Step 1: The output voltage waveform of a single-phase full-bridge inverter is a square wave.
Step 2: The fundamental RMS output voltage (\( V_{1,\text{rms}} \)) is given by: \[ V_{1,\text{rms}} = \frac{4V_{\text{dc}}}{\sqrt{2} \pi} \] where:
- \( V_{\text{dc}} = 48V \) (DC input voltage)
- \( \pi \) appears due to the Fourier series expansion of a square wave.
Step 3: Substituting the given values: \[ V_{1,\text{rms}} = \frac{4 \times 48}{\sqrt{2} \pi} \text{ V} \]
Step 4: Thus, the correct answer is \( \frac{4 \times 48}{\sqrt{2} \pi} \) V.
The dimension of $ \sqrt{\frac{\mu_0}{\epsilon_0}} $ is equal to that of: (Where $ \mu_0 $ is the vacuum permeability and $ \epsilon_0 $ is the vacuum permittivity)
The unit of $ \sqrt{\frac{2I}{\epsilon_0 c}} $ is: (Where $ I $ is the intensity of an electromagnetic wave, and $ c $ is the speed of light)
The bulking of the sand is increased in volume from 20% to 40% of various sand and moisture content ranges from ……… to ……….. percent.