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Question: A small object of mass m is suspended from a vertical support by a massless spring of constant k. A second small object of mass m is suspended from the first object by another massless spring of constant k. Find the normal frequencies of vertical oscillation of the system and the normal modes of the system. Now, the lower mass is deflected downward by a distance L from its equilibrium. What is the deflection of the upper mass? Then the system is released. What is the motion of the system now?
a hole of radius 1 mm is at the bottom of a large water storage tank that is 15 m high. what is the volume flow rate av
the membrane that surrounds a certain type of living cell has a surface area of 4.00 10-9 m2 and a thickness of 1 10-8
A pump has a supply cord with 63 millimeter diameter and a pressure wire out of the pump with 50 millimeter diameter. The mass flow is m = 9kg / s. Find the power of the pump
A wave function of a single electron system is a function of how many and what variables? How many and what variables are a wave function for a triple electron system
there are two identical positively charged conducting spheres fixed in space. the spheres are 39.4 cm apart center to
A physics book slides off a horizontal tabletop with a speed of 1.10 meter per second. Obtain the height of the tabletop above the floor
The critical angle for light traveling in a particular optical medium and incident on an interface with air is 46.7o. Calculate the refractive index of this medium
A straight conducting wire carries a 7.8A current in the +y-direction. Find the magnitude of the magnetic field that result in a force per unit length on the wire of 0.11N/m in the z-direction
a boat has a mass of 6800 kg. its engines generate a drive force of 4400 n due west while the wind exerts a force of
A wildlife biologist tracks an elk over flat terrain by following the emissions from a radio collar worn by the animal. If the elk travels 3.0km at an angle of 30 degrees East of North, followed by 2.0km at 40degrees West of North, and finally a 4..
The radius of curvature of a highway exit is r = 95.5 m. The surface of the exit road is horizontal, not banked. If the static friction between the tires and the surface of the road is μs = 0.408, then what is the maximum speed at which the car can ..
a disoriented physics professor drives 3.33 north then 4.69 west and then 1.61 south.1-use components to find the
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