PEARSON ETEXT ENGINEERING MECH & STATS
15th Edition
ISBN: 9780137514724
Author: HIBBELER
Publisher: PEARSON
expand_more
expand_more
format_list_bulleted
Question
error_outline
This textbook solution is under construction.
Students have asked these similar questions
The chute is used to divert the flow of water. The flow is 0.4 m /s and it has a cross-sectional area of 0.03 m?. Neglect the weight
of the chute and the water on it
4 m
Part A
Determine the horizontal force acting on the chute at the roller B, necessary for equilibrium.
Express your answer to three significant figures and include the appropriate units.
Part B
Determine the z component of the force acting on the chute at the pin A, necessary for equilibrium.
Express your answer to three significant figures and include the appropriate units.
Part C
Determine the y component of the force acting on the chute at the pin A, necessary for equilibrium.
Express your answer to three significant figures and include the appropriate units.
An inviscid fluid with density, ρ, discharges into the atmosphere through the device shown below. The height differences between the inlets and outlets are appreciable but unknown. Determine the horizontal component of force at the flange required to hold the device in place in terms of A1, V1, θ, and p.
The car is used to scoop up water that is lying in a trough at the tracks.
Determine the force needed to pull the car forward at constant velocity v for each of the three cases. The scoop has a cross-sectional area A and the density of water is ρw .
Knowledge Booster
Similar questions
- Using the figure Determine the reaction force on the smooth support at B due to the fluid pressure on the gate. The width of the gate into the page is 1.5 m and the density of the water is 1000 kg / (m3) .arrow_forwardProblem 2. Air is drawn into the 200-mm-diameter cylinder through the opening at A. If the piston is moving downward at a constant velocity of 10 m/s, determine the average pressure within the cylinder and the force required to move the piston. Take pa = 1.23 kg/m'. 200 mm Barrow_forwardQ2 The truck dumps water on the ground such that it flows from the truck through a 100-mm-wide opening at an angle of 60°. The length of the opening is 2 m. Determine the friction force that all the wheels of the truck must exert on the ground to keep the truck from moving at the instant the water depth in the truck is 1.75 m. A 1.75 m B 60°arrow_forward
- 5. The jets from both nozzles go out into the atmosphere at a speed of 35p/s. The liquid is water. The axes of the tube and both nozzles lie in a horizontal plane. Determine the forces that the fluid exerts on the support at A to keep the system in that positionarrow_forward: Water Flow into horizontal pipe with velocity of v. Determine the horizontal and vertical component of force and the moment at A need to hold the elbow in place. Neglected the weight of the elbow and the water within it . Take v between 1 to 5 m/s and D1 between 0.2 to 1.0 m and D2 between 1.0 to 0.2 m. 3 m D1 v1 A Вarrow_forward2””↑ 2" The tabletop experiment shown below has been designed to demonstrate the reaction of a free surface to acceleration. If the weight provides a constant acceleration of 20.1 ft/s2, draw the free surface during acceleration, labeling the water height at each end of the car and the angle o made by the free surface with respect to the horizontal. Car At Rest 6" 4" Car With Constant Accelerationarrow_forward
- The balloon has a mass of 25 g (empty) and it is filled with air having a temperature of 20 ∘C having the density of 1.202 kg/m3. If it is released, it begins to accelerate upward at 8 m/s2 Determine the initial mass flow of air from the stem. Assume the balloon is a sphere having a radius of 180 mm .arrow_forwardIf the wall is 3.5 m, determine an show the resultant force that water exert on the overhang sea wall along ABC, as shown in Figure (1). 15m Figure (1) 2.5 marrow_forwardFind the total (resultant) pressure acting on the tail end of the container containing gasoline (S = 0.7) accelerating at 3m/sec² to the right.arrow_forward
- Determine the force on hinge C and block D if the gate holding the water is 4 meters wide into the pagearrow_forwardThe truck carries an open rectangular container that is 3.5 m wide, 3.0 m deep and 5.0 m long, contains oil of density 869 kg/m3 to a depth of 2.0 m. If it has a constant acceleration of 6.7 m/s2. Determine the total force(in kN) acting at the rear wall of the container.arrow_forward3. The pneumatic jack is used in a service station as shown in the figure below. If the car and lift weigh 5000 lb, determine the force that must be developed by the air compressor at B to raise the lift at a constant velocity. Air is in the line from B to A. The air line at B has an inner diameter of 1 in., and the post at A has a diameter of 12 in. apapay A 12 in. 1 in. Barrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you
- International Edition---engineering Mechanics: St...Mechanical EngineeringISBN:9781305501607Author:Andrew Pytel And Jaan KiusalaasPublisher:CENGAGE L
International Edition---engineering Mechanics: St...
Mechanical Engineering
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:CENGAGE L