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- Prob. 4. Find the angle between two vectors i = (1,–1,0), and i = (2,-1,2)arrow_forwardConsider the following scenario. A pilot is steering a plane in the direction N 45° W at an air-speed (speed still in air) of 150 mi/h. A wind is blowing in the direction S 30° E at a speed of 34 mi/h. Set up the coordinate axes so that north is the positive y-direction and west is the negative x-direction. With respect to the still air, write a vector that represents the velocity of the plane and a vector that represents the velocity of the wind.arrow_forwardConsider the following scenario. A pilot is steering a plane in the direction N 45° W at an air-speed (speed still in air) of 190 mi/h. A wind is blowing in the direction S 30° E at a speed of 34 mi/h. Set up the coordinate axes so that north is the positive y-direction and west is the negative x-direction. With respect to the still air, write a vector that represents the velocity of the plane and represents the velocity of the wind. Vplane = Vwind= Give a velocity vector of the plane relative to ground. (Round your values to three decimal places.) V = Vplane + wind= Find vl. (Round your answer to one decimal place.) |v| = Find the true course and the ground speed (in mi/h) of the plane. (Round your answers to one decimal place.) true course N W ground speed Need Help? Read It mi/h vector thatarrow_forward
- Determine the magnitude of the vector difference V' = V₂ - V₁ and the angle 0x which V' makes with the positive x-axis. Complete both (a) graphical and (b) algebraic solutions. Assume a = 3, b = 5, V₁ = 8 units, V₂ = 14 units, and 0 = 51° V₂ Answers: (a) V' = i (b) ex = i -x unitsarrow_forwardcan you make problem more clearer to understand Find vectors u and v such that the parametric equation of the line y= mx + b can be expressed as [yx] = tu + v.arrow_forwardDetermine the magnitude of the vector difference V' = V₂ - V₁ and the angle 0x which V' makes with the positive x-axis. Complete both (a) graphical and (b) algebraic solutions. Assume a = 3, b = 5, V₁ = 8 units, V₂ = 14 units, and 0 = 51° V₂ Answers: (a) V' = (b) 0x = i i -x unitsarrow_forward
- Suppose a car is traveling at 50 km/hr, and that the positive y-axis is north and the positive x-axis is east. Resolve the car's velocity vector (in 2-space) into components if the car is traveling in each of the following directions. The units are km/hr, but you do not need to enter units. 1. East: 2. South: 3. Southeast: 4. Northwest:arrow_forwardThe figure shows an overhead view of a 0.026 kg lemon half and two of the three horizontal forces that act on it as it is ona frictionless table. Force F has a magnitude of 3 N and is at 8, -31. Force F2 has a magnitude of 10 N and is at 02 33". In unit-vector notation, what is the third force if the lemon half (a) is stationary, (b) has the constant velocity V= (137-14) m/s, %3D %3D and (c) has the V = (12fi - 14) m/s?, where t is time?arrow_forwardplease solve 3a and barrow_forward
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