# Civil Engineering Assignment Help | Civil Engineering Homework Help

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• Q1: Q3: Assume a transmitting antenna placed at AUK with a gain of 54 dB. The Pout of the transmitting antenna is 99 W. The signal is received by a satellite, that is 37.5X10°m away from earth, with a gain of 26 dB. The signal is then routed to a transponder (a wireless receiver/transmitter devise) which has the following characteristics: a noise temperature of 50 K, a bandwidth of 36 MHz, a gain of 110 dB. Answer the following questions: a) Calculate the maximum path loss at 6.1 GHz b) Calculate the power at the output port of the satellite antenna in dBW. c) Calculate the noise power at the transponder input in dBW d) Calculate the carrier power at the transponder output (in dBW and Watt)See Answer
• Q2:If the Bucket weight is 50lb. Determine the tension developed in each of the wires. B 30° 130See Answer
• Q3:Using graphical and components method determine the resultant force and direction. 1000 N 60% 37° 800 N 45° 600 N 700 NSee Answer
• Q4:A Draw a free-body diagram of member AC in the figure below and label all the horizontal and vertical components of the forces acting on it. Show the forces at B as fractions of BD. 2 m 4 m T B 15° Det 2 m 1 m Added 2 m CommentSee Answer
• Q5:Question 2 (25 points) ✔) Listen The center lines of the arms of the tree pruning lopper intersect at E as shown in Figure. Determine angles 01, 02, 03, 04, 05, and 06. 30lb 27" 0₂ 05 Intersection of arm centerlines 30 lb 06 37%" 0₂ A O BO O 37½" D 30%See Answer
• Q6:1. Two cables are tied together at C and loaded as shown below. Draw a free-body diagram needed to determine the tension in AC and BC. (15 pts.). 960 mm 1100 mm- 400 m C 1600 kg BSee Answer
• Q7:2. The 60-lb collar A can slide on a frictionless vertical rod connected as shown to a 65-lb Counterweight C. Draw the free-body diagram needed to determine the value of h for which the system is in equilibrium. (15 pts.) 15 in.- A 60 th B C 65 lbSee Answer
• Q8:3. Two cables are tied at C and are loaded as shown below. Determine the tension (a) in cable AC, (b) in cable BC. (20 pts.) J50⁰ 400 lb 30-1See Answer
• Q9:d 5. Use method of section to determine all the bar forces of the truss shown in figure 2 below (30_pts.). F 12 k 3 @ 20' - 60' E 24 k figure 4 15'See Answer
• Q10:All problem solutions must include FBDs. 6-27. Determine the force in members DC, HC, and HI of the truss, and state if the members are in tension or compression. F 40 kN -2 m- -2 m- 50 kN H I A -2 m- Probs. 6-27/28 C 1.5 m -30 kN 1.5 m B 40 kN 1.5 mSee Answer
• Q11:6-42. Determine the force in members BC, HC, and HG. State if these members are in tension or compression. 4 kN A 1.5 m 6 kN B H 1 m 1.5 m 12 kN C G 2 m 1.5 m Probs. 6-42/43 9 kN D 1m -1.5 m 6 kN ESee Answer
• Q12:1. For jib crane AB-shown in Figure 1 below, draw the free-body diagram of the jib crane AB, which is pin-connected at A and supported by member (link) BC. Neglect the weight of the crane. 0.4 m 3 m- 8 KN Figure 1See Answer
• Q13:2. A force of 150 lb acts on the end of the beam shown in Figure 2. Using the free-body diagram for the beam shown in Figure,2, find the magnitude and direction of the reaction at pin A and the tension in the cable. Neglect the weight of the beam. Li 150 lb (a). 150 lb Figure 2 8 ft (b). T 15ft 3 ftSee Answer
• Q14:4. Use the method of joints to determine all the bar forces of the truss shown in figure 1 below (30 pts.). C 10 k 30 k B E 1212 figure 3 |+9+See Answer
• Q15:² 6. For the truss in figure 3 below, use the combined methods of the joint and section to determine all the bar forces (40pts.). 30 k F 20 k B H 30 k C -4@20' = 80' figure 5 E 20 k 20See Answer
• Q16:7(a). The spring ABC has a stiffness of 500 N/m and an unstretched length of 6 m. A horizontal force F is applied to the cord which is attached to the small pulley B so that the displacement of the pulley from the wall is d = 1.5 m. Draw a free-body diagram for the small pulley B. Figure 6 - 500 N/m 7(b). The 2-kg block is held in equilibrium by the system of springs. Draw a free-body diagram for the ring at A. Figure 7 D c=20 N/m 500 N/m Figure 8 p=40 N/m 7(c). Blocks D and ♬ weigh 5 lb each and block E weighs 8 lb. The system is in equilibrium at a given sag s. Draw the free-body diagram for the connecting ring at A and find s. Neglect the size of the pulleys. -30 N/mSee Answer
• Q17:8. Determine the horizontal and vertical compressions of reaction on the beam caused by the pin at B and the rocker at A as shown in Figure 9a below. Neglect the weight of the beam. 600 N 0.2 m Figure 9a Parandada 100% S -2m 200 N 500 in 15 N 600 - N 02 100 N Figure 9b 200 N D₂See Answer
• Q18:9. Determine the normal force, shear force, and bending moment at C of the beam in Figure 10a. 1200 N/m C (a) Figure 10a 1200 / A 15 Figure 10b 8See Answer

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