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Nonresonance problem for higher-order systems (Q1856005)

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scientific article; zbMATH DE number 1861361
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English
Nonresonance problem for higher-order systems
scientific article; zbMATH DE number 1861361

    Statements

    Nonresonance problem for higher-order systems (English)
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    28 January 2003
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    The author studies the boundary value problem \[ u^{(m)}(t)=f(t,u(t),\dots,u^{(m-1)}(t))+ \sum_{k=0}^{m-1}t^k\lambda_k, \tag{1} \] \[ u^{(k)}(0)=u^{(k)}(T)=0,\qquad k=0, 1,\dots, m-1, \tag{2} \] where \(f\in C([0,T]\times \mathbb{R}^{nm}, \mathbb{R}^n)\), and \(\lambda_0,\dots,\lambda_{m-1}\in \mathbb{R}^n\) are vector parameters. Under growth conditions imposed on \(f\) (\(f\) can have at most linear growth in each variable), the existence of at least one solution \(u\in C^m([0,T],\mathbb{R}^n)\) to problem (1), (2) for some \(\lambda_0, \dots, \lambda_{m-1}\) is proved. The proof relies on an operator representation of the problem in the Hilbert space \(L_2([0,T],\mathbb{R}^n)\).
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    two-point boundary value problems
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    higher-order systems
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    parameters
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    existence
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