Two uniform spheres are positioned as shown. Determine the gravitational force F which the titanium sphere exerts on the copper sphere. The value of R is 40 mm.
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- Determine the Joint Force (FR) and location (xcp and ycp) acting on the 0.8 m high and 0.8 m wide triangular door shown in the figure.Half the cross section of the steel housing is shown in the figure. There are six 10-mm-diameter bolt holes around its rim. The density of steel is 8.10 Mg/m3 . The housing is a full circular part. Determine its mass.Determine the total force in kN on a circular plate of diameter 1.5 m which is placed vertically in water in such a way that center of the plate is 2 m below the free surface of the water. Include the diagram in your solution. a.103.0 b.59.34 c.44.14 d.35.67
- I need to draw a free body diagram and the solution F=406NDetermine to three significant figures the gravitational force acting between two spheres that are touching each other. The mass of each sphere is 200 kg and the radius is 300 mmIf the weight of the h0m0gen0us cylinder in equilibrium is 750N, what is the magnitude (N) of the n0rmal f0rce if the surface is r0ugh?
- I want a detailed solution Consider the plane area shown where r = 12 in. Determine the volume and the surface area of the solid obtained by rotating the area about the x-axis. The volume of the solid is ()× 103 in3. The area of the solid is ()× 103 in2.Hello dear Expert! Please kindly shade the region of intersection of the curves of the cylindrical surface 3 and the flat surface 1 and 2.Two cylinders of diameter 1 m and one cylinder of diameter 2 m are placed symmetrically in a pit 3 m wide (2 m cylinder on top). Find all the contact tones (Surfaces are smooth). Weight of 1 m diameter cylinder = 150 N, weight of 2 diameter cylinder = 240 N
- A cylinder has a conical cavity and is topped by a hemispherical cylinder, such as as indicated in the figure. a) Locate the centroid of the composite volume if R = 200 mm and h = 250 mm. b) Locate the center of mass of the composite volume if the cylinder is made of brass (ρ = 8750 kg / mᶟ) and the finish is made of aluminum (ρ = 2770 kg / mᶟ)Determine the smallest thickness (b) of the water gravity dam that will prevent it from tipping over due to the load from the water reservoir. The density of the concrete is 2.4 Mg/^3. The width of the dam is 1-m.The tank is fined with water. Determine the resultant force acting on the triangular plate A and the location of the center of pressure. Measured from the top of the tank. Solve the problem using the Geothermal Method.