We are asked to evaluate the following integral: \[ I = \int_0^\infty \frac{\sin(4x)}{\pi x} \, dx \] Step 1: Recognize the standard integral form.
This integral is a standard form known as the sine integral, often found in the context of Fourier transforms. Specifically, the general form is: \[ \int_0^\infty \frac{\sin(ax)}{\pi x} \, dx = \frac{1}{2} \quad {for any constant } a>0. \] Step 2: Apply the standard result.
In our case, \( a = 4 \). So applying the result, we get: \[ \int_0^\infty \frac{\sin(4x)}{\pi x} \, dx = \frac{1}{2}. \] Thus, the value of the integral is \( 0.50 \).
Step 3: Conclusion.
The value of the integral is approximately 0.50.
A particle dispersoid has 1510 spherical particles of uniform density. An air purifier is proposed to be used to remove these particles. The diameter-specific number of particles in the dispersoid, along with the number removal efficiency of the proposed purifier is shown in the following table:
The overall mass removal efficiency of the proposed purifier is ________% (rounded off to one decimal place).