375,29 €
416,99 €
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Differential Transformation Method for Mechanical Engineering Problems
Differential Transformation Method for Mechanical Engineering Problems
375,29
416,99 €
  • We will send in 10–14 business days.
Differential Transformation Method for Mechanical Engineering Problems focuses on applying DTM to a range of mechanical engineering applications. The authors modify traditional DTM to produce two additional methods, multi-step differential transformation method (Ms-DTM) and the hybrid differential transformation method and finite difference method (Hybrid DTM-FDM). It is then demonstrated how these can be a suitable series solution for engineering and physical problems, such as the motion of a…
416.99
  • Publisher:
  • ISBN-10: 0128051906
  • ISBN-13: 9780128051900
  • Format: 15.2 x 22.9 x 2.2 cm, minkšti viršeliai
  • Language: English
  • SAVE -10% with code: EXTRA

Differential Transformation Method for Mechanical Engineering Problems (e-book) (used book) | bookbook.eu

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Differential Transformation Method for Mechanical Engineering Problems focuses on applying DTM to a range of mechanical engineering applications. The authors modify traditional DTM to produce two additional methods, multi-step differential transformation method (Ms-DTM) and the hybrid differential transformation method and finite difference method (Hybrid DTM-FDM).

It is then demonstrated how these can be a suitable series solution for engineering and physical problems, such as the motion of a spherical particle, nanofluid flow and heat transfer, and micropolar fluid flow and heat transfer.

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  • Author: Mohammad Hatami
  • Publisher:
  • ISBN-10: 0128051906
  • ISBN-13: 9780128051900
  • Format: 15.2 x 22.9 x 2.2 cm, minkšti viršeliai
  • Language: English English

Differential Transformation Method for Mechanical Engineering Problems focuses on applying DTM to a range of mechanical engineering applications. The authors modify traditional DTM to produce two additional methods, multi-step differential transformation method (Ms-DTM) and the hybrid differential transformation method and finite difference method (Hybrid DTM-FDM).

It is then demonstrated how these can be a suitable series solution for engineering and physical problems, such as the motion of a spherical particle, nanofluid flow and heat transfer, and micropolar fluid flow and heat transfer.

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