Find the forces produced in Bars 1, 2, and 3 of the truss shown due to the action of a ball of weight W = 1000 lb, resting at the hinge D and supported by a cable EF as shown. The cable EF is parallel to AC. A W -10-4-10² 2 3 B 0101010² 30²
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- a) 1/R=1/R1+1/R2 R1=60Ω R2=40Ω 1/60Ω+1/40 Ω= 2+3/120 Ω So R=1/24 Ω What's wrong with this? b) 50cm/5cm = 10cm What's wrong with this?The purpose is to determine the current, and sometimes the phase difference between the voltage source and the current. In this case, determine the current amplitude (I0) when the circuit elements are these: ℰ₀ = 196 volts, ω = 1.75 rad/s, R = 46 Ω, L = 10 Henries, C = 0.203 Farads.In an oscillating RLC circuit, R = 5.0ohm, L = 5.0 mH, and C = 500 uF. What is the angular frequency of the oscillations?
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- The switch in the figure is connected to position a for a long time interval. At t=0, the switch is thrown to position b. After this time, what is the frequency of oscillations of the LC circuit if C=2.53 micro F?Find the amplitude V the angular velocity w and the phase shift & for the sinusoidal voltage v(t) = V sin(wt + 8) where the voltage is 0V at t = -8.13m sec after which it increases for a peak of 15V at t = 6.78m secAn L-R-C series circuit has L = 0.300 H and C = 4.00 uF. What value of R gives critical damping? Express your answer with the appropriate units. R = 548 S Submit Part C Previous Answers Correct W' = What is the oscillation frequency w' when R has half of the value that produces critical damping? ΠΙΑΣΦ/ ? rad/s
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