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A girl operates a radio-controlled model car in a vacant parking lot. The girl's position is at the origin of the xy coordinate axes, and the surface of the parking lot lies in the x-y plane. The motion of the car is defined by the position
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Vector Mechanics for Engineers: Dynamics
- Subject: DYnamicsarrow_forwardAn automobile P is traveling along a circular track of radius R=958.4 m. At position "A" on the track, the automobile has a speed of UA = 10.3 m/s. At this position, the driver of the automobile applies the brakes causing the speed of the automobile to change with distance s traveled along the track according to the following equation: U(S) = VA COS(0.001s) m/s (cos is in radians), where s is given in meters. Determine the magnitude of the acceleration for the driver when the automobile reaches position "B" on the track where "B" is a quarter of the distance around the track from position "A". R B O circular trackarrow_forwardbox answerarrow_forward
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- Question 2 [2/105]: A car P travels along a straight road with a constant speed v = 65 mi/hr. At the instant when the angle 0 = 60°, determine the values of r in ft/sec and è in deg/sec. 100' y 1 1 Ve O -x 15 Varrow_forwardTwo cars A and B are stopped at a traffic light, waiting for the light to change from red to green, see Figure 3. Car B is 6 meters behind car A. When the light changes to green, car A leaves accelerating at a rate of 0.3 m / sec2, while car B departs 2 seconds later and accelerates at a rate of 0.8 m / sec2. Determine the position where they are next to each other, measured from the “o” point.arrow_forwardQuestion 7 A particle which moves with curvilinear motion has coordinates in millimeters which vary with the time t in seconds according to x = 6.1t2 - 6.1t and y = 6.5t2 - t3/ 2.5. Determine the magnitudes of the velocity v and acceleration a and the angles which these vectors make with the x-axis when t = 3.5 s.Answers: When t = 3.5 s,arrow_forward
- classical dynamicsarrow_forwardFor the section shown of a race track, the two race cars travel atconstant speeds. At the instant shown, the front ends of both carscross lineCCat the same time. For the curved section (θ= [θ]°,r1= [r1]m, andr2= [r2]m), both drivers drive at the maximumspeed that their car and tyres allow. Consequently, the maximumlateral (sideways) acceleration of carsAandBare [k1]gand [k2]grespectively whereg=9.81 m/s2. When the second car (notnecessarily carB) crosses lineDD, how far is it behind the firstcar? Assume the race track is straight afterDDand both carsmaintain their speeds. Ignore the horizontal distance between thecars.arrow_forward6 Two cars A and B travelling at constant speeds are in the positions shown in Figure Q.6 at time t = 0. The velocity of A is 40 km/h and that of B is 60 km/h. Determine:(i) The velocity of A relative to B and the magnitude and direction of the velocity vector.(ii) The position vector of A relative to B as a function of time.arrow_forward
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