Astronomical photography from the stratosphere
Astronomical photography from stratosphere - Stratoscope project
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Astronomical photography from stratosphere - Stratoscope project
Gemini IX airglow horizon photography experiment
Orbital photography of earth surface applied to geologic study
Dim light photography and visual observations of space phenomena from Gemini spacecraft
Sterilizable ruggedized vidicon for lunar and planetary photography
Objectives, methods, and results of Gemini 4 synoptic terrain photography experiment
Baker-Nunn photography of Intelsat 2-F2 apogee-motor firing
Multispectral photography in gathering data on static physical and man-made elements of urban environment
Photographs taken by astronauts as part of Synoptic Terrain Photography Experiment including geological features such as Sonora Desert, Agua Blanca and Gulf of Aden
Multispectral photography for AES missions, describing lunar color studies
Photography from aircraft of cloud-like objects in vicinity of libration points L4 and L5 of earth- moon system
Advancing the state of the art of schlieren photography for validation of wind tunnel and CFD efforts; may lead to better low boom commercial aircraft.
The use of environmental DNA (eDNA) sampling has been proposed as a complementary method to monitor fish species in marine environments, offering a non-invasive and potentially more efficient approach to marine species observations. eDNA monitoring could be especially useful in and around sites targeted for marine energy generation as these regions need regular monitoring that would be impractical with traditional techniques. Before we can fully rely upon eDNA, we must first verify its accuracy against other proven methods, such as the use of underwater photography. In this study, I deployed a 360-degree camera in the tidal channel of Sequim Bay once a month during several hours overlapping slack tide. I investigated how having multiple people identify and count fish on underwater images could affect the overall results. Using chi square tests in R, I compared my fish identifications and counts to those made by another intern on the same images recorded in August. I found significant differences in the number of species identified and the total individual counts between the two different datasets. I also tested the statistical differences in both Shannon diversity and Pielou evenness indices between the August, September, and November camera deployments using a Hutcheson t-test. Only one significant difference was found in the Shannon index comparisons, and none were found between the Pielou evenness comparisons. These findings show that if multiple identifiers are used to process underwater images, quality control checks must be made to reduce the potential for error. This also points toward the possibility to leverage more advanced image analysis processes, such as automated image analysis software. The findings from this study also show that the dynamics of marine fish communities can vary over a few months; however, further analysis is needed to determine the extent of the seasonal changes in Sequim Bay.
Planetary photography - multicolor photometry of the moon, mars, venus, and other planets
Baker-Nunn photography of Syncom II fourth stage ignition, duration, and burnout
News conference on initial scientific interpretation of Mariner IV photography
Aluminum particle combustion in flames, using high speed photography