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engineering    音标拼音: ['ɛndʒən'ɪrɪŋ]
n. 工程,工程学,管理,操纵

工程,工程学,管理,操纵

engineering
工程 ENG

engineering
工程

engineering
n 1: the practical application of science to commerce or
industry [synonym: {technology}, {engineering}]
2: the discipline dealing with the art or science of applying
scientific knowledge to practical problems; "he had trouble
deciding which branch of engineering to study" [synonym:
{engineering}, {engineering science}, {applied science},
{technology}]
3: a room (as on a ship) in which the engine is located [synonym:
{engineering}, {engine room}]

Engineering \En`gi*neer"ing\, n.
Originally, the art of managing engines; in its modern and
extended sense, the art and science by which the properties
of matter are made useful to man, whether in structures,
machines, chemical substances, or living organisms; the
occupation and work of an engineer. In the modern sense, the
application of mathematics or systematic knowledge beyond the
routine skills of practise, for the design of any complex
system which performs useful functions, may be considered as
engineering, including such abstract tasks as designing
software ({software engineering}).
[1913 Webster PJC]

Note: In a comprehensive sense, engineering includes
architecture as a mechanical art, in distinction from
architecture as a fine art. It was formerly divided
into military engineering, which is the art of
designing and constructing offensive and defensive
works, and civil engineering, in a broad sense, as
relating to other kinds of public works, machinery,
etc.

{Civil engineering}, in modern usage, is strictly the art of
planning, laying out, and constructing fixed public works,
such as railroads, highways, canals, aqueducts, water
works, bridges, lighthouses, docks, embankments,
breakwaters, dams, tunnels, etc.

{Mechanical engineering} relates to machinery, such as steam
engines, machine tools, mill work, etc.

{Mining engineering} deals with the excavation and working of
mines, and the extraction of metals from their ores, etc.
Engineering is further divided into steam engineering, gas
engineering, agricultural engineering, topographical
engineering, electrical engineering, etc.
[1913 Webster]


Engineer \En`gi*neer"\, v. t. [imp. & p. p. {Engineered}; p. pr.
& vb. n. {Engineering}.]
1. To lay out or construct, as an engineer; to perform the
work of an engineer on; as, to engineer a road. --J.
Hamilton.
[1913 Webster]

2. To use contrivance and effort for; to guide the course of;
to manage; as, to engineer a bill through Congress.
[Colloq.]
[1913 Webster] Engineer Corps


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  • Identification of Engineering Bedrock in Jakarta by Using Array . . .
    Procedia Earth and Planetary Science 12 ( 2015 ) 77 – 83 Available online at www sciencedirect com 1878-5220 2015 Published by Elsevier B V
  • Enhancing Urban Resilience through Technology and . . . - ScienceDirect
    ScienceDirect Available online at www sciencedirect com Procedia Engineering 212 (2018) 222–229 1877-7058 © 2018 The Authors Published by Elsevier Ltd Peer-review under responsibility of the scientific committee of the 7th International Conference on Building Resilience 10 1016 j proeng 2018 01 029 10 1016 j proeng 2018 01 029 © 2018 The Authors
  • Coastal Hazard Assessment in Northern part of Jakarta
    ScienceDirect Available online at www sciencedirect com Procedia Engineering 212 (2018) 1279–1286 1877-7058 © 2018 The Authors Published by Elsevier Ltd Peer-review under responsibility of the scientific committee of the 7th International Conference on Building Resilience 10 1016 j proeng 2018 01 165 10 1016 j proeng 2018 01 165 © 2018 The Authors
  • An assessment of potential infiltration areas to support groundwater . . .
    Floods, land subsidence, and water scarcity are disasters in Jakarta, where the hazards and risks tend to increase The largest flood event on January 1, 2020 (exceeding the 100-year return period flood) resulted in the Jakarta area and several Ciliwung and Cisadane river basins being flooded [1] So Jakarta's flood control capacity was increased to accommodate Q100 [2]
  • Exploring the potential demand for Jakarta–Bandung high-speed rail
    High-speed rail (HSR) has received attention worldwide, especially for intercity trips, due to its characteristics of speed, capacity, safety, and eco-friendliness (Liu and Zhang, 2018) The Jakarta–Bandung HSR Project is among the government’s national strategic projects, connecting two of the largest high-mobility cities in Indonesia
  • A new empirical equation of shear wave velocity to predict the . . .
    The use of cone penetration test (CPT) has been gaining popularity in the site investigations due to the cost-effective, rapid, continuous and reliable measurements [24] The maximum response at the bedrock depth of 30 m (or CPT value of 120 kg cm 2) can be obtained from CPT operation for use in predicting the N value (dimensionless) up to the bedrock depth of 100 m [[25], [26], [27]] However
  • Projection of coastal floods in 2050 Jakarta - ScienceDirect
    Jakarta, the capital of Indonesia, is one of the largest coastal megacities in the planet, with a resident population exceeding 9 6 million in 2010, plus approximately 2 5 million daily commuters from the adjacent cities, and a total land area of 662 km 2 (Djaja et al , 2004, Firman et al , 2010) The population growth rate reached 1 39% year over the period 2000–2010 (Central Board of
  • Watershed management strategies for flood mitigation: A case study of . . .
    This study was carried out in Ciliwung Watershed The geography, location and boundaries of those watersheds are 06 0 06′ 00” - 06 0 46′12″ S and 106 0 48′ 36” - 107 0 00′ 00″ E which covers the administrative region of Bogor District, Bogor City, Depok City, and Jakarta Province (Sun et al , 2014; Arifasihati and Kaswanto, 2016) The methods in this study are described as
  • Spatio-temporal characteristics of urban heat Island of Jakarta . . .
    Greater Jakarta (Jabodetabek) has emerged as the world's second-largest urban area, with a population of 28 million in 2010 Fig 1 shows that the Jakarta metropolitan area as part of the north coast of Java has the highest population growth among other metropolitan cities Metropolitan cities in this region were rapidly developed due to capital intensive, high-performance economic





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