College Physics
11th Edition
ISBN: 9781305952300
Author: Raymond A. Serway, Chris Vuille
Publisher: Cengage Learning
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Draw the free-body diagram for the given system.
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- A bag of cement weighing 525 N hangs in equilibrium from three wires as suggested in the figure below. Two of the wires make 62.0⁰ and 02 = 43.0° with the horizontal. Assuming the system is in equilibrium, find the tensions T₁, T2, and T3 angles 0₁ 1' in the wires. T₁ = 0 = Consider the net force at the point where the three wires come together. What is the acceleration of this point? N 0.53 X T₂ = The horizontal component of your T₁ is not equal to the horizontal component of your T₂, so the object would be accelerating horizontally. N T3 = 525 N 201 T₁ CEMENT T3 0₂ T₂ Fgarrow_forwardA window washer is standing on a scaffold supported by a vertical rope at each end. The scaffold weighs 202 N and is 2.8 m long. What is the tension in each rope when the 706–N worker stands 1.20 m from one end? SMALLER TENSION= _______N LARGER TENSION= ________Narrow_forwardAn object is subjected to three forces as shown in the figure. Assume F1 = 50.0 N and F2 = 95.0 N, what is T if the object is in static equilibrium? Enter a number with three significant digits.arrow_forward
- A large wrecking ball is held together by two lightweight steel cables. If its mass is 4 090 kg, what is the tension TB in the cable that makes an angle of 40 ° with the vertical? A) 5.23×10 4 NB) 194 NC) 73 ND) 2×10 3 Narrow_forwardA 882 N sign is hung symmetrically by 3 cables that each make an angle of 69° to the horizontal. How much is the vertical component of the tension force in each cable? Answer: 294 N Check Correct Marks for this submission: 1.00/1.00. tension force in each cable? Answer: 91.5N Check xarrow_forwardA person whose mass is m = 104.0 kg steps on a mechanical bathroom scale placed on an inclined plane that makes the angle a = 33.7° with the horizontal. What is the reading on the scale? reading: kgarrow_forward
- If the coefficient of static friction between all surfaces in contact is µg = 0.3 and a determine force P that must be applied to wedge A in order to lift the block weighing 500 N. The weight of wedge A is negligible compared to the block. B Parrow_forwardA shop sign weighing 210 N hangs from the end of a uniform 180-N beam as shown in (Figure 1). Figure 35.0% -1.35 m 1.70 m Part A Find the tension in the supporting wire (at 35.0°). Express your answer to three significant figures and include the appropriate units. FT = 395 Submit Part B μA X Incorrect; Try Again FHz = Previous Answers Request Answer N Find the horizontal force exerted by the hinge on the beam at the wall. Express your answer to three significant figures and include the appropriate units. Enter positive value if the direction of the force is to the right and negative value if the direction of the force is to the left. μA Value ? Units P Pearson ?arrow_forwardThree main forces that act on the patella, and are shown on the diagram below. These forces are the quadriceps muscle force (FQ), the patella ligament force (FPL), and the patellofemoral joint reaction force (FPF). The angles a and ẞ are with respect to a line that is perpendicular to FPF. Assuming a = 10°, ẞ = 30°, and FQ = 4000 N, use the equations for static equilibrium to calculate the FPL in Newtons. Round to an integer, such there is no need for a decimal. FQ FPF FP Barrow_forward
- PROBLEM SET 06: Interacting Objects, Tension, Pulleys OPEN a T₁= B Find the magnitude of the tension in each of the three cables supporting the traffic light if it weights w=335 N and a = 20°, 8=83. You may click the image to enlarge. Help on how to format answers: units. T₁= T- Turned in automatically when due Instructions Aarrow_forward3arrow_forwardA bag of cement whose weight is Eg hangs in equilibrium from three wires as shown in Figure. Two of the wires make angles 01 and 02 with the horizontal. Assuming the system is in equilibrium. What is the tension in the left-hand wire? Fg cos 02 a) T1 sin(8,+82) Fg sin 02 sin(e,+82) b) T1 2Fg cos 02 c) T1 sin(e,+02) 2Fg sin 82 d) T = cos(e,+02) 3Fg sin 02 e) T1 cos(e,+02) CEMENTarrow_forward
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