Hello, I need help drawing a graph of the data I have collected(Table 6.2 & Table 6.3). The Force must be on the vertical axis and the acceleration on the horizontal axis. Please and thank you.
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Hello, I need help drawing a graph of the data I have collected(Table 6.2 & Table 6.3).
The Force must be on the vertical axis and the acceleration on the horizontal axis. Please and thank you.
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- A block of mass m starts from rest at a height hand slides down a frictionless plane inclined at angle with the horizontal, as shown below. The block strikes a spring of force constant k. Amm mA student is trying to determine the critical angle (0) at which block will slide down an incline. She knows the coefficient of static friction between the incline and the block is 0.53 and the coefficient of kinetic friction is 0.44. Neglect drag. Hint: One way to solve the problem is to solve for all quantities in terms of m, e and g (but not u), then use f= uN and a trig identity to solve for 0. What is the critical angle? 13 Would the the block slide if the incline angle were 35°? cannot be det check answers I Rain to stThere is a rough plane inclined at an angle θ to the horizontal where tan(θ)=12/5. Assume that μs = μk = 1.6. A rope applies a tension of 9 N to pull a 1.3 kg particle down the incline. What is theparticle’s acceleration? Use g=10m/s/s. (Side note: It will be helpful to draw the relevant free body diagram and to convert the decimal numbers to fractions.)
- 8. Rotation A hollow ball with mass mand radius r (I = (2/3)mr about the center or / = (5/3)m about the edge) rolls without slipping down the ramp shown at right.LI Labflow - Course: UNE X A 5E Card Sort NVTC 101.1001 Step WA 180 Assignment 4 - PI x b Search results for 101 Chem101 + A webassign.net/web/Student/Assignment-Responses/submit?dep=28628321&tags=autosave#question4213231_9 Three blocks are connected on the table as shown below. The coefficient of kinetic friction between the block of mass m, and the table is 0.430. The objects have masses of m, = 4.25 kg, m, = 1.20 kg, and m, = 2.40 kg, and the pulleys are frictionless. m2 (a) Draw free-body diagrams for each of the objects. Choose File No file chosen This answer has not been graded yet. (b) Determine the acceleration of each object, including its direction. m, magnitude 1.67 m/s? m, direction down m2 magnitude 1.67 m/s2 m2 direction left m3 magnitude 1.67 m/s2 m3 direction up (c) Determine the tensions in the two cords. left cord 34.55 1:19 PM O Type here to search 45°F 2/16/2022The μ between Jimmy’s hand and his tennis racket is 0.25. a) How hard must he squeeze the racket if he wants to exert a force of 150N along the longitudinal axis of the racket? b) What do we know? c) What variable are we looking for? d) How hard must he squeeze the racket? Answer parts a-d. please show all work.
- In the following, you will solve two variations of this problem. In both variations, we will assume that the ant is walking on a paper that rests on a table, and then suddenly the sheet of paper starts moving. Make sure to model your work based upon what is provided here. Namely, make sure that you include a description of your coordinate system, that you represent any velocity vectors in terms of components, and that any velocity vectors. you relate (a) In the first variation, we want to find the velocity vector for the ant relative to the paper that would result in the ant traveling due east at 2 miles per hour relative to the table. The paper is still going to move due southeast at v2 mi/hr.Three stacked blocks have a downward force F' exerted on them as shown: Assume the system is at rest (such as blocks stacked on a stationary table). If m = 6.5 kg and F' = 9.9 N, what is the normal force exerted on the 5m block by the 8m block? Express your answer in N, to at least one digit after the decimal point.Needs Complete typed solution with 100 % accuracy.