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The circular door has a weight of 55 lb and a center of gravity at G. Determine the x, y, z components of reaction at the hinge A and the force acting along strut CB needed to hold the door in equilibrium. Set ϴ = 90 deg. With fbd.
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- Show the complete solutionPart A Draw a free-body diagram of the crate that has a center of gravity at G. (Figure 1) Draw the vectors starting at the appropriate black dots. The location and orientation of the vectors will be graded. The length of the vectors will not be graded. No elements selected Figure < 1 of 1 0.5 m m 0.8 m F P 1.5 m 1.2 m Select the elements from the list and add them to the canvas setting the appropriate attributes. P Pearson5
- 01: The wide of water tank is 4 m into the paper as shown in Figure 1. Neglecting atmospheric pressure, compute the hydrostatic horizontal force, ②vertical force, and 3 resultant force on quarter-circle panel BC and its line of action. Take water density 1000 kg/m³. (30 Marks) Water 3 m 3 m Cene Figure 1 C B 7 mMechanical engineering thermodynamics. Handwritten solution accepted. (3-150) In an article on tire maintenance, it is stated that tires lose air over time, and pressure losses as high as 90 kPa (13 psi) per year are measured. The article recommends checking tire pressure at least once a month to avoid low tire pressure that hurts fuel efficiency and causes uneven thread wear on tires. Taking the beginning tire pressure to be 220 kPa (gage) and the atmospheric pressure to be 100 kPa, determine the fraction of air that can be lost from a tire per year.A chemistry graduate student is designing a pressure vessel for an experiment. The vessel will contain gases at pressures up to 360.0 MPa. The student's design calls for an observation port on the side of the vessel (see diagram below). The bolts that hold the cover of this port onto the vessel can safely withstand a force of 4.30 MN. pressure vessel W bolts side view port Calculate the maximum safe diameter w of the port. Round your answer to the nearest 0.1 cm. cm x10 X