200 N 30.00 F„= 500 N F.
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Calculate the magnitude of the normal force.


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- What other force must be present on the book? What direction is that force?1. Determine the forces the two people must apply in the new a and b directions shown such that a resultant force of 250N in the c direction is produced. Use the parallelogram method only. 250N 45° 30 B. 2. Determine the magnitude and direction of the resultant force, FA F= 400 N F= 200 N 90 150 VF = 300 NWhile installing new spark plugs in your car, the manual specifies they be tightened to 43 Nm. If you can only apply a force to the wrench 22 cm from the plug, and only at an angle of 62 degrees, What magnitude force should you apply to the wrench?
- 1. Problem No. 1: A series of cables are connected to a ring at B and D, as shown in the figure. For this system: a) Draw the FBD of point D. b) Determine the force in cable DB and cable DE. A B 100 lb. 15° 80 lb. 45° EAt an airport, luggage is unloaded from a plane into the three cars of a luggage carrier, as the drawing shows. The steps... acceleration of the carrier is 0.19 m /s2, and friction is negligible. The coupling bars have negligible mass. Coupling bar C Coupling bar B Coupling bar A you were looking Car 3 Car 2 Car 1 r more options... (a) By how much would the tension in each of the coupling bars A, B, and C change if 36 kg of luggage were removed from car 2 and placed in car 1? If the tension changes, specify whether it increases or decreases. (Specify lem a decrease in tension with a negative value and an increase in tension with a positive value. If there is no change, enter 0.) ATA= ATB= ATC= [ N (b) By how much would the tension in each of the coupling bars A, B, and C change if 36 kg of luggage were 6. removed from car 1 and placed in car 3? If the tension changes, specify whether it increases or decreases. (Specify a decrease in tension with a negative value and an increase in…A model airplane of mass 0.820 kg flies with a speed of 35.0 m/s in a horizontal circle at the end of a 54.0-m control wire as shown in Figure (a). The forces exerted on the airplane are shown in Figure (b): the tension in the control wire, the gravitational force, and aerodynamic lift that acts at θ = 20.0° inward from the vertical. Compute the tension in the wire, assuming it makes a constant angle of θ = 20.0° with the horizontal. N
- An object on the Earth has a center of gravity that is 6.0 cm above its base. If the same object was taken to the Moon, where the acceleration due to gravity is 1/6th the value on Earth, how far above the base (cm) would the center of gravity be? O 6.0 O 15 O 3.0 O 2.4 O 36 O 8.4 O 3.6 O 1.0. Imagine bringing the tips of your index fingers together. Eachfinger contains a certain finite mass, and the distance betweenthem goes to zero as they come into contact. From the forcelaw F = Gm1m2>r2 one might conclude that the attractive forcebetween the fingers is infinite, and, therefore, that your fingersmust remain forever stuck together. What is wrong with thisargument?A model airplane of mass 0.760 kg flies with a speed of 35.0 m/s in a horizontal circle at the end of a 66.0-m control wire as shown in Figure (a). The forces exerted on the airplane are shown in Figure (b): the tension in the control wire, the gravitational force, and aerodynamic lift that acts at 0 = 20.0° inward from the vertical. Compute the tension in the wire, assuming it makes a constant angle of 8 = 20.0° with the horizontal. N Figure (a) Circular path of airplane Wire Figure (b) T Flift mg Ⓡ
- In Figure, assume I 1 = 2.00 A and I2 = 6.00 A. What is the relationship between the magnitude F1 of the force exerted on wire 1 and the magnitude F2 of the force exerted on wire 2? (a) F1 = 6F2 (b) F1 = 3F2 (c) F1 = F2 (d) F1 = 1/3F2 (e) F1 = 1/6 F2.A 901000 kg spaceship has completed two thirds of its journey from the Earth to the Moon. At this position, what magnitude force would the ship's engines have to supply to be the equilibrant? Assume the mass of the moon is 7.35E+22 kg and the distance between the earth and the moon is 384000_km. 1. А. 3303_N 8536_N 7626_N 5080_N 5214 N F. D. В. Е. С. 9299.NTwo forces of magnitude TA= 8 kips and TB= 15 kips are applied as shown to a welded connection. Knowing that the connection is in equilibrium, draw the free-body diagram needed to determine the magnitudes of the forces TC and TD.