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5. A swan on a lake gets airborne by flapping its wings and running on top of the water. a. If the swan must reach
5. A swan on a lake gets airborne by flapping its wings and running on top of the water. a. If the swan must reach a velocity of 6.00 m/s to take off and it accelerates from rest at rate of 0.350m/s', how far will it travel before becoming airborne? b. How long does it take for the swan to become airborne?Equation Sheet One Dimensional Motion: Projectile Motion Trigonometry Ax = X - XO x = Xo + Vxt tand = At = ty - to y = yo +- (Voy + vy) cost = 2 Av 0= 310 At Vy = Voy - gt sind = Ax 1= At y = yo + Voyt -79tz x = Xo + 0t vy = Voy - 2g(y - yo) Vo + v D= g = +9.8m/s2 2 v = Vo + at R - Vosin200 x = Xo + Vat + = at2 v2 = v3 + 2a(x - X0) Hypotenuse (H Opposite (0) Angle Adjacent (A]]Answer all questions. Show how you arrived at your answers. Remember to include units where appropriate. Pay attention to significant figures
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