Technical problems in sampling
Sampling, staining, and counting of plankton populations
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Sampling, staining, and counting of plankton populations
Design criteria for automatic remotely indicating fluid contamination sensors, monitors, counters, and recorders and for sampling equipment and techniques
Processing of planetary soil samples for detection of extraterrestrial life
Sampling rate system for monitoring clean rooms
Prototypes of automated soil sampling systems for use in Voyager-class capsules of 1970 decade for Mars exploration
Physical characteristics of spectral analysis with sampling by electric discharge to auxiliary electrode
Balloonborne sampling technique for stratospheric collection of cosmic dust
Near the eastern shore of Oceanus Procellarum, 390 miles from Surveyor I, stands Surveyor III, now motionless and silent after a full lunar day's work during which the spacecraft transmitted to Earth 6315 photographs of its surroundings. A surface sampler, operated by command from the Earth and in view of Surveyor's television camera, conducted many tests of the character and structure of the lunar surface material, as well as digging four trenches. While Surveyor I put man's eyes on the Moon, Surveyor III added an arm and a hand with which to work. In this mission, Surveyor displayed remarkable adaptability and stability. Because the engines did not cut off before touchdown, the spacecraft in effect made three separate landings, giving information on surface bearing strength in several places. The spacecraft came to rest at an angle of about 14° from the vertical, well below the rim of a crater, making possible a detailed study of the floor and walls of a small lunar crater. The tilted position of the spacecraft also made it possible to obtain, for the first time from the surface of the Moon, photographs of a solar eclipse, and of the Earth in color. This report presents the preliminary findings from Surveyor III of the team of scientists and engineers of the Surveyor Program.
Operating principles of vacuum probe microbiological sampler
Soil mechanics surface sampler aboard Surveyor III spacecraft
Micrometeoroid sampling with Luster sounding rocket during Leonid meteor shower, detailing contamination control program
Soil mechanics surface sampler experiment for Surveyor
Need for increased sampling rates of particle counters to improve monitoring system performance for clean room sampling and leak testing of HEPA FILTERS
In-Line-Filter-Holder and Counter /ILFHC/ DESIGNED for high and low pressure systems to verify particulate cleanliness levels in modern fluid systems
Sampling bottle with valves and high pressure filter holder for fuel and oxidizer, by weighing bottle before and after sampling amount of fuel passing through filter can be calculated
Surveyor III lunar surface sampler for picking, digging, scraping and transporting material, noting design and operation
Vacuum probe microbiological device for sampling large areas lightly loaded with microorganisms
Analog charge-coupled devices and sampled data filtering have developed into mature disciplines. Each discipline offers the other wide systems advantages where alone it would be impractical. This letter explores these advantages in a number of implementations against the scale of wide low-cost applications.