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capacities    音标拼音: [kəp'æsətiz] [kəp'æsɪtiz]
能力,才能,资格,容量,性能(复数)

能力,才能,资格,容量,性能(复数)

Capacity \Ca*pac"i*ty\ (k[.a]*p[a^]s"[i^]*t[y^]), n.; pl.
{Capacities} (-t[i^]z). [L. capacitus, fr. capax, capacis;
fr. F. capacit['e]. See {Capacious}.]
1. The power of receiving or containing; extent of room or
space; passive power; -- used in reference to physical
things.
[1913 Webster]

Had our great palace the capacity
To camp this host, we all would sup together.
--Shak.
[1913 Webster]

The capacity of the exhausted cylinder. --Boyle.
[1913 Webster]

2. The power of receiving and holding ideas, knowledge, etc.;
the comprehensiveness of the mind; the receptive faculty;
capability of understanding or feeling.
[1913 Webster]

Capacity is now properly limited to these [the mere
passive operations of the mind]; its primary
signification, which is literally room for, as well
as its employment, favors this; although it can not
be denied that there are examples of its usage in an
active sense. --Sir W.
Hamilton.
[1913 Webster]

3. Ability; power pertaining to, or resulting from, the
possession of strength, wealth, or talent; possibility of
being or of doing.
[1913 Webster]

The capacity of blessing the people. --Alex.
Hamilton.
[1913 Webster]

A cause with such capacities endued. --Blackmore.
[1913 Webster]

4. Outward condition or circumstances; occupation;
profession; character; position; as, to work in the
capacity of a mason or a carpenter.
[1913 Webster]

5. (Law) Legal or moral qualification, as of age, residence,
character, etc., necessary for certain purposes, as for
holding office, for marrying, for making contracts, wills,
etc.; legal power or right; competency.
[1913 Webster]

{Capacity for heat}, the power of absorbing heat. Substances
differ in the amount of heat requisite to raise them a
given number of thermometric degrees, and this difference
is the measure of, or depends upon, what is called their
capacity for heat. See {Specific heat}, under {Heat}.

Syn: Ability; faculty; talent; capability; skill; efficiency;
cleverness. See {Ability}.
[1913 Webster]


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  • SRTM | NASA Earthdata
    SRTM collected topographic data over nearly 80% of Earth's land surfaces, creating the first-ever near-global dataset of land elevations The SRTM payload consisted of two radar antennas, one located in the shuttle's payload bay and the other installed on the end of a 200-foot mast that extended from the payload bay
  • NASA Shuttle Radar Topography Mission (SRTM) Version 3. 0 . . . - Earthdata
    SRTM obtained elevation data on a near-global scale using radar interferometry Version 3 0 SRTM Global 1 arc second product is void-filled using elevation data from Advanced Spaceborne Thermal Emission and Reflection Radiometer ( ASTER ) Global Digital Elevation Model 2 ( GDEM2 ), USGS Global Multi-resolution Terrain Elevation Data ( GMTED ) 2010, and USGS National Elevation Dataset ( NED )
  • NASA Shuttle Radar Topography Mission Global 1 arc second V003
    SRTM was a primary component of the payload on the Space Shuttle Endeavour during its STS-99 mission Endeavour launched February 11, 2000 and flew for 11 days SRTM collected data in swaths, which extend from ~30 degrees off-nadir to ~58 degrees off-nadir from an altitude of 233 kilometers (km)
  • Digital Elevation Terrain Model (DEM) | NASA Earthdata
    This is a Shuttle Radar Topography Mission (SRTM) hillshade image of the Mount Everest region SRTM obtained elevation data across nearly 80% of Earth creating the first ever near-global DEM dataset The data was captured in February 2000 using radar interferometry equipment operating from inside Space Shuttle Endeavour's payload bay
  • NASADEM: Creating a New NASA Digital Elevation Model and Associated . . .
    We will incorporate GLAS data to remove artifacts at the optimal step in the SRTM processing chain We will merge the improved SRTM strip DEMs, refined ASTER and GDEM V2 DEMs, and GLAS data using the SRTM mosaic software to create a seamless, void-filled NASADEM
  • ALOS PALSAR RTC Project | NASA Earthdata
    Modified SRTM or NED DEM used for RTC processing in GeoTIFF format Incidence Angle GeoTIFF, indicating the angle in radians for each pixel Layover Shadow GeoTIFF, indicating where processing was impacted by layover or shadow Browse image in GeoJPEG format 1000 x 1000 pixels KMZ file with 30-m overlay Metadata in ISO 19115 format (xml file)
  • Global Digital Elevation Models now available: ASTER, GDEM, and SRTM . . .
    The ASTER products were created from approximately 1 5 million scenes (ASTER stereo pair observations) dating back to 2000 and covers land surfaces between 83°N and 83°S The SRTM product is based on Space Shuttle Endeavour's STS-99 mission in February 2000 using two radar antennas Shown above is the ASTER GDEM Color Shaded Relief layer
  • NASA Shuttle Radar Topography Mission United States 1 arc . . . - Earthdata
    The SRTM swaths extended from ~30 degrees off-nadir to ~58 degrees off-nadir from an altitude of 233 kilometers (km), creating swaths ~225 km wide, and consisted of all land between 60 degrees N and 56 degrees S latitude to account for 80% of Earth’s total landmass
  • Earthdata Search | NASA Earthdata
    This image from Earthdata Search shows a geolocation map of Africa (left) and a NASA Shuttle Radar Topography Mission (SRTM) image of the Zambia-Democratic Republic of the Congo area captured in February 2000 (right) Earthdata Search offers users the ability to select locations on a map to find corresponding data
  • NASA Shuttle Radar Topography Mission Swath Image Data V003
    SRTM was the primary (and virtually only) payload on the STS-99 mission of the Space Shuttle Endeavour, which launched February 11, 2000 and flew for 11 days The SRTM swaths extended from ~30 degrees off-nadir to ~58 degrees off-nadir from an altitude of 233 kilometers (km), creating swaths ~225 km wide, and consisted of all land between 60° N and 56° S latitude to account for 80% of Earth





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