Exam 8: Polar Coordinates; Vectors

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Use the figure below. Determine whether the given statement is true or false. Use the figure below. Determine whether the given statement is true or false.   -G + H = F -G + H = F

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Find the distance from P1 to P2. - P1=(2,2,1) and P2=(1,3,2)\mathrm { P } _ { 1 } = ( 2,2 , - 1 ) \text { and } \mathrm { P } _ { 2 } = ( - 1 , - 3,2 )

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Choose the one alternative that best completes the statement or answers the question. The polar coordinates of a point are given. Find the rectangular coordinates of the point. - (5,3π4)\left( - 5 , \frac { 3 \pi } { 4 } \right)

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Use the given vectors to find the indicated expression. - v=3i+5j4k,w=2i+4j2k,u=4i4j3k\mathbf { v } = - 3 \mathbf { i } + 5 \mathbf { j } - 4 \mathbf { k } , \quad \mathbf { w } = 2 \mathbf { i } + 4 \mathbf { j } - 2 \mathbf { k } , \quad \mathbf { u } = - 4 \mathbf { i } - 4 \mathbf { j } - 3 \mathbf { k } Find v(v×w)\mathbf { v } \cdot ( \mathbf { v } \times \mathbf { w } ) .

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Plot the complex number in the complex plane. - 6+7i6 + \sqrt { 7 } i  Plot the complex number in the complex plane. - 6 + \sqrt { 7 } i

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Solve the problem. Leave your answer in polar form. - z=5 3+i3 w=2 4+i4 Find zw.

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Solve the problem. -If u=7i4j\mathbf { u } = 7 \mathbf { i } - 4 \mathbf { j } and v=2i+9j\mathbf { v } = - 2 \mathbf { i } + 9 \mathbf { j } , find u+v\mathbf { u } + \mathbf { v } .

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State whether the vectors are parallel, orthogonal, or neither. - v=4i+2j,w=2i4j\mathbf { v } = 4 \mathbf { i } + 2 \mathbf { j } , \quad \mathbf { w } = 2 \mathbf { i } - 4 \mathbf { j }

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Solve the problem. Leave your answer in polar form. - z=10 4+i4 w=5 1+i1 Find zw\frac { z } { w } .

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Write the expression in the standard form a + bi. - [2(cos3π4+isin3π4)]4\left[ \sqrt { 2 } \left( \cos \frac { 3 \pi } { 4 } + i \sin \frac { 3 \pi } { 4 } \right) \right] ^ { 4 }

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Find the indicated cross product. - v=4i5j+k,w=2i2jk\mathbf { v } = 4 \mathbf { i } - 5 \mathbf { j } + \mathbf { k } , \quad \mathbf { w } = 2 \mathbf { i } - 2 \mathbf { j } - \mathbf { k } Find w×v\mathbf { w } \times \mathbf { v } .

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Solve the problem. Leave your answer in polar form. - z= +i w= +i Find zw\frac { z } { w } .

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Find the unit vector having the same direction as v. - v=3i+4j\mathbf { v } = - 3 \mathbf { i } + 4 \mathbf { j }

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Test the equation for symmetry with respect to the given axis, line, or pole. - r2=sin(2θ)\mathrm { r } ^ { 2 } = \sin ( 2 \theta ) ; the pole

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Match the point in polar coordinates with either A, B, C, or D on the graph. - (3,π3)\left(-3, \frac{\pi}{3}\right)  Match the point in polar coordinates with either A, B, C, or D on the graph. - \left(-3, \frac{\pi}{3}\right)

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Use the figure below. Determine whether the given statement is true or false. Use the figure below. Determine whether the given statement is true or false.   -H + I + J = B -H + I + J = B

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Use the vectors in the figure below to graph the following vector.  Use the vectors in the figure below to graph the following vector.   - \mathbf { z } - \mathbf { v }     - zv\mathbf { z } - \mathbf { v }  Use the vectors in the figure below to graph the following vector.   - \mathbf { z } - \mathbf { v }

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Write the expression in the standard form a + bi. - (1i)10( 1 - \mathrm { i } ) ^ { 10 }

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Solve the problem. -If v=ij\mathbf { v } = - \mathbf { i } - \mathbf { j } , find v\| v \| .

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Find v . - v=5i3j+4k\mathbf { v } = - 5 i - 3 j + 4 k

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