4. Compare the deflection values for both cases given below, Which one is safer if the 'limit is L/360? Why? What is behind the difference for two cases? Commentate your findings. (E= 20000 MPa) 12 W/m 2). 60 cm 30 cm 구m
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- A simply supported beam, having a length of 9.0 m, is being subjected to a concentrated live load of 20 kN, and a concentrated dead load of 15 kN, both at midspan of the beam. Neglecting the weight of the beam, take Ec = 20,000 MPa, and Ie = 4000x10^6 mm^4. a) What is the value of Ma (DL+LL)? b) What is the value of Instantaneous Deflection at Midspan (DL+LL)?Q.4 For a compound differential manometer in fig given below calculate (PA-PB)?If A = 2000 sq.mm. E = 200000MPa. Determine the Vertical and Horizontal Deflection of Point A.
- Using Virtual work Method, If A = 1000mm^2, E = 200000MPa. Determine the vertical deflection at point C and horizontal deflection at point C.A calibration test of a 2.5cm circular sharp edged orifice in the vertical side of the large tank showed a discahrge of 590 N of water collected in 81 seconds, when under a constant head of 4.70 m. In addition, measuremnt of the trajectory of the jet gave the following data: A point on the jet has the coordinates in cm (235, -30), with the orifice located at the origin of the rectangular coordinate system. Find the value of Cd. Answers: a.0.989 b.0.636 c.0.629 d.0.98A calibration test of a 2.5cm circular sharp edged orifice in the vertical side of the large tank showed a discahrge of 590 N of water collected in 81 seconds, when under a constant head of 4.70 m. In addition, measuremnt of the trajectory of the jet gave the following data: A point on the jet has the coordinates in cm (235, -30), with the orifice located at the origin of the rectangular coordinate system. Find the value of Cc.CHOICES a.0.629 b.0.989 c.0.98 d.0.636
- A calibration test of a 2.5cm circular sharp edged orifice in the vertical side of the large tank showed a discahrge of 590 N of water collected in 81 seconds, when under a constant head of 4.70 m. In addition, measuremnt of the trajectory of the jet gave the following data: A point on the jet has the coordinates in cm (235, -30), with the orifice located at the origin of the rectangular coordinate system. Find the value of Cd. Include FBD. a. 0.629 b. 0.989 c. 0.98 d. 0.636A calibration test of a 2.5cm circular sharp edged orifice in the vertical side of the large tank showed a discahrge of 590 N of water collected in 81 seconds, when under a constant head of 4.70 m. In addition, measuremnt of the trajectory of the jet gave the following data: A point on the jet has the coordinates in cm (235, -30), with the orifice located at the origin of the rectangular coordinate system. Find the value of Cc. 0.629 0.989 0.636 0.98A calibration test of a 2.5cm circular sharp edged orifice in the vertical side of the large tank showed a discahrge of 590 N of water collected in 81 seconds, when under a constant head of 4.70 m. In addition, measuremnt of the trajectory of the jet gave the following data: A point on the jet has the coordinates in cm (235, -30), with the orifice located at the origin of the rectangular coordinate system. Find the value of Cd, Cc, and Cv, Show a Diagram
- If a deflector angle of 90 is oriented in a horizontal manner, will the force exerted by a jet of water deflector be the same when it is oriented vertically? Explain to justify.A ball is thrown with an initial horizontal velocity of 30 m/s from a height of 3m above the ground, and 40 m from a vertical wall A. Determine the vertical component of the velocity of the ball (V3) after the first rebound if the coefficient of restitution is 0.70. B. How high (h) above the ground will the ball strike the wall.A calibration test of a 2.5cm circular sharp edged orifice in the vertical side of the large tank showed a discahrge of 590 N of water collected in 81 seconds, when under a constant head of 4.70 m. In addition, measuremnt of the trajectory of the jet gave the following data: A point on the jet has the coordinates in cm (235, -30), with the orifice located at the origin of the rectangular coordinate system. Find the value of Cd. Show fbd and solution a. 0.636 b. 0.629 c. 0.989 d. 0.98