When a tension force of 900 N is applied to a steel wire, it is assumed that E = 210 GPa and that the diameter of the wire increases by 1.05 mm. Calculate the diameter of the wire.
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- Find the outer radius of a coaxial cable whose characteristic impedance is 10Ω. The inner radius and the dielectric constant are 0.08m and 0.5 respectively.Determine the amount of current (mA) flowing in the circuit if the charge seen at any cross-sectional area of the copper wire is 0.0052 in 30ms what is the resistance R(Ω) given the applied voltage and calculated current flowing in the circuit v=12v I=? R=?From the circuit below, Calculate A. Frequency of Oscillation B. Period of Oscillation
- The displacement of an oscillating spring can be described by x = A cos(wt) where x = displacement at time t, A = maximum displacement, w = angular frequency, which depends on the spring constant and the mass attached to the spring, and t = time. Find the displacement, x, with maximum displacement A of 4 cm, for times from 0 to 120 seconds with increments of 30 seconds, and angular frequencies from 0.4 to 0.6 radians/sec, with increments of 0.1 radians/sec. The displacement for all combinations of times and angular frequencies needs to be calculated. Use meshgrid. Display your results in a matrix with angular frequencies along the top row and times along the left column like so (you may put zero, 0, or NaN, in the upper left corner:(Civil eng.) The maximum load that can be placed at the end of a symmetrical wooden beam, such as the rectangular beam shown in Figure 2.20, can be calculated as the following: L=S1dc L is the maximum weight in lbs of the load placed on the beam. S is the stress in lbs/in2. I is the beam’s rectangular moment of inertia in units of in4. d is the distance in inches that the load is placed from the fixed end of the beam (the “moment arm”). c is one-half the height in inches of the symmetrical beam. For a 2” × 4” wooden beam, the rectangular moment of inertia is given by this formula: I=baseheight3=12=24312=10.674 c=(4in)=2in a. Using this information, design, write, compile, and run a C++ program that computes the maximum load in lbs that can be placed at the end of an 8-foot 24 wooden beam so that the stress on the fixed end is 3000lb/in2. b. Use the program developed in Exercise 9a to determine the maximum load in lbs that can be placed at the end of a 3” × 6” wooden beam so that the stress on the fixed end is 3000lb/in2.Q.4 Referring to the system shown in Figure Q4 determine the values of K and k such that the system has a damping ratio 0.8, and an undumped natural frequency equal 4 rad/sec
- A 30-volt electromotive force is applied to an LR series circuit in which the inductance is 0.1 henry and the resistance is 50 ohoms. Determine the current i(t) if i(0) = 0.The em.f. of a primary cell is x V, when it is shorted then it gives a current of y A. Calculate internal resistance! of primary cell. Take the x and y from user in java programming languageSolve for the individual power of each resistors
- The mole balance equation for the phase separator is ziF=yiV + xiL.What does the F represent in this equation? Group of answer choices molar flow rate of the liquid molar flow rate of the vapor molar equilibrium total molar flow rateThe em.f. of a primary cell is x V, when it is shorted then it gives a current of y A. Calculate internal resistance! of primary cell. Take the x and y from user in java programming language. FastA clock is reading 10:30:00.0 (hr:min:sec) when it is discovered to be 4 seconds fast.Explain why it is undesirable to set it back to the right time at that point and show (numerically) how it should be adjusted so as to be correct after 12 seconds has elapsed.