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    Mathematical Modeling of Swimming Soft Microrobots

    Mathematical Modeling of Swimming Soft Microrobots by S.M. Khalil, Islam; Klingner, Anke; Misra, Sarthak;

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      • Publisher's listprice EUR 140.00
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        54 684 Ft (52 080 Ft + 5% VAT)
      • Discount 20% (cc. 10 937 Ft off)
      • Discounted price 43 747 Ft (41 664 Ft + 5% VAT)
      • Discount is valid until: 30 June 2026

    54 684 Ft

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    Product details:

    • Publisher Elsevier Science
    • Date of Publication 25 June 2021

    • ISBN 9780128169452
    • Binding Paperback
    • No. of pages240 pages
    • Size 228x152 mm
    • Weight 390 g
    • Language English
    • 115

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    Long description:

    Mathematical Modelling of Swimming Soft Microrobots presents a theoretical framework for modelling of soft microrobotic systems based on resistive-force theory. Microorganisms are highly efficient at swimming regardless of the rheological and physical properties of the background fluids. This efficiency has inspired researchers and Engineers to develop microrobots that resemble the morphology and swimming strategies of microorganisms. The ultimate goal of this book is threefold: first, to relate resistive-force theory to externally and internally actuated microrobotic systems; second, to enable the readers to develop numerical models of a wide range of microrobotic systems; third, to enable the reader to optimize the design of the microrobot to enhance its swimming efficiency.

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    Table of Contents:

    1. Introduction

    Part I Fundamentals of the Theory of Elasticity2. Review of Classical Mechanics3. Two-Dimensional Deformations

    Part II Fundamentals of Electromagnetics4. Electrostatic and Magnetostatic Fields5. Magnetic forces and materials

    Part III Fundamentals of Fluid Mechanics6. Viscous fluids7. Flow with small Reynolds numbers

    Part IV Soft Microrobotic Systems8. Resistive-Force Theory9. Modelling of Internally Actuated Soft Microrobots10. Modelling of Externally Actuated Rigid and Soft Microrobots

    Part V AppendixesA: Review of Vector calculusB: Units Appendix C: Material Constants

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