
Concept explainers
(a)
The angular acceleration of gear A
(a)

Answer to Problem 16.36P
The angular acceleration of gear A is
Explanation of Solution
The mass of the gear A and B
The radius of gyration
The mas of the gear C
The radius of gyration
The magnitude of couple (M) is 5 N-m.
Calculation:
Find the tangential acceleration
Here, r radius of gear.
Calculate the tangential acceleration of gear A:
Calculate the tangential acceleration of gear B.
Calculate the tangential acceleration of gear C.
Equate Equation (1) and (2).
Equate Equation (1) and (3).
Show the free body diagram and kinetic diagram of Gear B as in Figure (1).
Take moment about point B.
Since, the system of external forces is equivalent to system of effective forces. Therefore, express the system of external moment:
Take counterclockwise moment as positive.
Take moment about point A
Take moment about point A
Substitute
Show the free body diagram and kinetic diagram of Gear C as in Figure (2).
Calculate the moment of inertia
Substitute 3 kg for
Since, the system of external forces is equivalent to system of effective forces. Therefore, express the system of external moment:
Take counterclockwise moment as positive.
Take moment about point C
Take moment about point C
Substitute
Substitute
Show the free body diagram and kinetic diagram of gear A as in Figure (3).
Since the system of external forces is equivalent to system of effective forces, express the system of external moment:
Take clockwise moment as positive.
Take moment about point C
Take moment about point C
Substitute
Substitute
Calculate the moment of inertia of gear C.
Substitute 3 kg for
Calculate the moment of inertia
Substitute 9 kg for
The moment of inertia of gear A (
Substitute
Thus, the angular acceleration of gear are
(b)
The tangential force
(b)

Answer to Problem 16.36P
The tangential force
Explanation of Solution
Given information:
The mass of the gear A and B
The radius of gyration
The mas of the gear C
The radius of gyration
The magnitude of couple (M) is 5N-m.
Calculation:
Calculate the tangential force
Substitute
Therefore, the tangential force
Want to see more full solutions like this?
Chapter 16 Solutions
Connect 1 Semester Access Card for Vector Mechanics for Engineers: Statics and Dynamics
- This is an exam review question. The answer is Pmin = 622.9 lb but whyarrow_forwardPlease do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forwardPlease do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forward
- Please do not use any AI tools to solve this question. I need a fully manual, step-by-step solution with clear explanations, as if it were done by a human tutor. No AI-generated responses, please.arrow_forwardThis is an old practice exam. Fce = 110lb and FBCD = 62 lb but whyarrow_forwardQuiz/An eccentrically loaded bracket is welded to the support as shown in Figure below. The load is static. The weld size for weld w1 is h1 = 4mm, for w2 h2 = 6mm, and for w3 is h3 =6.5 mm. Determine the safety factor (S.f) for the welds. F=29 kN. Use an AWS Electrode type (E100xx). 163 mm S 133 mm 140 mm Please solve the question above I solved the question but I'm sure the answer is wrong the link : https://drive.google.com/file/d/1w5UD2EPDiaKSx3W33aj Rv0olChuXtrQx/view?usp=sharingarrow_forward
- Q2: (15 Marks) A water-LiBr vapor absorption system incorporates a heat exchanger as shown in the figure. The temperatures of the evaporator, the absorber, the condenser, and the generator are 10°C, 25°C, 40°C, and 100°C respectively. The strong liquid leaving the pump is heated to 50°C in the heat exchanger. The refrigerant flow rate through the condenser is 0.12 kg/s. Calculate (i) the heat rejected in the absorber, and (ii) the COP of the cycle. Yo 8 XE-V lo 9 Pc 7 condenser 5 Qgen PG 100 Qabs Pe evaporator PRV 6 PA 10 3 generator heat exchanger 2 pump 185 absorberarrow_forwardQ5:(? Design the duct system of the figure below by using the balanced pressure method. The velocity in the duct attached to the AHU must not exceed 5m/s. The pressure loss for each diffuser is equal to 10Pa. 100CFM 100CFM 100CFM ☑ ☑ 40m AHU -16m- 8m- -12m- 57m 250CFM 40m -14m- 26m 36m ☑ 250CFMarrow_forwardA mass of ideal gas in a closed piston-cylinder system expands from 427 °C and 16 bar following the process law, pv1.36 = Constant (p times v to the power of 1.36 equals to a constant). For the gas, initial : final pressure ratio is 4:1 and the initial gas volume is 0.14 m³. The specific heat of the gas at constant pressure, Cp = 0.987 kJ/kg-K and the specific gas constant, R = 0.267 kJ/kg.K. Determine the change in total internal energy in the gas during the expansion. Enter your numerical answer in the answer box below in KILO JOULES (not in Joules) but do not enter the units. (There is no expected number of decimal points or significant figures).arrow_forward
- my ID# 016948724. Please solve this problem step by steparrow_forwardMy ID# 016948724 please find the forces for Fx=0: fy=0: fz=0: please help me to solve this problem step by steparrow_forwardMy ID# 016948724 please solve the proble step by step find the forces fx=o: fy=0; fz=0; and find shear moment and the bending moment diagran please draw the diagram for the shear and bending momentarrow_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





