RESEARCH WITH TIROS RADIATION MEASUREMENTS
Tiros radiometry and its utilization for day and night synoptic meteorology
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Tiros radiometry and its utilization for day and night synoptic meteorology
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Carbon dioxide fundamental absorption spectrum at 1500 deg Kelvin
Infrared spectrometer system to obtain spectral absorption characteristics of combustion products under various thermodynamic and optical conditions
Bidirectional reflectance data obtained from balloon-borne medium resolution infrared radiometer, and IRIS interferometer calibration
Balloon flight data analysis, stratocumulus cloud reflectance and reflectance scatter diagrams, and infrared interferometer spectrometer for space craft use
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Isodose patterns, microdosimetric distributions, and energy event frequency distributions in relation to radiobiological hazards in space
Far UV filter observations of main sequence and giant stars analyzed for attainable magnitude accuracy, comparing observations with model atmospheres
Proton irradiation measurements with balloon-borne nuclear emulsions at supersonic transport altitude during solar maximum at quiet sun
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High altitude balloon flight interferometer data, high resolution spectra of Co2, and earth atmosphere carbon dioxide distribution review
Satellite radiometry, discussing vertical soundings, instruments, onboard calibration of interferometer, high spatial resolution, etc
Scintillation detectors are described for the ATS 5 satellite. Operation, electronics, and experiment sequencing and telemetry are considered. Schematics and calibration tables are included.
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A multiple wavelength solar radiometer designed for the purpose of measuring atmospheric optical depth at discrete wavelengths through the visible region is described. Experimental techniques, including sample observations, are presented for obtaining atmospheric optical depth from radiometer measurements. These techniques apply for conditions where the optical depth is either temporally variant or invariant during the course of a day. The influence of the aerosol size distribution on optical depth is investigated. Theoretical calculations of the wavelength dependency of the aerosol optical depth contribution are presented for several representative aerosol size distributions. Methods are also presented for estimating the aerosol size distribution and aerosol mass loading from multiwavelength optical depth measurements.
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