= O with initial velocity vo = = A particle starts from the origin at t = 2 m/s and acceleration ā b√tî +0.2tĵ m/s², where t is the time in seconds and b is a constant. It is observed that at time t = 2 s the particle is at position (x, y) = (3, yo) m. Determine b and yo. (b = 1.99, yo = 4.27 m)
= O with initial velocity vo = = A particle starts from the origin at t = 2 m/s and acceleration ā b√tî +0.2tĵ m/s², where t is the time in seconds and b is a constant. It is observed that at time t = 2 s the particle is at position (x, y) = (3, yo) m. Determine b and yo. (b = 1.99, yo = 4.27 m)
= O with initial velocity vo = = A particle starts from the origin at t = 2 m/s and acceleration ā b√tî +0.2tĵ m/s², where t is the time in seconds and b is a constant. It is observed that at time t = 2 s the particle is at position (x, y) = (3, yo) m. Determine b and yo. (b = 1.99, yo = 4.27 m)
This is a dynamics problem using differential equations
With integration, one of the major concepts of calculus. Differentiation is the derivative or rate of change of a function with respect to the independent variable.
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