Bucket A and block C are connected by a cable that passes over drum B. Knowing that drum B rotates slowly counterclockwise and that the coefficients of friction at all surfaces are μS = 0.35 and μk = 0.25, determine the smallest combined mass m of the bucket and its content for which block C will (a) remain at rest, (b) start moving up the incline, (c) continue moving up the incline at a constant speed.
Fig. P8.118
(a)
Find the smallest combined mass m of the bucket for the block C will remain at rest.
Answer to Problem 8.118P
The smallest combined mass m of the bucket is
Explanation of Solution
Given information:
The mass of the block C is
The coefficient of static friction is
The coefficient of kinetic friction is
Calculation:
Show the free-body diagram of the drum B as in Figure 1.
Find the angle of the belt wounded around the drum as follows;
Find the tension
Substitute mg for
Here, the acceleration due to gravity is g.
Consider the value of acceleration due to gravity is
Show the free-body diagram of the block C as in Figure 2.
At rest, the cable slips on the drum. The motion impending is along the x-axis.
Substitute
Resolve the horizontal component of forces.
Substitute 100 kg for
Find the friction force (F) using the relation.
Substitute 0.35 for
Resolve the vertical component of forces.
Substitute
Therefore, the smallest combined mass m of the bucket is
(b)
Find the smallest combined mass m of the bucket for the block C start moving up the incline.
Answer to Problem 8.118P
The smallest combined mass m of the bucket is
Explanation of Solution
Given information:
The mass of the block C is
The coefficient of static friction is
The coefficient of kinetic friction is
Calculation:
Show the free-body diagram of the block C as in Figure 3.
When the block start moving up the incline;
No slipping occurs at block and drum. The motion impending is against the x-axis.
Substitute
Resolve the horizontal component of forces.
Substitute 100 kg for
Find the friction force (F) using the relation.
Substitute 0.35 for
Resolve the vertical component of forces.
Substitute
Therefore, the smallest combined mass m of the bucket is
(c)
Find the smallest combined mass m of the bucket for the block C continue moving up the incline at constant speed.
Answer to Problem 8.118P
The smallest combined mass m of the bucket is
Explanation of Solution
Given information:
The mass of the block C is
The coefficient of static friction is
The coefficient of kinetic friction is
Calculation:
Show the free-body diagram of the block C as in Figure 3.
When the block start moving up the incline;
No slipping occurs at block and drum. The motion impending is against the x-axis.
Substitute
Resolve the horizontal component of forces.
Substitute 100 kg for
Find the friction force (F) using the relation.
Substitute 0.25 for
Resolve the vertical component of forces.
Substitute
Therefore, the smallest combined mass m of the bucket is
Want to see more full solutions like this?
Chapter 8 Solutions
EBK VECTOR MECHANICS FOR ENGINEERS: STA
- Two squirrels are sitting on the rope as shown. The squirrel at A has a weight of 1.2 lb. The squirrel at B found less food this season and has a weight of 0.8 lb. The angles 0 and > are equal to 50° and 60° respectively. Determine the tension force in each of the rope segments (T₁ in segment, T₂ in segment Я, and T3 in segment DD) as well as the angle a in degrees. Ө A α B Note the figure may not be to scale. T₁ = lb lb T2 T3 = = lb απ deg A BY NC SA 2013 Michael Swanbomarrow_forwardEach cord can sustain a maximum tension of 500 N. Determine the largest mass of pipe that can be supported. B 60° A E Harrow_forward2. Link BD consists of a single bar 1 in. wide and 0.5 in. thick. Knowing that each pin has a in. diameter, determine (a) the maximum value of the normal stress in link BD and the bearing stress in link BD if 0 = 0, (b) the maximum value of the normal stress in link BD if 0 = 90. -6 in.- 12 in. 30° D 4 kipsarrow_forward
- In the image is a right rectangular pyramid of total mass m. Note the location of point Q. Determine the inertia dyadic for the pyramid P, relative to point Q for e hat unit vectors.arrow_forwardauto controlsarrow_forwardI am having a hard time solving for the vector v in the equation in the image. Can you help me?arrow_forward
- A 4 ft 300 Ib 1000 Ib.ft 350 Ib C 2 ft 3. 45° 250 Ib B. 3ft B 25ft 200 Ib 150 Ib Replace the force system acting on the frame shown in the figure by a resultant force (magnitude and direction), and specify where its line of action intersects member (AB), measured from point (A).arrow_forwardCan you research the standard percentage of Steam Quality in:(1.) Boiler - leaving boilerBoiler -> Out(2.) Condenser - coming in condenser In -> CondenserProvide reference Also define: steam quality, its purpose and importancearrow_forwardNumbers 1 and 2 and 5 are are optional problems. However, I only need the values (with units) of 3, 4 and 6. Thank you :)arrow_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