5,452 research outputs found

    A survey to determine the status of health teaching in the elementary schools of the Stockton Unified School District

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    The purpose of this study and report is to determine the present status of health teaching in the elementary schools of the Stockton Unified School District. The results of this study should serve to stimulate better teaching methods and to indicate further study toward the improvement of health teaching curriculum. Health instruction has been a part of school curricula for many years. This study will locate the subject area in which health teaching in the Stockton elementary schools. It is not the intent, however, that this report go into the detail of curriculum revision and improvement but that it adhere to the establishment of the present status of health teaching in the elementary schools of the Stockton Unified School District

    Development of ceramic form and materials

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    Retrieval and Validation of Cirrus Cloud Properties with the Far-Infrared Sensor for Cirrus (FIRSC) During CRYSTAL-FACE

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    This grant supported the principal investigator's analysis of data obtained during CRYSTAL-FACE by two submillimeter-wave radiometers: the Far-Infrared Sensor for Cirrus (FIRSC) and the Conical Scanning Submillimeter-wave Imaging Radiometer (CoSSIR). The PI led the overall FIRSC investigation, though Co-I Michael Vanek led the instrument component at NASA Langley. The overall CoSSIR investigation was led by James Wang at NASA Goddard, but the cirrus retrieval and validation was performed at the University of Colorado. The goal of this research was to demonstrate the submillimeter-wave cirrus cloud remote sensing technique, provide retrievals of ice water path (IWP) and median mass particle diameter (D(sub me)), and perform validation of the cirrus retrievals using other CRYSTAL-FACE datasets

    THE MEDICAL ASPECTS OF NEGLIGENCE CASES. By Charles Kramer. New York: Practicing Law Institute, 1953.

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    Microwave remote sensing algorithms for cirrus clouds and precipitation

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    Sponsored by NASA NAG-5-1592S

    Polarized radiative transfer modeling: an application to microwave remote sensing of precipitation

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    April 1990.Includes bibliographical references.Sponsored by NASA NAG8-643

    Color image simplification by morphological hierarchical segmentation and color clustering

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    The Effect of Cumulus Cloud Field Anisotropy on Domain-Averaged Solar Fluxes and Atmospheric Heating Rates

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    Cumulus clouds can become tilted or elongated in the presence of wind shear. Nevertheless, most studies of the interaction of cumulus clouds and radiation have assumed these clouds to be isotropic. This paper describes an investigation of the effect of fair-weather cumulus cloud field anisotropy on domain-averaged solar fluxes and atmospheric heating rate profiles. A stochastic field generation algorithm was used to produce twenty three-dimensional liquid water content fields based on the statistical properties of cloud scenes from a large eddy simulation. Progressively greater degrees of x-z plane tilting and horizontal stretching were imposed on each of these scenes, so that an ensemble of scenes was produced for each level of distortion. The resulting scenes were used as input to a three-dimensional Monte Carlo radiative transfer model. Domain-average transmission, reflection, and absorption of broadband solar radiation were computed for each scene along with the average heating rate profile. Both tilt and horizontal stretching were found to significantly affect calculated fluxes, with the amount and sign of flux differences depending strongly on sun position relative to cloud distortion geometry. The mechanisms by which anisotropy interacts with solar fluxes were investigated by comparisons to independent pixel approximation and tilted independent pixel approximation computations for the same scenes. Cumulus anisotropy was found to most strongly impact solar radiative transfer by changing the effective cloud fraction, i.e., the cloud fraction when the field is projected on a surface perpendicular to the direction of the incident solar beam
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