In Problems 1 -6, express the given system of differential equations in matrix notation.
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- 3. Solve the system by using the matrix exponential -2 3 *-*-*-] x' = x (2) -1 2 4arrow_forward4. Use linear algebra to solve the system of differential equations 3.x1 + 2x2 6x1 + 2x2 with inital values x1(0) = -2, x2(0) = 3arrow_forwardExpress the system of differential equations in matrix notation. x' = (e ¹)x+ (at + bt³)y y' = (tan t)x+ (csct)y Write the system of equations using matrix notation. Select the correct choice below and fill in the answer box to complete your choice. (Type an exact answer.) O A. OB. O C. X' y' = X y [-] 0-40arrow_forward
- Find the most general real-valued solution to the linear system of differential equations 12/2 x₁(t) x₂(t) = ] = C1 -21 x. + C₂arrow_forward5. In previous problems dealing with two species, one of the animals was the predator and the other was the prey. In this problem we recall the Bees & Flowers example and revisit systems of differential equations designed to model two species that are either competitive (that is both species are harmed by interaction) or cooperative (that is both species benefit from interaction). (a) Which system of differential equations describes a situation where the two species compete and which system describes pair of cooperative species? Explain your reasoning, making sure to note what the dif- ferent terms in each DE tell you about the population context. (A) (B) dx = -5x+2xy dt dx = 3x|1 dt 1 ху 10 - 3 :-4y+3xy dt dy dy = 2y(1 y y[l - 10)-5*y 1 dt (b) For system (A), plot all nullclines and use this plot to determine all equilibrium solutions. Verify your equilibrium solutions algebraically. (c) Use your results from 5b to sketch in the long-term behavior of solutions for system (A) with…arrow_forward.arrow_forward
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