Part A A chain that has a negligible mass is draped over the sprocket which has a mass of 1 kg and a radius of gyration of ko = 50 mm (Figure 1) If the 6 kg block A is released from rest in the position s = 1 m, determine the angular velocity of the sprocket at the instant s = 1.5 m. Express your answer to three significant figures and include the appropriate units. Figure 100 mm- s = 1 m A 1 of 1 w= HÅ ? Value Units Submit Request Answer Return to Assignment Provide Feedback
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- A structural member with a rectangular cross section as shown in the accompanying figure is used to support a load of 2500 N. What type of material do you recommend be used to carry the load safely? Base your calculations on the yield strength and a factor of safety of 2.0.1. In the figure shown: a) Determine the centroidal distance (ỹ) from the X-Axis b) Determine the moment of inertia at the neutral axis. A 75 mm 100 mm A A B BThe mechanism used in a marine engine consists of a single crank AB and two connecting rods BC and BD as shown in (Figure 1). Assume r = 0.1 m. Figure 0.4 m 60° 30° @ 0.4 m 45° 1 of 1 Part A Determine the magnitude of the velocity of the piston at D the instant the crank is in the position shown and has an angular velocity of w = 5 rad/s. Express your answer with the appropriate units. UD = Submit Part B μà Value Submit Request Answer up and to the left down and to the right Determine the direction of the velocity of the piston at D the instant the crank is in the position shown and has an angular velocity of w = 5 rad/s. Units Request Answer ? < Return to Assignment Provide Feedback
- The mechanism used in a marine engine consists of a single crank AB and two connecting rods BC and BD as shown in (Figure 1). Assume r = 0.1 m. Figure Da 0.4 m 60° B 30° @ 0.4 m 45° 1 of 1 Part A Determine the magnitude of the velocity of the piston at C the instant the crank is in the position shown and has an angular velocity of 8 rad/s. Express your answer to three significant figures and include the appropriate units. VC = Submit Part B 0 μA Value Submit Request Answer up and to the right Determine the direction of the velocity of the piston at C the instant the crank is in the position shown and has an angular velocity of 8 rad/s. down and to the left Completed Previous Answers Units Return to Assignment ? Provide FeedbackAs shown in this figure are rigid bars supported by rods, what will be the equivalent value of P that can be applied if the maximum vertical displacement allowed is 5mm? ... Aluminum Rod L-2m A-500 mm E= 70 GPa A B Stoel Rod L- 2m A-300 mm E- 200 GPa D P 3m 3m A) 76.4 N B) 78.2 N 82.7 N D) 87.2 NThe uniform 58-kg slender rod is at rest in the position shown when P = 600 N is applied. (Figure 1) Figure 4 m 5 m P= 600 N B Part A Determine the angular velocity of the rod when the rod reaches the vertical position. Express your answer to three significant figures and include the appropriate units. W₂ = Submit Value Provide Feedback Request Answer A Units ?
- The figure shown below, if the viscosity of the liquid between the truncated cone and the stator is. Find the amount of torque (T) required to rotate the truncated cone at a constant angle (N) for the information below a= 40° N= 20 r.p.m a = 0.2 m b= 0.4 m Y =6 mm H = 1.48 Pa. s Note: Assume a linear velocity distributionA projectile is launched from point A with speed v0 = 31 m/s. Determine the value of the launch angle α which maximizes the range R indicated in the figure. Determine the corresponding value of R.xsl: A beam ABCDE is 5 m in length and loaded as shown in Figure Q3. Draw the S.F. and B.M./diagrams for the beam, indicating all major values. A 2 m 2000 Nm 2m 200 N/m M 2 m D 2 m 100 N/m Pays F 2 m
- 2. Two charges q1 = +5 µC and q2 = +8.5 µC are separated by a distance of 15 cm. Point P is located along the line segment joining the two charges. How far is point P from q1, if the magnitude of the electric field at point P due to the two charges is equal to zero? Draw a sketch of the problem and label appropriately. 3. The figure below shows two tiny charged spheres q1 = +5 µC and q2 = -7.5 µC separated by 8.0 cm.It is required to determine the height oftwo concentric cylinders used to construct a rotational viscometer. The outer diameter of the inner cylinder is 120.0 mm and the inner radius of the outer cylinder is 123.0 mm. When a torque of 10 N-m is applied to the inner cylinder, it is found to rotate at 1 revolution per 3 s. The kinematic viscosity of fluid is 0.025 m2 /s and specific gravity is 0.89.Example: a brass bar, having cross-sectional area of 900 mm2 is subjected to axial forces as shown in the Figure. Find he total change in length of the bar. Take E = 1 x 10° N/mm'. A B 70 KN 40 KN 10 KN 20 KN E 600 mmte 800 mm- 1000 mm-