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1) Draw the shear and moment diagram for the beam shown. Label all the values.
2) Find the force in members DF, DE and CE of the truss shown.
3) Draw the shear and moment diagram for the beam shown. Label all the values and indicate the maximum moment and shear values.
4) Find the angle of the slope θ for which the 1000 Pounds weight starts to move. Show the complete process of how you are finding the angle. µ = 0.5.
Suppose you measure a cylinder and determine that the radius is 0.52 + 0.01 cm and its height is 3.20 + 0.15 cm. What is the standard error of the volume
Batteries are rated in terms of ampere-hours (A · h). For example, a battery that can produce a current of 3.00 A for 5.00 h is rated at 15.00 A · h. what is the value of the electricity produced by this battery
A computer monitor uses 2.0 Amp of current when it is plugged into a 120 Volt outlet. The monitor is never turned off. Find the yearly cost of operating the monitor
The angle of incidence at a solid/liquid boundary is 75.9°, and the index of refraction of the solid is n = 1.50. What is the largest index of refraction that the liquid can have
What percentage of a photon beam would interact in passing through a 3-mm slice of absorber if the linear attenuation coefficient were 0.15/cm
In starting an exercise, a 1.61 m tall personlifts a 2.18 kg book on the ground so it is 2.26m above the ground. What is the work done bythe person's head
A 4.00-microF capacitor that is initially uncharged is connected in series with a 7.90-k ohm resistor and an emf source with E = 120 V and negligible internal resistance. what is the voltage drop across the capacitor
The position of a particle in cm is given by x = (7) cos 9?t, where t is in seconds, What is the frequency, What is the period, What is the amplitude of the particle's motion
Determine the fraction of the magnitude of kinetic energy lost by a neutron (m1 = 1.01 u) when it collides head-on and elastically with a target particle at rest
How far below the release point is the center of mass of two stones at t = 550 ms? (Neither stone has yet reached the ground.)
A hammer strikes one end of a thick iron rail of length 5.60 m. A microphone located at the opposite end of the rail detects two pulses of sound, Which pulse reaches the microphone first
One particle has a mass of 4.41 x 10-3 kg and a charge of +6.92 ?C. A second particle has a mass of 6.52 x 10-3 kg, Find the initial separation between the particles
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