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around the bow. (a) What is the acceleration of the 1,400-kg boat? \[ \mathrm{m} / \mathrm{s}^{2} \] (b) If it starts from rest, how far will the boat move in \( 20.0 \mathrm{~s} \) ? (c) What will its velocity be at the end of that time?
Two forces are applied to a car in an effort to move it, as shown in the flgure below. (Let \( F_{1}=435 \mathrm{~N} \) and \( F_{2}=363 \mathrm{~N} \). Assume up and to the right are in the positive directions.) (a) What is the resultant vector of these two forces? magnitude \( \sin \) direction - to the right of the forward direction (b) If the car has a mass of \( 3,000 \mathrm{~kg} \), what acceleration does it have? Ignore friction. \( \mathrm{m} / \mathrm{s}^{2} \)

6.(a) Using Newton’s seco