In the circuit given below, the current is:

Step 1: In the given circuit, we observe that there is a diode in series with the resistor and the voltage source. The voltage across the diode is \( -5 \, {V} \) and the voltage across the resistor is \( -2 \, {V} \).
Step 2: For current to flow in the circuit, the diode needs to be forward biased.
However, in this case, the total voltage across the circuit is \( -7 \, {V} \), which is not enough to forward bias the diode.
Step 3: Since the diode is reverse biased, no current will flow through the circuit.
Kepler's second law (law of areas) of planetary motion leads to law of conservation of
In the travelling plane wave equation given by \( y = A \sin \omega \left( \frac{x}{v} - t \right) \), where \( \omega \) is the angular velocity and \( v \) is the linear velocity.
The dimension of \( \omega t \) is:
Kepler's second law (law of areas) of planetary motion leads to law of conservation of