Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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- A projectile is launched from point A with the initial conditions shown in the figure. Determine the x- and y-coordinates of the point of impact. 570' th = 284 ft/sec 35 A| ---Xr 1430' Answers: X = i ft y = i ftarrow_forwardI Q7. Capillary A 0.4 mm diameter glass tube is inserted into water at 15 °C in a cup. If the contact angle is taken as 15 degrees, what is the height the water rises in the tube? Report the value in cm.arrow_forwardThe ball B of negligible size rolls through the tube such that at the instant shown in (Figure 1) it has a velocity of 5 ft/s and an acceleration of 3 ft/s², measured relative to the tube. Figure @, a -2 ft- B y < 1 of 1 Part A If the tube has an angular velocity of w = 3 rad/s and an angular acceleration of a = 5 rad/s² at this same instant, determine the velocity of the ball. Enter the components of the velocity separated by commas. Express your answers in feets per second to three significant figures. VBz,VBy, VBz = Submit Part B aBz, aBy, aBz = Submit V—| ΑΣΦ. 41 Request Answer Provide Feedback Determine the acceleration of the ball at this same instant. Enter the components of the acceleration separated by commas. Express your answers in feets per second squared to three significant figures. 195| ΑΣΦ. 41 vec Request Answer vec ? wwwww ft/s ? ft/s²arrow_forward
- It’s required to determine the height (H) when the flow is 120 L/s ؟arrow_forward20P 20P On the beam given in the figure, calculate the rotation at point A and the maximum deflection in the beam by using one of the elastic curve methods. OB EI 2EI EI 50L L.arrow_forward1.) The pre-cast T-beam has the cross-section shown. Determine its weight per meter length if it is made from reinforced stone concrete and eight 20-mm cold formed steel reinforcing rods. USE : Pstel = 77.3 KN/m³ Pcons = 23.6 kN/m³ 200mm 200mm 500mm 88 375mm |150mm 375mm 150mm 150mmarrow_forward
- A small projectile is fired vertically downward into a fluid medium with an initial velocity of 60 m/s. Due to the drag resistance of the fluid, the projectile experiences a deceleration of a = (-0.4v³) m/s², where v is in m/s. Determine the projectile's velocity and position 4 seconds after it is fired.arrow_forwardA projectile is launched with an initial speed of 235 m/s at an angle of 62° with respect to the horizontal. Compute the range R as measured up the incline. B 235 m/s 62 A 22° Answer: R =arrow_forwardIn the figure shown, solve for the theoretical velocity of the jet, theactual velocity and the discharge through the orifice considering thefollowing:a) p1 = p2 = 0 Cc = 1.00 (rounded)h = 5 m of oil Cv = 0.97Do = 5 cmb) p1 = p2 = 0 Cc = 0.62 (sharp-edged)h = 5 m of water Cv = 0.98Do = 5 cmc) p1 = 70 kPa C = Cv = 0.95 (rounded)p2 = 0 Do = 7.5 cmh = 1.60 m (liquid with sp. gr. = 3)arrow_forward
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