Using (ode45, ode23, or ode15s), solve the below dynamic electrical system differential equation. 1. The charge...
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Using (ode45, ode23, or ode15s), solve the below dynamic electrical system differential equation. 1. The charge Q(r) on the capacitor in the electrical circuit shown satisfies the differential equation Q dQ + 10 = V(0). where L=0.5 henrys is the coil's inductance R= 6.0 ohms is the resistor's resistance C=0.02 farads is the capacitor's capacitance and V() is the applied voltage. V(0)C eeeee (i) Is the circuit oscillatory? (ii) If V(t) = 24 sin(101) volts and Q(0) = 0 = Q(0), find Q(1). (iii) Sketch the transient solution, the steady state solution, and the full solution Q(1). Using (ode45, ode23, or ode15s), solve the below dynamic electrical system differential equation. 1. The charge Q(r) on the capacitor in the electrical circuit shown satisfies the differential equation Q dQ + 10 = V(0). where L=0.5 henrys is the coil's inductance R= 6.0 ohms is the resistor's resistance C=0.02 farads is the capacitor's capacitance and V() is the applied voltage. V(0)C eeeee (i) Is the circuit oscillatory? (ii) If V(t) = 24 sin(101) volts and Q(0) = 0 = Q(0), find Q(1). (iii) Sketch the transient solution, the steady state solution, and the full solution Q(1).
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Related Book For
A First Course in Differential Equations with Modeling Applications
ISBN: 978-1111827052
10th edition
Authors: Dennis G. Zill
Posted Date:
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