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Problem 1 - For each mechanism shown set up the equations for position analysis by defining suitable vector loops, developing the vector loop equations, finding the scalar equations and any additional constraints. In each case use Link 2 as the input.
Problem 2 - For the mechanism in part (b) develop a Matlab program that calculates the position of the -slider. Plot the position of the slider versus the input angle for one bill rotation of the input. Hint: Use the x coordinate of the input pin in the pin-slot joint.
The second element of the task is to design a rising rate linkage mechanism that will permit at least 120 mm of rear wheel travel. The above figure can be used as a basis for your design.
Draw the T-s diagram (hint: it would help to begin with a schematic of the cycle) and.
steam entering a nozzle has an enthalpy of 3200 kjkg and its intial velocity is 75 ms. the exit stream has an enthalpy
A refrigerator is maintained at 5°C by removing heat from the refrigerated space at 18,000 kJ/hr. The power input to the refrigerator is 1500 W and the surrounding air is at 36° C.
today you have a savings account of 15 620. based on an annual interest rate of 4.2 what equal amount can you withdraw
consider the following state of stress mpa sigmasigmax 82 sigmasigmay 16 sigmasigmaz 40 tautaoxy 15 tautaoyz
Compute the energy loss for gradual enlargements with cone angles from 2° to 60° in the increments shown in Fig. 10.5. For each case, water at 60°F is flowing at 85 gal/ min in a 2-in Schedule 40 steel pipe that enlarges to a 6-in Schedule 40 pipe..
estimate the magnitude of the force in both lbf and n exerted by a seat belt on a 200 lb driver during a frontal
a stress gauge located at c on the surface of the bone ab indicates that the average normal stress in the bone is 3.80
explore the n2nono2 equilibrium in ambient atmosphere p 1 atm t 25 oc after the oxides no and no2 have been produced
advanceddesignmethodologies productandengineeringdesignreview
An adiabatic constant-volume combustion chamber is filled with a mixture of air and methane; lambda (AFR/AFRs) = 1.3. The initial temperature of the mixture is 25°C, and its pressure is 1 bar.
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