Concept explainers
Two rotating rods in the vertical plane are connected by a slider block P of negligible mass. The rod attached at A has a mass of 0.8 kg and a length of 160 mm. Rod BP has a mass of 1 kg and is 200 mm long and the friction between block P and AE is negligible. The motion of the system is controlled by a couple M applied to bar BP. Knowing that at the instant shown rod BP has an angular velocity of 20 rad/s clockwise and an angular acceleration of 80 rad/s2 clockwise, determine (a) the couple M, (b) the components of the force exerted on AE by block P.
Fig. P16.141 and Fig. P16.142
(a)
Find the value of couple M.
Answer to Problem 16.142P
The value of couple M is
Explanation of Solution
Given information:
The mass of the rod AE is
The mass of the rod BP is
The length of the rod AE is
The length of the rod BP is
The angular velocity is
The angular acceleration is
Calculation:
Consider the acceleration due to gravity as
Calculate the position vector
The position of P with respect to A.
The position of P with respect to B.
The position of P with respect to E.
The angular velocity of rod BP in vector form is
The angular acceleration of rod BP in vector form is
Calculate the velocity of rod BP
Substitute
Consider the relative angular velocity of rod AE as
Calculate the velocity of point P
Substitute
Resolving i and j components as shown below.
Calculate the acceleration of rod BP
Substitute
Calculate the acceleration of point P with respect to point E
Substitute
Calculate the acceleration of point P
Substitute
Resolving i and j components as shown below.
Calculate the weight of
For rod AE.
Substitute
For rod BP.
Substitute
Calculate the mass moment of inertia
For rod AE.
Substitute
For rod BP.
Substitute
Calculate the position vector
The position of mass center G with respect to the rod AE.
The position of mass center H with respect to the rod BP.
Calculate the acceleration of point G
Substitute
Calculate the acceleration of point H
Substitute
Calculate the inertial terms of the mass center
For rod AE.
For rod BP.
Calculate the effective couples at mass center
For rod AE.
For rod BP.
Sketch the Free Body Diagram of rod AE as shown in Figure 1.
Refer to Figure 1.
Apply the Equilibrium of moment about A as shown below.
Sketch the Free Body Diagram of rod BP as shown in Figure 2.
Refer to Figure 2.
Apply the Equilibrium of moment about A as shown below.
Hence, the couple M is
(b)
Find the components of the force exerted on AE by block.
Answer to Problem 16.142P
The components of the force exerted on AE by block is
Explanation of Solution
Given information:
The mass of the rod AE is
The mass of the rod BP is
The length of the rod AE is
The length of the rod BP is
The angular velocity is
The angular acceleration is
Calculation:
Refer to part (a).
The components of the force exerted on AE by block
Therefore, the components of the force exerted on AE by block is
Want to see more full solutions like this?
Chapter 16 Solutions
Connect 1 Semester Access Card for Vector Mechanics for Engineers: Statics and Dynamics
Additional Engineering Textbook Solutions
Computer Science: An Overview (13th Edition) (What's New in Computer Science)
Database Concepts (8th Edition)
Experiencing MIS
Mechanics of Materials (10th Edition)
Fluid Mechanics: Fundamentals and Applications
Thermodynamics: An Engineering Approach
- (b) A steel 'hot rolled structural hollow section' column of length 5.75 m, has the cross-section shown in Figure Q.5(b) and supports a load of 750 kN. During service, it is subjected to axial compression loading where one end of the column is effectively restrained in position and direction (fixed) and the other is effectively held in position but not in direction (pinned). i) Given that the steel has a design strength of 275 MN/m², determine the load factor for the structural member based upon the BS5950 design approach using Datasheet Q.5(b). [11] ii) Determine the axial load that can be supported by the column using the Rankine-Gordon formula, given that the yield strength of the material is 280 MN/m² and the constant *a* is 1/30000. [6] 300 600 2-300 mm wide x 5 mm thick plates. Figure Q.5(b) L=5.75m Pinned Fixedarrow_forwardHelp ارجو مساعدتي في حل هذا السؤالarrow_forwardHelp ارجو مساعدتي في حل هذا السؤالarrow_forward
- Q2: For the following figure, find the reactions of the system. The specific weight of the plate is 500 lb/ft³arrow_forwardQ1: For the following force system, find the moments with respect to axes x, y, and zarrow_forwardQ10) Body A weighs 600 lb contact with smooth surfaces at D and E. Determine the tension in the cord and the forces acting on C on member BD, also calculate the reaction at B and F. Cable 6' 3' wwwarrow_forward
- Help ارجو مساعدتي في حل هذا السؤالarrow_forwardQ3: Find the resultant of the force system.arrow_forwardQuestion 1 A three-blade propeller of a diameter of 2 m has an activity factor AF of 200 and its ratio of static thrust coefficient to static torque coefficient is 10. The propeller's integrated lift coefficient is 0.3.arrow_forward
- (L=6847 mm, q = 5331 N/mm, M = 1408549 N.mm, and El = 8.6 x 1014 N. mm²) X A ΕΙ B L Y Marrow_forwardCalculate the maximum shear stress Tmax at the selected element within the wall (Fig. Q3) if T = 26.7 KN.m, P = 23.6 MPa, t = 2.2 mm, R = 2 m. The following choices are provided in units of MPa and rounded to three decimal places. Select one: ○ 1.2681.818 O 2. 25745.455 O 3. 17163.636 O 4. 10727.273 ○ 5.5363.636arrow_forwardIf L-719.01 mm, = 7839.63 N/m³, the normal stress σ caused by self-weight at the location of the maximum normal stress in the bar can be calculated as (Please select the correct value of σ given in Pa and rounded to three decimal places.) Select one: ○ 1. 1409.193 2. 845.516 O 3. 11273.545 ○ 4.8455.159 ○ 5.4509.418 6. 2818.386 7.5636.772arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY