In a radioactive series consisting of four different nuclides starting with the parent substance N₁ and ending with the stable product N, the amounts of each nuclide present at time t are given by the differential equations model dN₁ dr = -6N₁ dN₂ dt = 6N₁ - 4N₂ dN3 dt = 4N₂ - 2N3 dN₂ 2N3 dr Express these in the vector-matrix form N = AN where N=[N₁ N₁ N₁ N₁]. Find the eigenvalues and corresponding eigenvectors of A. Using the spectral form of the solution, determine N.(t) given that at time t = 0, N₁ = C and N₂ = N₁-N₂ = 0.
In a radioactive series consisting of four different nuclides starting with the parent substance N₁ and ending with the stable product N, the amounts of each nuclide present at time t are given by the differential equations model dN₁ dr = -6N₁ dN₂ dt = 6N₁ - 4N₂ dN3 dt = 4N₂ - 2N3 dN₂ 2N3 dr Express these in the vector-matrix form N = AN where N=[N₁ N₁ N₁ N₁]. Find the eigenvalues and corresponding eigenvectors of A. Using the spectral form of the solution, determine N.(t) given that at time t = 0, N₁ = C and N₂ = N₁-N₂ = 0.
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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