Question #1: Generate the ideal brake force distribution graph for the vehicle whose data is provided below. Consider th
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Question #1: Generate the ideal brake force distribution graph for the vehicle whose data is provided below. Consider th
Question #1: Generate the ideal brake force distribution graph for the vehicle whose data is provided below. Consider the deceleration rate in the range of 0 – 19. Mass of the vehicle: m = 1000 kg Distance between front axle and CoG: b = 1.2 m Distance between rear axla and CoG: c = 1.4 m Height of the CoG: h = 0.7 = Question #2: A vehicle with the data given below is cruising on a level road at 90 km/h velocity. Determine the required engine moment to accelerate the vehicle with an acceleration of 0.5m/s2. Mass of the vehicle: m = 1000 kg Engine speed: ne = 3000 rpm Coefficient of aerodynamic resistance: Cp = 0.34 Efficiency of the transmission system: Ntr = 0.86 Wheel radius: rw = 0.33m Vehicle frontal area: A = 2 m2 Density of the air: p = 1.25 kg/m3 Coefficient of rolling resistance: fr = 0.02 Tire slip rate: s = 5% =