What is the resultant force, F, in Newton? (Answer in whole number, no units. Example: 123) The t-component of the force F is known to be 75 N. Determine the n-component and the magnitude of F. F- 10° 30
Q: 8.) Plot force (F) vs. 1/. (Falong the vertical axis and 1/ along the horizontal.) 9.) Fit the data…
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Q: PROBLEM 3: The force R is the resultant of the forces P1, P2, and P3 acting on the rectangular…
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Q: 3 Vectors of force A,B,C in a cartesian plane. The vectors are calculated in Newton (N). The…
A: In this question we have to find the angle of the vector A from negative x-axis. Please give…
Q: F. 15° 700 N
A: It will be calculated by using law of parallelogram of vector addition and sine law.
Q: Calculate the value of the angle a in Figure Q1(b) that will minimize the magnitude of the force P…
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Q: 70° HW02-2 Resolve the force F2 into components acting along the u and v axes and de mine the…
A: F1 = 300 N F2 = 500 N θ2 = 45o (angle between F2 and v axis) θ1 = 30o (angle between F1 and u axis)…
Q: In the sketch below, a) What is the x-component of vector B? b) What is the y-component of vector B?
A: We know that here you put a question related to the force analysis in the vector force. here two…
Q: 1. Determine the magnitude of the resultant force and its direction, measured counterclockwise from…
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Q: Figure E 4 ft -X P -2ft- B ISAS T 2 ft 3 ft < 1 of
A: P = 660 lb.
Q: 3. What is the magnitude and direction of the net force vector applied by Sam and Alex in the…
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Q: At what angle must the 520-lb force be applied in order that the resultant R of the two forces have…
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Q: 1.) The pin shown below is subjected to 3 forces (F1, F2 and F3). F1 = 1000 N and is a force in the…
A: Given that: F1=1000 NF3=450 NF2=800 N
Q: A) Write the vector form of D, E, and F. B) Find F x D · E 7 in E 15 in 12 in F 10 in
A: position coordinates:a: 0,10,0F:12,10,0c:0,0,15g0,0,15e12,0,0
Q: 1. Two Riders players tackle the Argos quarterback in a football game. The first Riders player…
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Q: #4) Let's say you got a summer job as a dog walker. Each force shown on the diagram represents the…
A: We are given 3 forces. We have to find the resultant of these forces. We first find the x component…
Q: how do you determine the angle away from the positive x-axis with a given vector?
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Q: 3. Robert is pulling his red wagon forward with a force of 230N by holding the handle at a 60 degree…
A: F1 = 230 N θ1 = 60oF2 = 300 N
Q: 8. a big dog is tethered by a chain which is in thin bolt to a brick wall as depicted in the sketch.…
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Q: Car #1 hits thé parked car at an angle of 30' with a force of 200N. Car #2 hits thé parked car at a…
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Q: b) For Figure Q1a, what is the angle between the resultant force R (=3100 N) and the y-axis. Give…
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Q: Three vector forces with magnitudes of F1-4.79N, F2=7.32N and F3-2.81N act on a particle of mass m =…
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- 56. A forklift is used to offload freight from a delivery truck. Together the forklift and its contents weigh 800 Ib, and the weight is evenly distributed among four wheels. The ramp is inclined 14° from the horizontal. F F1 a. Write the force vector F in terms of i and j representing the weight against a single tire. b. Find the component vector of F parallel to the ramp. Round values to 1 decimal place. c. Find the magnitude of the force needed to keep the forklift from rolling down the ramp. Round to the nearest pound.3. An object is stuck at the origin. To get the object free, two forces are applied to the object. The first force, F, extends from the origin to position (-8,2). The second force, F2, acts on the object with a magnitude of 8 Newtons in the direction of 30°. You may assume units of distance are in meters. Represent the two force vectors, F and F2, in component form. Leave all answers in exact а. form. b. Draw a sketch of the two force vectors on the graph to the right. -5- с. If these two forces together free the object, in what direction and with what magnitude would the object travel? Round to one decimal -5 place as needed. -5can you the steps to get answer that's at the bottom
- Static Course - Components of a Force Vector Determine the resultant of the forces using the component sum method.Determine the magnitude and coordinate direction angles of the resultant force acting on A.1. Dislocated shoulder. Another vector example is force, which has an SI unit of Newtons (N). Just like displacement, we can add two or more forces. Now, consider a patient with a dislocated shoulder placed in a traction apparatus as shown in figure 1. The vectors A and B have equal magnitudes and must combine to produce an outward force of +5.60Ni. What are the magnitudes of A and B? Figure 1:
- The following force vectors act on an object: i) 50.0 newtons at 45.0° north of east and ii) 25.0 newtons at 30.0° south of east. Which of the following represents the magnitude of the resultant and its angle relative to the easterly direction? 75.0 newtons 7.50° a. b. 61.4 newtons 21.8° c. 23.4 newtons 18.3° d. 12.8 newtons 37.5°F1 F2 Given that F1 825 N, F2 = 630 N, and a = 32° , determine the magnitude of the resultant force and its direction measured counterclockwise from the positive x axis. . The magnitude of the resultant force in N is (round to two decimal places) : N The direction of the resultant force in degrees is (round to two decimal places) : degreesQuestion 1 - Two forces P and Q are applied to the lid of a storage bin as shown. Knowing that P =48 lb. and Q = 60 lb. determine by trigonometry the magnitude and direction of the resultant of the two forces. find the angle between the resultant and horizontal line Do not use the x and y components! 12 Q 85° 55° 25°
- Determine the magnitude of the resultant force and its direction measured CCW from the positive x axis. F₂ = 700 N Y 60° F₁ = 450 N X2. Find the components of a force F whose magnitude is 20 N and its direction is defined by angle 0 = 30° made by the force and the positive x-axis as shown below. F= 20N 30°1.8.4. Forces F, = 12 N, 0, = 0 and F2 = 12 N, 0, = -0 act at the origin. Their resultant force F = 9 N is along the +x-direction. A. Setup with a labeled diagram showing F, F1, F1y, F2, F2y. b. Calculate the magnitude of the angle 0 that F, and F, make with the +x-axis. 1x3 2x9