(x,t) = 2.4sin(0.60x)cos(42t) where x and D are in cm and t is in sec. what is the distance between nodes
The capacitor in an RC circuit(R = 110 Ω, C = 50 μF) is initially uncharged. Calculate the current in the circuit one time constant (τ=RC) after the circuit is connected to a 9.0 Volt battery
In a strictly scientific experiment, a student athelete throwsrocks out the window in all directions, Find the height h of the window above the ground
A small block with a mass .120 kg is attached to a cordpassing through a hole in a frictionless, horizontal surface, What is the tension in the cord in the original situation when the block has speed v = .70m/s
An air bubble of 1.0-mm radius is rising in a container with vegetable oil of specific gravity 0.82 and viscosity 0.18 Pa · s. What is its terminal velocity
Two resistors, of R1 = 2.07 ? and R2 = 6.97 ?, are connected in series to a battery with an EMF of 24.0 V, Find the current I1 through the first resistor
two 1 MHz radio antennas emitting in-phase are separated by600 m along a north-south line. How far north should that receiver be moved if it is again to detect a signal nearly as strong
The position vector of a particle of mass 1.80 kg as a function of time is given by r = (6.00i + 4.60t j ), where r is in meters and t is in seconds. Determine the angular momentum of the particle about the origin as a function of time. Answer should..
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