Chapter 7: Problem 39
Use Heron's Area Formula to find the area of the triangle. $$a=12, \quad b=24, \quad c=18$$
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Chapter 7: Problem 39
Use Heron's Area Formula to find the area of the triangle. $$a=12, \quad b=24, \quad c=18$$
These are the key concepts you need to understand to accurately answer the question.
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Determine whether u and v are orthogonal, parallel, or neither. $$\begin{aligned} &\mathbf{u}=-\frac{9}{10} \mathbf{i}+3 \mathbf{j}\\\ &\mathbf{v}=-5 \mathbf{i}+\frac{3}{2} \mathbf{j} \end{aligned}$$
Determine whether \(\mathbf{u}\) and \(\mathbf{v}\) are orthogonal. $$\begin{aligned} &\mathbf{u}=\mathbf{j}\\\ &\mathbf{v}=\mathbf{i}-\mathbf{j} \end{aligned}$$
Determine whether \(\mathbf{u}\) and \(\mathbf{v}\) are orthogonal. $$\begin{aligned} &\mathbf{u}=\langle 12,4\rangle\\\ &\mathbf{v}=\left\langle\frac{1}{4},-\frac{1}{3}\right\rangle \end{aligned}$$
Find the value of \(k\) such that the vectors \(\mathbf{u}\) and \(\mathbf{v}\) are orthogonal. $$\begin{aligned} &\mathbf{u}=8 \mathbf{i}+4 \mathbf{j}\\\ &\mathbf{v}=2 \mathbf{i}-k \mathbf{j} \end{aligned}$$
A sport utility vehicle with a gross weight of 5400 pounds is parked on a slope of \(10^{\circ} .\) Assume that the only force to overcome is the force of gravity. Find the force required to keep the vehicle from rolling down the hill. Find the force perpendicular to the hill.
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