A 7-40 cm (7–16 in.] plow is pulled by a tor with an outside wheel clearance dime of 2.5 m [100 in.]. How far from the f edge should the edge of the rear tire be c if the plow's center of resistance is di behind the tractor's center of pull?
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- Problems: 1. A hiker begins a trip by first walking 30 km southeas: from her car. She stops and sets up her tent for the night. On the second day, she walks 40 km in a c irection 70° north of east, at which point she discovers a forest ranger's tower. (a) determine the components of the hiker's displacement for each day. (b) determine the components of the hiker's res iltant displacement R for the trip (find an expression for R in terms of unit vector notation). (c) determine the magnitude and direction of the resultant.Ed, Edd and Eddy love to play on a seesaw. It consists of a 1-kg board with a length of 8 meters. One day, the other end broke down. They had to cut it by a meter and maintain the pin support in its original position. Then, they tried the seesaw altogether. Ed (m = 55kg) sat on one side about 3m from the pin while Edd (m = 40kg) and Eddy (m = 40kg) on the other side. If Edd was about 3m as well from the pin, calculate the following: The magnitude of the reaction force (N) exerted by the pin support on the board. Assume Eddy is in between Ed and Edd. (mass of board = 1kg) *no diagrams were providedHW_5_01P.pdf PDF File | C:/Users/Esther/Downloads/HW_5_01P.pdf 2 Would you like to set Microsoft Edge as your default browser? Set as default To be most productive with Microsoft Edge, finish setting up your Complete setup Maybe later browser. CD Page view A Read aloud V Draw F Highlight 2 of 3 Erase 4. Two blocks mĄ = 3.0 kg and mB = 8.0 kg are on inclines and are connected together by a string as shown in the figure below. The coefficient of kinetic friction between each mass and its incline is uk 0.25. MB m MA 51° 21° Copyright © 2008 Pearson Education, Inc. (a) If ma moves up, and mp moves down, determine their acceleration. (b) What minimum value of µk will keep the system from accelerating? 1:50 PM e Type here to search C A N 2/9/2021
- Ed, Edd and Eddy love to play on a seesaw. It consists of a 1-kg board with a length of 8 meters. One day, the other end broke down. They had to cut it by a meter and maintain the pin support in its original position. Then, they tried the seesaw altogether. Ed (m = 55kg) sat on one side about 3m from the pin while Edd (m = 40kg) and Eddy (m = 40kg) on the other side. If Edd was about 3m as well from the pin, calculate the following: The manitude of the reaction force (N) exerted by the pin support on the board. Assume Eddy is in between Ed and Edd. (mass of board = 1kg) Ans. 1332.8An engine drives a machine. The torque equations is given below. The moment of inertia of the rotating components are 54kgm². The average speed of the system is 300 rpm. T machine = 1500+ 318.310 € (0 → π,π → 2π) and repeat Tengine = 2000 + 500 sin0 Calculate: 1.Draw the crank effort diagram and show the values of all the relevant points. (2.5048 Rad) 2.The percentage velocity variation over the cycle. (0J, 0%) 3.The maximum instantaneous acceleration (-29.726 rad/s2)You want to put larger tires on your truck. The manufacturer tires are P265/65R18. You want to upgrade to P285/75R19. Complete the information below for each tire size. Please upload a picture//file of your work.
- A guy who works out at your gym found out that you are an engineer and has hired you do an analysis comparing two versions of a similar exercise: lateral raises. He wants to compare using dumbbells (as in Fig 1) versus using a cable machine (as in Fig 2). Develop an equation for each case for the moment about the shoulder as a function of angle. (0 to 90 horizontally) You will use your own dimensions for this analysis. You will need to measure: Arm length from shoulder joint to palm of your hand Height from shoulder joint to the ground Wingspan with arms held horizontally (palm-to-palm) You can use any measurements for the dimensions, just need the equations and FBD Fig 1: Dumbbell Lateral Raises Fig 2: Cable Lateral RaisesPlease find the Grashof classification and the Barker classification of the two four-bars: (NOTE: distances are in non-dimensional units. Can use inches or cm) P1) L1=d=4, theta1=0 degrees, L2=a=1.6, theta2=60 degrees, L3=b=5.5, L4=c=4.5 P1) L1=d=1, theta1=0 degrees, L2=a=1.25, theta2=120 degrees, L3=b=1.5, L4=c=2 Please also draw the four-bars to estimate the unknown angles theta3 and theta4.Pages Le EXtract Object View Edit OCR Sign Comment Page Organization Convert Protect Start ASSIGNMENT FINAL 20... Q7) A horizontal table rotates freely in a horizontal plane about a frictionless vertical axle. The table has a moment of ineria 200 kg.m² and a radius R = 2.0 m. A student whose mass is m = rim of the disk toward its center. If the angular speed of the system is 2.0 rad/s when the student is at the rim, what is the angular speed when he reaches a point r = 60 kg walks slowly from the M 0.50 m from the center? 11 1 7/7 We HA 144a. Hem t A A L
- For my assigment, I was asked to design a electric motorbike that has a peformance equal to Honda CBR1000 Fireblade which has a petrol engine. A part of the the assignment is to calculate " An estimate of maximum Power your new motor will need to generate to match the Honda’s performance." I can make the assumption, apart from changing the motor, everything else is going to stay the same so the fairing,the rider and etc they're gonna be the same for the two bikes. So can you please tell me how I can calculate that which information would I need ?2. ! SHOW COMPLETE SOLUTION ! *pls draw FBD *pls use data give properly : rate will be low if not explained properly Problem 2: The pulleys are frictionless and of negligible weight Find: 2.1 Tension (N) in the cord supporting block C. 2.2 Acceleration at Block A (m/s^2) 2.3 Acceleration at Block B (m/s^2) 2.4 Acceleration at Block C (m/s^2)Homework Q1/ A pulley is driven by a flat belt running at a speed of 600 m/min. The coefficient of friction between the pulley and the belt is 0.3 and the angle of lap is 160°. If the maximum tension in the belt is 700 N; find the power transmitted by a belt. [Ans. P= 3.974 kW]