Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation
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Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation
Summary
Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation is a doctoral thesis[1].
Key Facts
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation authored A Novel Approach Towards Wideband Sound and Vibration Attenuation — author (P50): Arnab Banerjee[2].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's instance of is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — instance of (P31): doctoral thesis[3].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's publisher is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — publisher (P123): ResearchSpace@Auckland[4].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's copyright license is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — copyright license (P275): Creative Commons Attribution-Share Alike 3.0 New Zealand[5].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's country of origin is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — country of origin (P495): New Zealand[6].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's publication date is recorded as +2018-00-00T00:00:00Z[7].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's main subject is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — main subject (P921): mechanical engineering[8].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's work available at URL is recorded as https://researchspace.auckland.ac.nz/handle/2292/37054[9].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's Handle ID is recorded as 2292/37054[10].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's title is recorded as Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation[11].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's copyright holder is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — copyright holder (P3931): Arnab Banerjee[12].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's thesis submitted to is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — thesis submitted to (P4101): University of Auckland[13].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's on focus list of Wikimedia project is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — on focus list of Wikimedia project (P5008): NZThesisProject[14].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's copyright status is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — copyright status (P6216): copyrighted[15].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's online access status is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — online access status (P6954): open access[16].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's thesis committee member is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — thesis committee member (P9161): Raj Das[17].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's thesis committee member is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — thesis committee member (P9161): George Dodd[18].
- Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's thesis committee member is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — thesis committee member (P9161): Emilio P Calius[19].
Body
Designation and Status
Nonlinear Mechanical Metamaterial: A Novel Approach Towards Wideband Sound and Vibration Attenuation's instance of is recorded as A Novel Approach Towards Wideband Sound and Vibration Attenuation — instance of (P31): doctoral thesis[3].