Step 1: Find a relationship between a1 and a2? Hint: Use the fact that the length of the cable is constant Step 2: Draw Free Body Diagrams and write Newton's 2nd for each? Step 3: Solve the equations and find a1 and a2 as functions of m1, m2, and g? Step 4; Use m1=1 kg and m2=3 kg, 9.98 m/s, and find a1 and a2?
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Step 1: Find a relationship between a1 and a2?
Hint: Use the fact that the length of the cable is constant
Step 2: Draw Free Body Diagrams and write Newton's 2nd for each?
Step 3: Solve the equations and find a1 and a2 as functions of m1, m2, and g?
Step 4; Use m1=1 kg and m2=3 kg, 9.98 m/s, and find a1 and a2?
Step 5: Assume the mass ma drops 52.5 cm, starting from rest. Calculate the increase in Kinectic Energy using
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- A student attached a 0.71 kg toy to a 0.65 m long string. The student allowed the toy to travel in a circular path and noted that the toy took 0.44 seconds to complete one revolution and the radius of its path was 0.45 m. a. Find the string tension (N) b. Find the angle to the horizontal (degrees)Consider the diagram below. Mass Ma = 5kg and Mb = 50kg. The coefficient of kinetic friction between the black Ma and the table top is .2 = μk. Assume the tension in the cord is uniform throughout its length, the acceleration of each block is the same, and the pulley has no mass or friction. Calculate:a.) The acceleration in the system.b.) The tension T in the cord.Tomas Bata University in Zlín Faculty of Applied Informatics PROBLEM 2: A supporting ring marked C connects the three steel cables. Determine the tensions in cables AC and BC caused by the weight of the 30-kg box. A 45° D C 15° 100 N 30 kg 30% B
- There are two images, one has the question information and the other is the question.Three students, Adam, Bailey and Carlos, are tugging on a multi-colored hoop (as in the figure). Despite the three forces, the tire does not move. Adam pulls with a force FA of magnitude 210 N. and Carlos pulls with a force Fc of magnitude 175 N. Angle AB = 145 degrees. Note that the direction of Fc is not given. What is the magnitude of Bailey's force? FB = N BAB Adam Bailey CarlosThe following information pertains to questions 1, 2, and 3. A workman pulls a sled across an asphalt road using a rope at angle 0 above the horizontal direction. The workman pulls with 1,000[N] of force. The coefficients of friction of the sled with the road are u=1.00 and µ=0.70. The sled has mass m. The sled is initially at rest. T710Q0[N]. 1) Which expression gives the magnitude of fmax for the situation illustrated above? A) mg B) mg – 1000cos(0) C) - mg + 1000cos(0) D) mg-1000sin(0) E) mg+ 1000sin(0) F) None of the above
- PAMP4 ** F20 T2 T1 sign In the figure. the sign suspended by very light and uniform wires is at rest. The tensions in two wires are labeled. What is the value for the angle 0? Please use the values T. = 371Nand T .EAA bag of cement weighing 525 N hangs in equilibrium from three wires as suggested in the figure below. Two of the wires make angles 0, = 62.0° and 0, = 43.0° with the horizontal. Assuming the system is in equilibrium, find the tensions T,, T,, and T, in the wires. 269.42 T = Consider the net force at the point where the three wires come together. What is the acceleration of this point? N 420.98 Ta = The horizontal component of your T, is not equal to the horizontal component of your T,, so the object would be accelerating horizontally. N T3 525 N T T2 T3 Need Help? Watch It Read ItStep 1: Find a relationship between a1 and a2? Hint: Use the fact that the length of the cable is constant Step 2: Draw Free Body Diagrams and write Newton's 2nd for each? Step 3: Solve the equations and find a1 and a2 as functions of m1, m2, and g? Step 4; Use m1=1 kg and m2=3 kg, 9.98 m/s, and find a1 and a2? Step 5: Assume the mass ma drops 52.5 cm, starting from rest. Calculate the increase in Kinectic Energy using Kinematics and the values you found for a1 and a2,. Compare that with the potential energy lost.
- The support shown below is connected to a control cable at point B and has a joint at C. For the loads shown, determine the magnitude of the reaction at the support at point C when: d1 = 0.19 m d2 = 0.25 m d3 = 0.49 m d4 = 0.47 m F1 = 263 NA uniform mg = 15.5N picture frame is supported as shown in the figure below. The length of the 55.9°. Find the tension in frame is L=34.4cm, the width is W=13.3cm and assume the angle is a = cord T1. Submit Answer Tries 0/10 T₂ W L mg T₁ a P F Find the tension in cord T2. Submit Answer Tries 0/10 Calculate the magnitude of the horizontal force at P that is required to hold the frame in the position shown. Submit Answer Tries 0/10The 100kg object is held by three strings as shown in the figure below (0-60°). (a) Analyze the forces on the object, find the tension force in the bottom string. N. The magnitude of the tension on the bottom string: T3 = (b) Analyze the forces exerted on the junction of the three strings, and calculate the tension forces in the left, and right strings. N. The magnitude of the tension on the left string: T1 = N. The magnitude of the tension on the right string: T2 = Click Save and Submit to save and submit. Click Save All Answers to save all answers. Save 20201124 191 20201124 191313.jpg O 20201124_191305.jpg 20201124 191320.jpg