math117: add trig
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@ -200,3 +200,53 @@ In order to PFD:
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∴ \frac{x}{(x+1)(x^2+x+1)} &= -\frac{1}{x+1} + \frac{x + 1}{x^2 + x + 1}
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\end{align*}
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$$
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## Trigonometry
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1 radian represents the angle when the length of the arc of a circle is equal to the radius. Where $s$ is the arc length:
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$$\theta=\frac{s}{r}$$
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The following table indicates the special angles that should be memorised:
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| Angle (rad) | $\frac{\pi}{6}$ | $\frac{\pi}{4}$ | $\frac{\pi}{3}$ | $\frac{\pi}{2}$ | 1 |
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| --- | --- | --- | --- | --- | --- |
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| cos | 1 | $\frac{\sqrt{3}}{2}$ | $\frac{\sqrt{2}}{2}$ | $\frac{1}{2}$ | 0 |
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| sin | 0 | $\frac{1}{2}$ | $\frac{\sqrt{2}}{2}$ | $\frac{\sqrt{3}}{2}$ | 1 |
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### Identities
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The Pythagorean identity is the one behind right angle triangles:
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$$\cos^2\theta+\sin^2\theta = 1$$
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Cosine and sine can be converted between by an angle shift:
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$$
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\cos\biggr(\theta-\frac{\pi}{2}\biggr) = \sin\theta \\
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\sin\biggr(\theta-\frac{\pi}{2}\biggr) = \cos\theta
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$$
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The **angle sum identities** allow expanding out angles:
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$$
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\cos(a+b)=\cos a\cos b - \sin a\sin b \\
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\sin(a+b)=\sin a\cos b + \cos a\sin b
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$$
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Subtracting angles is equal to the conjugates of the angle sum identities.
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The **double angle identities** simplify the angle sum identity for a specific case.
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$$
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\sin2\theta = 2\sin\theta\cos\theta \\
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$$
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The **half angle formulas** are just random shit.
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$$
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1+\tan^2\theta = \sec^2\theta \\
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\cos^2\theta = \frac{1}{2}(1+\cos2\theta) \\
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\sin^2\theta = \frac{1}{2}(1-\cos2\theta)
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$$
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