Ionospheric and Tropospheric Scintillations of a Radio Star at Zero to Five Degrees Elevation

Ionospheric and Tropospheric Scintillations of a Radio Star at Zero to Five Degrees Elevation PDF Author: John P. Castelli
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ISBN:
Category : Radio sources (Astronomy)
Languages : en
Pages : 30

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Ionospheric and Tropospheric Scintillations of a Radio Star at Zero to Five Degrees Elevation

Ionospheric and Tropospheric Scintillations of a Radio Star at Zero to Five Degrees Elevation PDF Author: John P. Castelli
Publisher:
ISBN:
Category : Radio sources (Astronomy)
Languages : en
Pages : 30

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Ionospheric and Tropospheric Scintillations of a Radio Star at Zero to Five Degrees Elevation

Ionospheric and Tropospheric Scintillations of a Radio Star at Zero to Five Degrees Elevation PDF Author: John P. Castelli
Publisher:
ISBN:
Category : Radio sources (Astronomy)
Languages : en
Pages : 0

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Using Cygnus A as the source, a multi-frequency study of both scintillation rate and index was made in 1961 and 1962. Using an 84 ft parabola, simultaneous observations were made at 63, 112, 225, 1200, and 2980 Mc/s with angles of elevation from 0 to 5 degrees. Tropospheric scintillation rates at 1200 and 2980 Mc/s increase as the angle of elevation increased; the mean scintillation rates rose from 1x00/min at 1 degree of elevation to 1x75/min at 3 degrees of elevation. Scintillation indices decreased with increasing angle of elevation at 1200 and 2980 Mc/s; fitting a curve of the slant range to the irregularities to the data points yielded a best fit in the 1-2 km height region. Ionospheric scintillations at 63 and 112 Mc/s showed a wavelength dependence less than lambda; a comparison of 112 and 225 Mc/s data showed a closer approximation to a first power dependence. The hypothesis advanced for poor correlation of theoretical wavelength dependence and data is that the ray path traverses the auroral region and strong scattering results. Zenith angle variation shows a dependence between z (sec i) to the 1/2 power, the near zone case and (sec i) to the 1/2 power, the far zone regime. Differences in indices for Cygnus rise and Cygnus set on the longer wavelengths are attributed to the difference in the magnetic dip angle of the set and the rise positions; higher indices were observed for Cygnus set in the direction of the magnetic declination of 16 degrees W. (Author).

Ozonesonde Observations Over North America

Ozonesonde Observations Over North America PDF Author: Wayne S. Hering
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Category : Atmospheric ozone
Languages : en
Pages : 280

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Spectral Reflectance and Albedo Measurements of the Earth from High Altitudes

Spectral Reflectance and Albedo Measurements of the Earth from High Altitudes PDF Author: H. E. Band
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Category : Albedo
Languages : en
Pages : 32

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Mass Spectrometric Measurements of Positive Ions at Altitudes from 64 to 112 Kilometers

Mass Spectrometric Measurements of Positive Ions at Altitudes from 64 to 112 Kilometers PDF Author: R. S. Narcisi
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Category : Cations
Languages : en
Pages : 26

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Photometry of the Solar Chromosphere

Photometry of the Solar Chromosphere PDF Author: Richard B. Dunn
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Category : Astronomical photometry
Languages : en
Pages : 160

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Evaporation of the Solar Corona Into Interplanetary Space

Evaporation of the Solar Corona Into Interplanetary Space PDF Author: Hari K. Sen
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Category : Exosphere
Languages : en
Pages : 32

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Project ANNA Optical Observations

Project ANNA Optical Observations PDF Author: Paul H. Dishong
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Category : Geodetic astronomy
Languages : en
Pages : 122

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Empirical Relationships Between Gust Intensity in Clear-air Turbulence and Certain Meteorological Quantities

Empirical Relationships Between Gust Intensity in Clear-air Turbulence and Certain Meteorological Quantities PDF Author: G. S. McLean
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Category : Clear air turbulence
Languages : en
Pages : 18

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Infrared Spectral Emission and Its Application to the Detection of Organic Matter on Mars

Infrared Spectral Emission and Its Application to the Detection of Organic Matter on Mars PDF Author: Graham R. Hunt
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Category : Infrared spectroscopy
Languages : en
Pages : 20

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