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1. Find the area of convergence of the series. (1-3)
4. Arrange the Maclaurin function f (x). Specify the region of convergence of the series obtained for this function.
4.8. f (x) = 1 / (1 + x)
5. Calculate the approximate value specified with a given degree of accuracy α, using power series expansion appropriately chosen function
5.8. lge, α = 0,0001
6. I Am using the expansion of the integrand in a power series, calculate the definite integral said up to 0,001.
7. Find a power series expansion in powers of x solving the differential equation (record the first three non-zero, a member of this expansion)
7.8. y ´= ex - y2, y (0) = 0
8. The method of successive differentiation to find the first k terms of the expansion in a power series solutions of differential equations at the specified initial conditions.
8.8. y ´= x2 - xy, y (0) = 0,1, k = 3
4. Arrange the Maclaurin function f (x). Specify the region of convergence of the series obtained for this function.
4.8. f (x) = 1 / (1 + x)
5. Calculate the approximate value specified with a given degree of accuracy α, using power series expansion appropriately chosen function
5.8. lge, α = 0,0001
6. I Am using the expansion of the integrand in a power series, calculate the definite integral said up to 0,001.
7. Find a power series expansion in powers of x solving the differential equation (record the first three non-zero, a member of this expansion)
7.8. y ´= ex - y2, y (0) = 0
8. The method of successive differentiation to find the first k terms of the expansion in a power series solutions of differential equations at the specified initial conditions.
8.8. y ´= x2 - xy, y (0) = 0,1, k = 3
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- Added to the site 10.07.2025
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Detailed solution. Designed in PDF format for easy viewing of IDZ solutions on smartphones and PCs. In MS Word (doc format) sent additionally.
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