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- Z. (F3= 800 N .5 F2 = 500 N 370 F1 = 1000 N F, is on the x-y plane. The angle between F3 and x axis is 135° , between F3 and y axis is 60°. Express force F, in vector form.Find the clockwise angle of the Equivalent Force with respect to the negative x-axis (absolute value in degrees). Find the magnitude of the Equivalent Force (absolute value in kN). Find the magnitude of the Equivalent Moment (absolute value in kN-m).Determine the magnitude and direction of the resultant of the following forces: 50 N at 50 degrees,60 N at 120 degrees,40 N at 220 degrees,30 N at 330 degrees. All angles are measure from the positive x-axis. Use the component method. Select one: a. 75 N: 42º b. 50 N: 87º c. 54 N: 87º d. 101 N: 89º
- $ Magnitude R= Direction 8 = Three forces act on point : A = 60 N at 135°, B = and C in this diagram to the correct magnitudes and directions. When this has been done correctly the dotted vector will become solid. 50 N at -45° and, C= 75 N at 60° 2. Pick up vectors A, B and C by their tails, and move them into a tip to tail arrangement. When this has been correctly done the resultant R will appear. measured Estimate the magnitude and direction of the resultant Based on this diagram, estimate the magnitude R and direction of the resultant. from the force R using the tip-to-tail method. 1. Move the tips of forces A, B, Submit part Submit partThe following figure shows five forces act at point A. Calculate the magnitude of the resultant force, and accordingly choose the nearest answer. 90 N 75 N 60 N Ve 30° 30° 45 N 30° 30° 30 NFind the resultant and direction of the following forces using the graphical method: F1 = 20 N, 30 degrees NE, F2 = 15 N, 50 degrees NW, F3 = 10 N, South
- F3= 800 N F2 = 500 N 370 F1 = 1000 N F, is on the x-y plane. 1 The angle between F3 and x axis is 135° , between F3 and y axis is 60°. What is the magnitude of resultant force?answer the following questions 1. Find the force F if the resultant forces pass through a 50 Ib point A 75 Ib 2. Find the equivalent force 3. Specify where resultant 's line of action intersect member AB measured from point A 4. Specify where resultant 's line of action intersect member BC measured from point B 30° 3 ft 3 ft 4 ft 30° 50 Ib 75 Ib 1 Add fileForce vector A = 45i kN Force vector B = xi + yj kN Force vector B has a magnitude of 60 kN and both of its components, along x, and y axis, are positive, the resultant of force vectors A and B is force vector C having a magnitude of 80 kN. 1. What is the value of angle between vector A and C? Express your answer in unit of degrees. 2. What is the value of angle between vector B and C? Express your answer in unit of degrees. 3. What is the scalar triple product of vectors A, B, and C?
- The Force F produces a moment of 3456 N⋅m clockwise at point A, “M” N⋅m counter – clockwise at point, and “M” N⋅m clockwise at the origin O. The Force F acts at point C. Determine the following: a.) The Force F. b.) The coordinate y.Given: three forces act on a particle P. Force A has a magnitude of 55lbs and acts 30 degrees CCW from the x-axis. Force B has a magnitude of 70 lbs and acts along a ray from point P with a slope at 1/-4. Force C has a magnitude of 55 lbs lbs and acts straight left. Add the three vectors to find the magnitude of the resultant force R and the angle it makes with the positive a-axis 0.Find the magnitude and direction of the resultant of a 60-pound force acting at an angle of 40 degrees clockwise from the positive y-axis, at 20-pound force that acts at an angle of 90 degrees clockwise from the positive y-axis, and a 40-pound force that acts at an angle of 300 degrees clockwise from the positive x-axis.