Given the values of W, Um, and Im, we can calculate the inductance (L) and capacitance (C) using the following formulas:
Energy stored in an inductor:W = 0.5 L Im²0.2 mJ = 0.5 L (1A)²0.2 mJ = 0.5 * LL = 0.4 mH
Energy stored in a capacitor:W = 0.5 C Um²0.2 mJ = 0.5 C (100V)²0.2 mJ = 0.5 C 100000.2 mJ = 5000 * CC = 0.04 µF
Therefore, the inductance (L) is 0.4 mH and the capacitance (C) is 0.04 µF.
Given the values of W, Um, and Im, we can calculate the inductance (L) and capacitance (C) using the following formulas:
Energy stored in an inductor:
W = 0.5 L Im²
0.2 mJ = 0.5 L (1A)²
0.2 mJ = 0.5 * L
L = 0.4 mH
Energy stored in a capacitor:
W = 0.5 C Um²
0.2 mJ = 0.5 C (100V)²
0.2 mJ = 0.5 C 10000
0.2 mJ = 5000 * C
C = 0.04 µF
Therefore, the inductance (L) is 0.4 mH and the capacitance (C) is 0.04 µF.