I want to solve a complex matrix differential equation y' = Ay. import numpy as np from scipy.integrate import solve_ivp def deriv (y, t, A): return np.dot (A, y) A = np.array ( [ [-0.25 +
Solve an initial value problem for a system of ODEs. This function numerically integrates a system of ordinary differential equations given an initial value: dy / dt = f(t, y) y(t0) = y0. Here t is a 1-D
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You should rewrite the equation in the form $$\frac{dy}{dx} + q(x)y = f(x);$$ then find an integrating factor $\mu(x)$ which, when multiplied through, will give you that the left hand
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In order to determine what the math problem is, you will need to look at the given information and find the key details. Once you have found the key details, you will be able to work out what the problem is and how to solve it.
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Solve ordinary differential equations (ODE) step-by-step. full pad ». x^2. x^ {\msquare}
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