Computational structural mechanics within strain gradient elasticity :

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  • en
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  • Computational structural mechanics within strain gradient elasticity :
  • Computational structural mechanics within strain gradient elasticity : mathematical formulations and isogeometric analysis for metamaterial design
  • Mathematical formulations and isogeometric analysis for metamaterial design
P60049

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Computational structural mechanics within strain gradient elasticity :

isbn
  • 9789526080536
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name
  • Computational structural mechanics within strain gradient elasticity :

Computational structural mechanics within strain gradient elasticity : mathematical formulations and isogeometric analysis for metamaterial design

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  • Yhteenveto-osa julkaistu myös verkkoaineistona
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name
  • Computational structural mechanics within strain gradient elasticity : mathematical formulations and isogeometric analysis for metamaterial design

Computational structural mechanics within strain gradient elasticity : mathematical formulations and isogeometric analysis for metamaterial design

bookFormat
isPartOf
name
  • Computational structural mechanics within strain gradient elasticity : mathematical formulations and isogeometric analysis for metamaterial design
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Mathematical formulations and isogeometric analysis for metamaterial design

datePublished
  • 2018
description
  • Artikkeliväitöskirjan yhteenveto-osa ja kuusi eripainosta.
  • kuvitettu
identifier
  • propertyID: FI-MELINDA value: 014571421
isbn
  • 9789526080529
isPartOf
name
  • Computational structural mechanics within strain gradient elasticity : mathematical formulations and isogeometric analysis for metamaterial design
  • Mathematical formulations and isogeometric analysis for metamaterial design
numberOfPages
  • 59 sivua, 145 sivua useina numerointijaksoina
P60048
P60050
publication
  • location: Helsinki organizer: Aalto University, School of Engineering, Department of Civil Engineering, Computational Structural Engineering
publisher
  • Aalto University, School of Engineering, Department of Civil Engineering, Computational Structural Engineering

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