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Source: The Open Library

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1Dependence of the normalized radar cross section of water waves on Bragg wavelength-wind speed sensitivity

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“Dependence of the normalized radar cross section of water waves on Bragg wavelength-wind speed sensitivity” Metadata:

  • Title: ➤  Dependence of the normalized radar cross section of water waves on Bragg wavelength-wind speed sensitivity
  • Author:
  • Language: English
  • Publisher: ➤  National Aeronautics and Space Administration - National Technical Information Service, distributor
  • Publish Date:
  • Publish Location: ➤  Springfield, Va - [Washington, DC

“Dependence of the normalized radar cross section of water waves on Bragg wavelength-wind speed sensitivity” Subjects and Themes:

Edition Identifiers:

Access and General Info:

  • First Year Published: 1996
  • Is Full Text Available: No
  • Is The Book Public: No
  • Access Status: No_ebook

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    2The physics of hard spheres experiment on MSL-1

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    “The physics of hard spheres experiment on MSL-1” Metadata:

    • Title: ➤  The physics of hard spheres experiment on MSL-1
    • Author:
    • Language: English
    • Publisher: ➤  National Technical Information Service, distributor - National Aeronautics and Space Administration, Lewis Research Center
    • Publish Date:
    • Publish Location: ➤  Springfield, VA - [Cleveland, Ohio]

    “The physics of hard spheres experiment on MSL-1” Subjects and Themes:

    Edition Identifiers:

    Access and General Info:

    • First Year Published: 1998
    • Is Full Text Available: No
    • Is The Book Public: No
    • Access Status: No_ebook

    Online Access

    Downloads Are Not Available:

    The book is not public therefore the download links will not allow the download of the entire book, however, borrowing the book online is available.

    Online Borrowing:

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      Find The physics of hard spheres experiment on MSL-1 at online marketplaces:



      Wiki

      Source: Wikipedia

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      Bragg's law

      science, Bragg's law — also known as Wulff–Bragg's condition or Laue–Bragg interference — is a special case of Laue diffraction that gives the angles for coherent

      Acousto-optic modulator

      phonons and photons. A typical AOM operates under Bragg condition, where the incident light comes at Bragg angle θ B ≈ sin ⁡ θ B = λ 2 Λ {\displaystyle \theta

      Rietveld refinement

      monochromatic neutrons where the reflection-position is reported in terms of the Bragg angle, 2θ. This terminology will be used here although the technique is equally

      Scherrer equation

      {\displaystyle \Delta \left(2\theta \right)} ; θ {\displaystyle \theta } is the Bragg angle. The Scherrer equation is limited to nano-scale crystallites, or more-strictly

      Acousto-optics

      at definite incidence angles close to the Bragg angle, θ B {\displaystyle \theta _{B}} . The first order maximum or the Bragg maximum is formed due to

      Transmission electron microscopy

      strongest diffracting angle (known as the Bragg Angle), any distortion of the crystal plane that locally tilts the plane to the Bragg angle will produce particularly

      Wide-angle X-ray scattering

      wide-angle X-ray scattering (WAXS) or wide-angle X-ray diffraction (WAXD) is the analysis of Bragg peaks scattered to wide angles, which (by Bragg's law)

      Lawrence Bragg

      Lawrence Bragg (31 March 1890 – 1 July 1971) was a British physicist who shared the 1915 Nobel Prize in Physics with his father, William Henry Bragg, "for

      Wavelength-dispersive X-ray spectroscopy

      meaning n = 1 with regard to Bragg's law, and therefore n is effectively canceled in the equation. The Bragg's angle and intensity of the second-order

      Distributed Bragg reflector

      Bragg's law – Physical law regarding scattering angles of radiation through a medium Bragg diffraction – Physical law regarding scattering angles of