Question

e-2 is a 0. Given the fact that y= e 1. Consider the differential equation y + 4/ +14y +20y solution of this differential
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Aebe Then auxliamy ea becomen in Jivtn hente concdude we can m -2 that 2m t2m(mt2j tlo(mt2 )= . mt mt2) Cm+am to)o MamHo m mTn e,- Jon of ark WYonskian of > and 4, in The M LOS3 2sintn+343y Con -21 -7 Jin 3n 43C3« Lo3n-3in3x Carafing enpandiny thi

Add a comment
Know the answer?
Add Answer to:
e-2 is a 0. Given the fact that y= e' 1. Consider the differential equation y"...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • Consider the following differential equation. (1 + 6x2)y" – 4xy' – 24y = 0 (a) If...

    Consider the following differential equation. (1 + 6x2)y" – 4xy' – 24y = 0 (a) If you were to look for a power series solution about xo = 0, i.e., of the form onth n=0 then the recurrence formula for the coefficients would be given by ck+2 = g(k) Ck, k > 2. Enter the function g(k) into the answer box below. (b) Find the solution to the above differential equation with initial conditions y(0) = 0 and y'(0) =...

  • Consider the following differential equation. (1 + 5x2) y′′ − 8xy′ − 6y  =  0 (a)...

    Consider the following differential equation. (1 + 5x2) y′′ − 8xy′ − 6y  =  0 (a) If you were to look for a power series solution about x0  =  0, i.e., of the form ∞ Σ n=0 cn xn then the recurrence formula for the coefficients would be given by ck+2  =  g(k) ck , k  ≥  2. Enter the function g(k) into the answer box below. (b) Find the solution to the above differential equation with initial conditions y(0)  ...

  • cnrn Consider the following differential equation. (1 + 3x?) y" – 2xy' – 12y = 0...

    cnrn Consider the following differential equation. (1 + 3x?) y" – 2xy' – 12y = 0 (a) If you were to look for a power series solution about xo = 0, i.e., of the form Σ n=0 00 then the recurrence formula for the coefficients would be given by Ck+2 g(k) Ck, k > 2. Enter the function g(k) into the answer box below. (b) Find the solution to the above differential equation with initial conditions y(0) = 0 and...

  • Consider the following differential equation. (1 + 5x2)y" – 8xY' – 6y = 0 (a) If...

    Consider the following differential equation. (1 + 5x2)y" – 8xY' – 6y = 0 (a) If you were to look for a power series solution about xo = 0, i.e., of the form Σ τη x2 n=0 then the recurrence formula for the coefficients would be given by C +2 g(k) Cx. k > 2. Enter the function g(k) into the answer box below. (b) Find the solution to the above differential equation with initial conditions (0) = 0 and...

  • 3. Consider the differential equation ty" - (t+1)y + y = t?e?', t>0. (a) Find a...

    3. Consider the differential equation ty" - (t+1)y + y = t?e?', t>0. (a) Find a value ofr for which y = et is a solution to the corresponding homogeneous differential equation. (b) Use Reduction of Order to find a second, linearly independent, solution to the correspond- ing homogeneous differential equation. (c) Use Variation of Parameters to find a particular solution to the nonhomogeneous differ- ential equation and then give the general solution to the differential equation.

  • please answer b. and c. Problem 1. Consider the differential equation given by (a) On the...

    please answer b. and c. Problem 1. Consider the differential equation given by (a) On the axes provided below, sketch a slope field for the given differential equation at the nine points indicated. locales de mor t e wold qolution to the given differential equation with the initial condition (b) Let y = f(x) be the particular solution to the given differential equation with the initial condition f(0) = 3. Use Euler's method starting at x = 0, with a...

  • e differential equation y 0 + y = 1 2−x with the initial conditions y(0) =...

    e differential equation y 0 + y = 1 2−x with the initial conditions y(0) = 2. We wish to approximate y(1) using another method. please help me, thanks so much Consider the same differential equation y' +y= with the initial conditions y(0) = 2. We wish to approximate y(1) using another method. (a) Use the method of series to by hand to find the recursion relation that defines y(t) = 2*, QmI" as a solution to this differential equation....

  • Consider the differential equation xex (1 + e*)y' = y - y e* + 1 +...

    Consider the differential equation xex (1 + e*)y' = y - y e* + 1 + e* What type of equation is it? Find the solution of equation and state information about existence and uniqueness

  • Find the particular solution to the given differential equation that satisfies the given conditions. d2y 9...

    Find the particular solution to the given differential equation that satisfies the given conditions. d2y 9 dy 14y= 12 - ex; 4) dx dx2 and y - 29 when x = 0 42 dy dx 2 2x A) y B) y 7 6 7 6 사우-등나을이건을. 22x+ 27x-6_1 ex 2 2x-2,7x,6_1 5 7 6 C) y D) y 7 6 Find the particular solution to the given differential equation that satisfies the given conditions. d2y 9 dy 14y= 12 -...

  • 6- Solve the following nonhomogeneous differential equation + 4y = cos(t), y(0) = 2 7) Find...

    6- Solve the following nonhomogeneous differential equation + 4y = cos(t), y(0) = 2 7) Find a general solution to the Caucy-Euler differential equation 224" + 6xy' - 14y = 0.

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT