In the circuit shown, assume that the BJT in the circuit has very high \( \beta \) and \( V_{BE} = 0.7 \) V, and the Zener diode has \( V_Z = 4.7 \) V. The current \( I \) through the LED is ________ mA (rounded off to two decimal places).
A 3-bit DAC is implemented using ideal opamp and switches as shown in the figure. Each of the switches gets closed when its corresponding digital input is at logic 1. For a digital input of 110, the resistance \( R_{in} \) seen from the reference source and the current \( I \), are
A chopper amplifier shown in the figure is designed to process a biomedical signal \( v_{in}(t) \) to generate conditioned output \( v_{out}(t) \). The signals \( v_{in}(t) \) and \( v_{os}(t) \) are band limited to 50 Hz and 10 Hz, respectively. For the system to operate as a linear amplifier, choose the correct statement from the following options.
For the ideal opamp based circuit shown in the figure, the ratio \( \frac{V}{I} \) is
In the given circuit below, voltage \(V_C(t)\) is:
For the circuit shown in the figure, the active power supplied by the source is ________ W (rounded off to one decimal place).
A signal $V_M = 5\sin(\pi t/3) V$ is applied to the circuit consisting of a switch S and capacitor $C = 0.1 \mu F$, as shown in the figure. The output $V_x$ of the circuit is fed to an ADC having an input impedance consisting of a $10 M\Omega$ resistance in parallel with a $0.1 \mu F$ capacitor. If S is opened at $t = 0.5 s$, the value of $V_x$ at $t = 1.5 s$ will be ________ V (rounded off to two decimal places).
Note: Assume all components are ideal.
In the circuit shown, the switch is opened at $t = 0$ s. The current $i(t)$ at $t = 2$ ms is ________ mA (rounded off to two decimal places).
In the circuit shown, the galvanometer (G) has an internal resistance of $100 \Omega$. The galvanometer current $I_G$ is ________ $\mu A$ (rounded off to the nearest integer).
The circuit given in the figure is driven by a voltage source $V_s = 25\sqrt{2}\angle 30^\circ V$. The system is operating at a frequency of 50 Hz. The transformers are assumed to be ideal. The average power dissipated, in W, in the $50 k\Omega$ resistance is ________ (rounded off to two decimal places).