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提问人:网友wugufly 发布时间:2022-01-07
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The Significance of the Division of LabourThe significance of the division of labour was f

The Significance of the Division of Labour

The significance of the division of labour was first found by Adam Smith in the 1770s. He explained part of its advantages. He gives as an example the process (19) which pins were made in England.

"One man draws (20) the wire; another strengthens it; a third cuts it; a fourth points it; a fifth grinds it at the top to prepare it to receive the head. To make the head (21) two or three operations. To put it on is a (22) operation, to polish the pins is another. And the important business of making pins is, (23) this manner, (24) into about eighteen operations, which in some factories are all performed by different people, (25) in others the same man will sometimes perform. two or three of them. "

Ten men, Smith said, in this way, turned (26) twelve pounds of pins a day or about 4,800 pins per worker. But if all of them had worked separately and (27) without division of labour, none of them could have made twenty pins in a day and perhaps not even one.

There can be no doubt that division of labour is a/an (28) way of (29) work. Fewer people can make more pins. Adam Smith saw this but he also took it for granted that division of labour is in itself responsible for economic (30) and development and that it (31) for the difference between (32) economies and those that (33) still but division of labour adds nothing new; it only enables people to produce more of what they already have.

(19)

A.in

B.on

C.by

D.through

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更多“The Significance of the Division of LabourThe significance of the division of labour was f”相关的问题
第1题
9. ______ one of you breaks the window will have to pay for it.

A、Whoever

B、whatever

C、whichever

D、wherever

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第2题
The critical load is the ( ) load that a column can support when it is one the verge of buckling. This loading represents a case of ( ).

A、maximum axial, neutral equilibrium

B、minimum axial, neutral equilibrium

C、maximum transverse, stable equilibrium

D、maximum axial, stable equilibrium

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第3题
An ideal column is ( ) , made of ( ) material, and the load is applied through the ( ) of the cross section.

A、initially perfectly straight, homogeneous, centroid

B、perfectly straight, nonhomogeneous, centroid

C、initially straight, homogeneous, any point

D、straight, nonhomogeneous, centroid

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第4题
As the slenderness ration ( ), eccentrically loaded columns tend to fail at or near the ( ) load.

A、increase, Euler buckling

B、decrease, Euler buckling

C、increase, yielding

D、decrease, fracture

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第5题
Due to imperfections in manufacturing or application of the load, a column will ( ) suddenly buckle, instead it begins to ( ).

A、never, bend

B、never, stretch

C、never, shorten

D、ever, bend

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第6题
In order to determine the slope and displacement of a beam by integration, it is important to use the proper signs for M, V or w. Positive deflection v is ( ) and as a result, the positive slope angle will be measured ( ) from the is positive to the ( ).

A、upward, counterclockwise, right

B、upward, counterclockwise, left

C、downward, clockwise, right

D、upward, clockwise, left

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第7题
The load applied to a column is related to its ( ) in a ( ) manner, and so the principle of superposition ( ) apply.

A、deflection, nonlinear, does not

B、elongation, linear, does not

C、contraction, nonlinear, does

D、deflection, linear, does

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第8题
[图] in the general Euler euqation represents the ...

in the general Euler euqation represents the distance between the zero ( ) points, This distance is callled the column's effective length. For the fixed and free-ended column, the effective length is( ). For the column fixed at both ends, the effective length is( ). For the pin- and fixed-ended column, the effective length( ).

A、moment, 2L, 0.5L, 0.7L

B、force, 2L, 0.5L, 0.7L

C、deformation, 2L, 0.5L, 0.7L

D、moment, L, 2L, 0.5L

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第9题
[图] is valid for ( ).A、isotropic materialB、anisot...

is valid for ( ).

A、isotropic material

B、anisotropic material

C、isotropic material and anisotropic material

D、orthotropic material

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