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Fundamentals of Differential Equations and Boundary Value Problems
- Find y as a function of t if and 16y" + 16y' + 4y = 0, y(1) = 2, y'(1) = 3. y =arrow_forward2. Suppose w = f(x, y) is a differentiable function with Vf(4,3) = 7i+ 5j. (a) Find the directional derivative of f at the point (4, 3) in the direction of the vector 3i + 2j. (b) For w = f(x, y), x = 6s tan? (t) and y = s² + 10 sin(t), find |(s,t)=(2,7/6)arrow_forwardConsider any(n) + an-1y' An: n-1y(n-1) + a1y' + aoy = f(x) where an, ...a1, ao E R, where an # 0. ... d . Rewrite the left-hand side of the equation as A(y), where A is a linear (a) Let D = operator. (Hint: Write A in terms of D) dx (b) In order to solve this ODE using Method of Undetermined Coefficients, we must be able to find another linear operator L such that L(f) = of D. For what types of functions f can we find such an operator L? Explain. = 0. Note that L must also be in terms (c) Suppose we can find L such that L(f)= 0. What is Lo A? (d) Construct an example of a constant-coefficient, linear, non-homogeneous ODE. Find L and solve by applying L to both sides of the equation. Note that this method is essentially the rigorous version of Method of Undetermined Coefficients.arrow_forward
- Let f(x,y)= x'y+2x² and find f,(1,2) and f,(1,2) 1. 3x- yarrow_forwardFind the general solution to the hypergeometric ODE z(l - 1)" + ( - 2) v - = 0. - 2x ) y'arrow_forwardSuppose u and v are differentiable functions of x. Use the given values of the functions and their derivatives to find the value of the indicated derivative. 6) u(2) = 9, u '(2) = 4, v(2) = -1, v '(2) = -4. %3D (3v - u) at x =2 dx A) 6 B) -8 C)-12 D) -16 Find dy/dt. 7) A) - Hesintu7)3 e4 cos(t/7) COS sin e3 cos(t/7) D) - sin e4 cos(t/7) Find y". 8) y = (Vx- 7)-3 8) A) D) 6(Vx - 7)5 B)arrow_forward
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