A Ilha Do Calipso Mac OS

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CALIPSO
Mission typeEarth observation
OperatorNASA / CNES
COSPAR ID2006-016A
SATCAT no.29108
Websitewww-calipso.larc.nasa.gov
Mission durationElapsed: 15 years, 1 day
Spacecraft properties
Launch mass587 kilograms (1,294 lb)
Dimensions1.49 m × 1.84 m × 2.31 m (4.9 ft × 6.0 ft × 7.6 ft)
Power562 W
Start of mission
Launch dateApril 28, 2006, 10:02:16 UTC
RocketDelta 7420-10C D314
Launch site
Orbital parameters
Reference systemGeocentric
RegimeSun-synchronous
Semi-major axis7,080.7 kilometres (4,399.7 mi)
Eccentricity0.0001111
Perigee altitude701 kilometers (436 mi)
Apogee altitude703 kilometers (437 mi)
Inclination98.2176 degrees
Period98.50 minutes
RAAN285.6451 degrees
Argument of perigee80.3481 degrees
Mean anomaly279.7840 degrees
Mean motion14.57093780
Revolution no.40530

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CALIPSO Slot car mac os. is a joint NASA (USA) and CNES (France) environmental satellite, built in the Cannes Mandelieu Space Center, which was launched atop a Delta II rocket on April 28, 2006. https://herewfile103.weebly.com/mark-us-prototype-mac-os.html. Its name stands for Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations.

Passive and active remote sensing Instruments on board the CALIPSO satellite monitor aerosols and clouds 24 hours a day. CALIPSO is part of the 'A Train', flying in formation with several other satellites (Aqua, Aura and CloudSat).

Mission[edit]

Three instruments:

  • Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) - a lidar that provides high-resolution vertical profiles of aerosols and clouds.
  • Wide Field Camera (WFC) - a modified version of the commercial off-the-shelf Ball AerospaceCT-633star tracker camera. It was selected to match band 1 of the MODIS instrument on the Aqua satellite.
  • Imaging Infrared Radiometer (IIR) - used to detect cirrus cloud emissivity and particle size. The CALIOP laser beam is aligned with the center of the IIR image to optimize joint CALIOP/IIR observations.

In February 2009, CALIPSO switched over to the redundant laser as scheduled. Sunrises pact mac os. The primary laser achieved its mission goal of three years of successful operation, and the redundant laser has been performing beyond expectations.

The CALIPSO mission was granted extended mission status in June 2009.[1]

The Delta II rocket with CALIPSO and CloudSat on Launch Pad SLC-2W, VAFB.

See also[edit]

References[edit]

  1. ^'CALIPSO - INSTRUMENT UPDATE'. NASA LARC. Archived from the original on 2010-03-16.CS1 maint: discouraged parameter (link)

External links[edit]

Wikimedia Commons has media related to CALIPSO (spacecraft).
  • CALIPSO Mission Profile by NASA's Solar System Exploration
Retrieved from 'https://en.wikipedia.org/w/index.php?title=CALIPSO&oldid=984356813'

https://trueyfiles248.weebly.com/cattch-mac-os.html. CALIPSO produces Level 1 and Level 2 science data products that are listed in detail in the CALIPSO Data Products Catalog (PC SCI 503). These products are archived and distributed by the Atmospheric Science Data Center (ASDC).

Image above: An example of data collected by CALIPSO's lidar in June 2006. The data extends from sea level to 30 km.

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CALIPSO Slot car mac os. is a joint NASA (USA) and CNES (France) environmental satellite, built in the Cannes Mandelieu Space Center, which was launched atop a Delta II rocket on April 28, 2006. https://herewfile103.weebly.com/mark-us-prototype-mac-os.html. Its name stands for Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations.

Passive and active remote sensing Instruments on board the CALIPSO satellite monitor aerosols and clouds 24 hours a day. CALIPSO is part of the 'A Train', flying in formation with several other satellites (Aqua, Aura and CloudSat).

Mission[edit]

Three instruments:

  • Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) - a lidar that provides high-resolution vertical profiles of aerosols and clouds.
  • Wide Field Camera (WFC) - a modified version of the commercial off-the-shelf Ball AerospaceCT-633star tracker camera. It was selected to match band 1 of the MODIS instrument on the Aqua satellite.
  • Imaging Infrared Radiometer (IIR) - used to detect cirrus cloud emissivity and particle size. The CALIOP laser beam is aligned with the center of the IIR image to optimize joint CALIOP/IIR observations.

In February 2009, CALIPSO switched over to the redundant laser as scheduled. Sunrises pact mac os. The primary laser achieved its mission goal of three years of successful operation, and the redundant laser has been performing beyond expectations.

The CALIPSO mission was granted extended mission status in June 2009.[1]

The Delta II rocket with CALIPSO and CloudSat on Launch Pad SLC-2W, VAFB.

See also[edit]

References[edit]

  1. ^'CALIPSO - INSTRUMENT UPDATE'. NASA LARC. Archived from the original on 2010-03-16.CS1 maint: discouraged parameter (link)

External links[edit]

Wikimedia Commons has media related to CALIPSO (spacecraft).
  • CALIPSO Mission Profile by NASA's Solar System Exploration
Retrieved from 'https://en.wikipedia.org/w/index.php?title=CALIPSO&oldid=984356813'

https://trueyfiles248.weebly.com/cattch-mac-os.html. CALIPSO produces Level 1 and Level 2 science data products that are listed in detail in the CALIPSO Data Products Catalog (PC SCI 503). These products are archived and distributed by the Atmospheric Science Data Center (ASDC).

Image above: An example of data collected by CALIPSO's lidar in June 2006. The data extends from sea level to 30 km.

For more information on CALIPSO's prospective data products, visit this journal article:

Vaughan, M., Young, S., Winker, D., Powell, K., Omar, A., Liu, Z., Hu, Y., and Hostetler, C. (2004). Fully automated analysis of space-based lidar data: an overview of the CALIPSO retrieval algorithms and data products. Proc. SPIE Cutting hedge mac os. , 5575, pp. 16-30. [View Paper]

Table 1 gives a summary of the CALIPSO Level 2 data products and the spatial scales at which the data products are reported. The expected accuracies given are for the maximum averaging distances for which the products will be retrieved.

Cloud products are reported at a horizontal resolution of 5 km; i.e., at the fundamental averaging resolution of the processing scheme. Cloud boundaries, which can be detected at higher resolution, are reported at that resolution. https://bestofil604.weebly.com/my-potion-shop-mac-os.html. To account for weaker backscatter signals from aerosols, the Level 2 aerosol profile products are reported at a uniform horizontal resolution of 40 km at all altitudes.

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Table 1. CALIPSO Level 2 Aerosol and Cloud Measurements
Data ProductMeasurement Capabilities
and Uncertainties
Data Product Resolution
HorizontalVertical
Aerosols
Height, ThicknessFor layers with β > 2.5 x 10-4 km-1 sr-15 km60 m
Optical depth, τ40% *5 kmN/A
Backscatter, βa(z)20 - 30%40 km
40 km
Z < 20 km 120 m
Z ≥ 20 km: 360 m
Extinction, σa40% *40 km
40 km
Z < 20 km 120 m
Z ≥ 20 km: 360 m
Clouds
HeightFor layers with β > 1 x 10-3 km-1 sr-11/3, 1, 5 km30, 60 m
ThicknessFor layers with τ < 51/3, 1, 5 km60 m
Optical depth, τwithin a factor of 2 for τ < 55 kmN/A
Backscatter, βc(z)20 - 30%5 km60 m
Extinction, σcwithin a factor of 2 for τ < 55 km60 m
Ice/water phaseLayer by layer5 km60 m
Ice cloud emissivity, ε±0.031 kmN/A
Ice particle size±50% for ε > 0.21 kmN/A
Note: * assumes 30% uncertainty in the aerosol extinction-to-backscatter lidar ratio, Sa.




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