Find llvll. llvll = ____ (Simplify your answer. Type an exact answer, using radicals as needed.) c) Write the vector v in the form ai+bj, given its magnitude llvll and the angle α it makes with the positive x-axis. llvll = 7, α = 45° v = ___ (Simplify your answer. Type an exact answer using radicals as needed. Write the answer in the form ai
Find llvll. llvll = ____ (Simplify your answer. Type an exact answer, using radicals as needed.) c) Write the vector v in the form ai+bj, given its magnitude llvll and the angle α it makes with the positive x-axis. llvll = 7, α = 45° v = ___ (Simplify your answer. Type an exact answer using radicals as needed. Write the answer in the form ai
Find llvll. llvll = ____ (Simplify your answer. Type an exact answer, using radicals as needed.) c) Write the vector v in the form ai+bj, given its magnitude llvll and the angle α it makes with the positive x-axis. llvll = 7, α = 45° v = ___ (Simplify your answer. Type an exact answer using radicals as needed. Write the answer in the form ai
4) Complete the following statement and two equations.
a) If v = <a, b>, then llvll = ___, the direction angle determined from the reference angle θ′= tan−1 (____).
b) Let v = <-6, 4>. Find llvll. llvll = ____ (Simplify your answer. Type an exact answer, using radicals as needed.)
c) Write the vector v in the form ai+bj, given its magnitude llvll and the angle α it makes with the positive x-axis. llvll = 7, α = 45°
v = ___ (Simplify your answer. Type an exact answer using radicals as needed. Write the answer in the form ai + bj.)
Quantities that have magnitude and direction but not position. Some examples of vectors are velocity, displacement, acceleration, and force. They are sometimes called Euclidean or spatial vectors.
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