Figure 2: Simplified Lever Representation of the Human Arm in Equilibrium With a Weighted Load 40cm In figure 2, if the weighted load (W) is equal to 1 kg and if the biceps muscle attaches 4 cm from the elbow joint at an angle (0) 30 degrees from the horizontal axis, then what is the value of Fm?
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- In the following figure, a rope is stuck with a mass of 10 kg. Calculate the tensile forces in the rope.Q3: determine shear stress (t) for each 16-mm diameter bolt. 40 kN 40 kN 30 mm 80 kN 30 mmO Equilibrium Worksheet 2 PDF.pdf - Google Chrome i learnonline.gmit.ie/pluginfile.php/359400/mod_resource/content/7/Equilibrium%20Worksheet%202%20PDF.pdf Equilibrium Worksheet 2 PDF.pdf 1 / 2 | 200% + | Q3 Members AB and AC support the 300N crate, determine the tensile force developed in each member. -3ft- 4 ft 18:45 O Type here to search 日 W Rain... Ca ENG 02/03/2022 ...
- The member is made of A992 steel and has a diameter of 2 in. Take F. S.-29 against buckling (Fiquen. 1) Figure 101 Part A Determine the maximum force P that can be supported by the assembly without risk of causing member AC to buckle Express your answer to three significant figures and include the appropriate units. 5 ? P- 16.8 kip Submit Previous Answers Request Answer X Incorrect; Try Again: 5 attempts remaining < Return to Assignment Provide FeedbackUnlike most of the other muscles in our bodies, the masseter muscle in the jaw, as illustrated in the figure, is attached relatively far from the joint, enabling very large forces to be exerted by the back teeth. This is shown in the figure below, where a person is biting down on a bullet placed between the back teeth. (FM = 200 N and r. = 3.7 cm.) M= 2.9 cm Masseter muscle гeaction (a) Using the information in the figure, calculate the magnitude of the force exerted by the teeth on the bullet. (b) Calculate magnitude of the force on the joint.7. Carbon steel is tested in uniaxial tension, as shown in the inset schematic, to produce the following stress-strain diagram. 600 500 MPa 600 g 400 400 300 200 200 100 0.005 0.05 0.10 0.15 Strain E Figure 1: Stress vs. strain for plain carbon steel. Note: the inset shows the initial portion of the data, magnified for clarity. a) From the Figure 1, determine the following material properties: (i) elastic modulus, E, (ii) ultimate tensile strength, UTS, (iii) yield stress, oy. b) Label the following regions or points on the figure: (i) fracture point, (ii) plastic region, (iii) elastic region. 8. You wish to design a new bone screw used to hold fractured bone segments together or to hold implants in place. Describe what type of material you would use and what considerations you need to make. 27°F Cloudy Stress (MPa) a
- To pull with a force F=160 N on the scale as shown, what should the tension in your biceps muscle be? The distance h = 0.28 m.a)calculate the compressive force acting on the lumbar vertebra b)Calculate the shear force acting on the lumbar vertebra. Report the force, in units of N The GRF is 225 N. The GRF has a moment arm of 0.40 m relative to the vertebra axis of rotation. The weight of the trunk is 350 N. Wtrunk has a moment arm of 0.3 m relative to the vertebra axis of rotation. Fm is 300 N. Fm has a moment arm of 0.05 m relative to the vertebra axis of rotation.