The given equation is:
\( \cos 2\theta \cdot \cos \frac{\theta}{2} = \cos 30 \cdot \cos \frac{90}{2}. \)
Simplify using trigonometric identities:
\( 2 \cos 2\theta \cdot \cos \frac{\theta}{2} = \cos \frac{50}{2} + \cos \frac{150}{2}. \)
Solve for \(\theta\), leading to:
\( \theta = \frac{2\pi}{5}, \quad \theta = \frac{k}{5}. \)
There are \(m = 5\) positive and \(n = 5\) negative values:
\( mn = 5 \cdot 5 = 25. \)
Final Answer:
\( \boxed{25}. \)
If $ \theta \in [-2\pi,\ 2\pi] $, then the number of solutions of $$ 2\sqrt{2} \cos^2\theta + (2 - \sqrt{6}) \cos\theta - \sqrt{3} = 0 $$ is:
The number of solutions of the equation $ \cos 2\theta \cos \left( \frac{\theta}{2} \right) + \cos \left( \frac{5\theta}{2} \right) = 2 \cos^3 \left( \frac{5\theta}{2} \right) $ in the interval \(\left[ -\frac{\pi}{2}, \frac{\pi}{2} \right ]\) is:
A conducting bar moves on two conducting rails as shown in the figure. A constant magnetic field \( B \) exists into the page. The bar starts to move from the vertex at time \( t = 0 \) with a constant velocity. If the induced EMF is \( E \propto t^n \), then the value of \( n \) is _____. 
The relationship between the sides and angles of a right-angle triangle is described by trigonometry functions, sometimes known as circular functions. These trigonometric functions derive the relationship between the angles and sides of a triangle. In trigonometry, there are three primary functions of sine (sin), cosine (cos), tangent (tan). The other three main functions can be derived from the primary functions as cotangent (cot), secant (sec), and cosecant (cosec).
sin x = a/h
cos x = b/h
tan x = a/b
Tan x can also be represented as sin x/cos x
sec x = 1/cosx = h/b
cosec x = 1/sinx = h/a
cot x = 1/tan x = b/a
