You place blocks A and B on a ramp. The center of mass of each block is drawn in the figure below (the dark dots inside the blocks). There is enough friction to prevent blocks from sliding down. But will the bocks A or B topple over? Explain your reasoning!
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- Next, imagine that a bullet impacts the block that you see and embeds itself. Let's say that you know the speed of the bullet just before it hits and also the mass of the bullet. Explain, with words and equations, how you would determine the angle theta. eed to know i L-h L Center of Pendulum catchThe problem is of a half atwood machine. Where a=(mg)/(m+M). Where a is acceleration, g is acceleration due to gravity and both M and m are masses as seen in the attached images. I do not understand why the answer to question 4 would not be 0.Please provide the correct answer
- Figure @ Determine the position of the center of mass zem of the baton shown in (Figure 1). Suppose that z-axis is directed to the right. Suppose that m₁ = 0.19 kg. m₂ = 0.07 kg, and m3 = 0.07 kg. ← → C a session.masteringphysics.com/myct/itemView?assignmentProblemID=182857878 5 m₂ T G B Detero X Y Part A ▼ Tem Determine zem. taking the origin of your coordinate axis to be the center of the larger ball. Express your answer with the appropriate units. Submit Part B H Tem O Search Course x 4 N μÅ 5 Value Request Answer U Determine z taking the origin of your coordinate axis to be the center of the smaller ball. Express your answer with the appropriate units. °H μA 5 Value GWhat po x # 8 → Units hp Units FDE K C PING C Determix C ne O ? ? P JU с ENConsider the system in the picture below: a cart of mass M with a static friction coefficient u is connected through a massless string to a hanging mass m. M is a capital letter, m is lower case. Write them as such, or vour equations will be confusing, M We want to find the maximum value of the hanging mass m such that the system is in equilibrium. 1. Free body diagram (FBD): Draw a FBD for each: the Cart and the hanging mass. Clearly show all the forces. 2. Clearly write the equilibrium equations for the cart in the horizontal and vertical direction. 3. Clearly write the equilibrium equation for the hanging mass. 4. Solve the system of the three equations above for the hanging mass m. Show your calculation to get credit. 5. What would happen if mass m exceeds this value? Explain.Please please answer as fast as possible please
- Consider a person serving a platter of hot food to their family who is gathered around a table. When holding theplatter, the person can choose how to hold the platter in front of them and would like compare the differences between position 1 and position 2 as shown below. In position 1, the shoulder is at 0 degrees while the elbow is at 90 degrees and in position 2, the arm is flexed as shown. a.) Consider the elbow joint and draw free body diagrams for each of the positions shown, including gravitational forces (consider the weight of the combined forearm and hand), elbow flexor forces, and the joint contact force. b.) Use the information provided below to solve for the magnitude of the elbow flexor force (in Newtons) for positions 1 and 2, the magnitude of the joint contact force (in Newtons), and the angle that the joint contact force makes with respect to the horizontal axis. • The platter of food weighs 7 lbs; the person weighs 175 lbs, and the person is 5’8” tall. • θ = 130…What is the Free Body diagram of the following image? O