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more than one and a half hour of hard labour to deliver only one kWh – which a small engine could deliver in less than one hour while burning less than one litre of petroleum fuel. This implies that a gang of 20 to 40 men will require a financial compensation for their work at least equal to the required expended food calories (which is at least 4 to 20 times higher). In most situations, the worker will also want compensation for the lost time, which is easily 96 times greater per day. Even if we assume the real wage cost for the human labour to be at US $ 1.00/day, an energy cost is generated of about $ 4.00/kWh. Despite this being a low wage for hard labour, even in some of the countries with the lowest wages, it represents an energy cost that is significantly more expensive than even exotic power sources such as solar photovoltaic panels (and thus even more expensive when compared to wind energy harvesters or luminescent solar concentrators).
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turbines and steam engines and turbines. Powered transportation equipment such as locomotives, automobiles and trucks and airplanes, is a classification of machinery which includes sub classes by engine type, such as internal combustion, combustion turbine and steam. Inside factories, warehouses, lumber yards and other manufacturing and distribution operations,
494:
When we compare the costs of using an internal combustion engine to a worker to perform work, we notice that an engine can perform more work at a comparative cost. 1 liter of fossil fuel burnt with an IC engine equals about 50 hands of workers operating for 24 hours or 275 arms and legs for 24 hours.
498:
In addition, the combined work capability of a human is also much lower than that of a machine. An average human worker can provide work good for around 0,9 hp (2.3 MJ per hour) while a machine (depending on the type and size) can provide for far greater amounts of work. For example, it takes
349:
In manufacturing, mechanization replaced hand methods of making goods. Prime movers are devices that convert thermal, potential or kinetic energy into mechanical work. Prime movers include internal combustion engines, combustion turbines (jet engines), water wheels and turbines, windmills and wind
278:
In the mid to late 19th century, hydraulic and pneumatic devices were able to power various mechanical actions, such as positioning tools or work pieces. Pile drivers and steam hammers are examples for heavy work. In food processing, pneumatic or hydraulic devices could start and stop filling of
271:. By the late nineteenth century steam power was applied to threshing and steam tractors appeared. Internal combustion began being used for tractors in the early twentieth century. Threshing and harvesting was originally done with attachments for tractors, but in the 1930s independently powered
69:
Every machine is constructed for the purpose of performing certain mechanical operations, each of which supposes the existence of two other things besides the machine in question, namely, a moving power, and an object subject to the operation, which may be termed the work to be done. Machines, in
279:
cans or bottles on a conveyor. Power steering for automobiles uses hydraulic mechanisms, as does practically all earth moving equipment and other construction equipment and many attachments to tractors. Pneumatic (usually compressed air) power is widely used to operate industrial valves.
287:
By the early 20th century machines developed the ability to perform more complex operations that had previously been done by skilled craftsmen. An example is the glass bottle making machine developed 1905. It replaced highly paid glass blowers and child labor helpers and led to the
333:) runs along a tangent common to both base circles. (In this situation, there is no force, and no contact needed, along the opposite common tangent not shown.) The involutes here are traced out in converse fashion: points (of contact) move along the
486:
When we compare the efficiency of a labourer, we see that he has an efficiency of about 1%–5.5% (depending on whether he uses arms, or a combination of arms and legs). Internal combustion engines mostly have an efficiency of about 20%, although
491:, such as those used to power ships, may have efficiencies of nearly 50%. Industrial electric motors have efficiencies up to the low 90% range, before correcting for the conversion efficiency of fuel to electricity of about 35%.
437:. Early production machinery, such as the glass bottle blowing machine (ca. 1890s), required a lot of operator involvement. By the 1920s fully automatic machines, which required much less operator attention, were being used.
78:
more complex than hand tools and would not include simple devices such as an ungeared horse or donkey mill. Devices that cause speed changes or changes to or from reciprocating to rotary motion, using means such as
620:
Jerome (1934) gives the industry classification of machine tools as being "other than hand power". Beginning with the 1900 U.S. census, power use was part of the definition of a FACTORY , distinguishing it from a
197:, another mathematical derived design, came into use. Involute gears are better for meshing gears of different sizes than epicycloidal. Gear cutting machines came into use in the 18th century.
426:. Unit drive allowed factories to be better arranged and allowed different machines to run at different speeds. Unit drive also allowed much higher speeds, which was especially important for
408:
Powered machinery today usually means either by electric motor or internal combustion engine. Before the first decade of the 20th century powered usually meant by steam engine, water or wind.
175:
including gear and screw cutting machines, and were also involved in the mathematical development of gear designs. Clocks were some of the earliest mass-produced items, beginning around 1830.
65:) is the process of changing from working largely or exclusively by hand or with animals to doing that work with machinery. In an early engineering text, a machine is defined as follows:
322:
107:, when most small machinery was no longer hand powered, mechanization was synonymous with motorized machines. Extension of mechanization of the production process is termed as
232:
in the late 1700s until the mid-1800s. After the early decades of the 19th century, iron increasingly replaced wood in gearing and shafts in textile machinery. In the 1840s
478:) that are transported and go to battle in unarmoured vehicles such as trucks. Thus, a towed artillery unit is considered motorized while a self-propelled one is mechanized.
1984:
299:, and electric motors and controls were used to perform more complicated mechanical operations. This resulted in mechanized processes to manufacture almost all goods.
513:
For simplification, one can study mechanization as a series of steps. Many students refer to this series as indicating basic-to-advanced forms of mechanical society.
185:
Improved gear designs decreased wear and increased efficiency. Mathematical gear designs were developed in the mid 17th century. French mathematician and engineer
312:
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around 1700. The seed drill allowed more uniform spacing of seed and planting depth than hand methods, increasing yields and saving valuable seed. In 1817,
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In every fields, mechanization includes the use of hand tools. In modern usage, such as in engineering or economics, mechanization implies
131:
ca. 1386. A clock is a mechanical instrument rather than a true machine. Although this clock had iron gears, many machines of the early
115:
system in which feedback is provided by the sensors. In an automated machine the work of different mechanisms is performed automatically.
886:"The American Society of Mechanical Engineers Designates the Owens "AR" Bottle Machine as an International Historic Engineering Landmark"
411:
Many of the early machines and machine tools were hand powered, but most changed over to water or steam power by the early 19th century.
357:
In mining and excavation, power shovels replaced picks and shovels. Rock and ore crushing had been done for centuries by water-powered
1979:
982:
Home documentary by Yann Arthus
Bertrand too stating that 1 liter of fuel yields 100 arms for 24 hours; probably from same calculation
920:
Exergy, Power and Work in the U. S. Economy 1900–1998, Insead's Center For the
Management of Environmental Resources, 2002/52/EPS/CMER
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systems and equipment are used for a variety of materials including coal, ores, grains, sand, gravel and wood products.
159:, to pull cloth and pound flax and later cotton rags into pulp for making paper. Trip hammers are shown crushing ore in
1471:
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date to the Roman period and were used to grind grain and lift irrigation water. Water-powered bellows were in use on
1944:
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Water-powered bellows for blast furnaces, used in China in ancient times, were in use in Europe by the 15th century.
607:
Principles of
Mechanism: Designed For The Use Of Students In The Universities And For Engineering Students Generally
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of paper was patented in 1801, displacing the centuries-old hand method of making individual sheets of paper.
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1989:
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54:, ca. 1555) an early mining textbook that contains numerous drawings and descriptions of mining equipment.
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Bartelt, Terry. Industrial
Automated Systems: Instrumentation and Motion Control. Cengage Learning, 2010.
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422:. Electrification allowed individual machines to each be powered by a separate motor in what is called
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fact, are interposed between the power and the work, for the purpose of adapting the one to the other.
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329:, the left driving the right: Blue arrows show the contact forces between them. The force line (or
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were some of the most complex early mechanical devices. Clock makers were important developers of
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introduced metal gears and axles to water wheels in the mid to last half of the 18th century. The
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A History of
Industrial Power in the United States, 1730–1930, Vol. 3: The Transmission of Power
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A History of
Industrial Power in the United States, 1730–1930, Vol. 3: The Transmission of Power
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2004:
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machine tools were developed. Machinery was developed to make nails ca. 1810. The
Fourdrinier
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466:) that would otherwise have marched or ridden trucks into combat. In military terminology,
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greatly increased in the late eighteenth and early nineteenth centuries with horse drawn
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contains drawings related to bellows for blast furnaces including a fabrication drawing.
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1 liter of fuel yielding 100 arms for 24 hours, when efficiency is 40% which is never
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Process of changing from working by hand or with animals to work with machinery
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Demand for metal parts used in textile machinery led to the invention of many
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948:"Electrical engines with combined power converter / motor at 86% efficiency"
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Timeline of clothing and textiles technology
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Productivity improving technologies (historical) § Mechanization
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The Genius of China: 3000 years of science, discovery and invention
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Francis Egerton, 3rd Duke of Bridgewater
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One of the first mechanical devices used in agriculture was the
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Mechanization in
Industry, National Bureau of Economic Research
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Mechanization in
Industry, National Bureau of Economic Research
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force-vector "string" as if it was being unwound from the left
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The term is also used in the military to refer to the use of
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equipment replaced manual carrying or hand trucks and carts.
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in China in 31 AD. By the 13th century, water wheels powered
1823:
History of the British canal system
36:
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refers to ground units that can fight from vehicles, while
80:
741:); and by Lindsay Publications, Inc., Bradley, Illinois, (
1833:
List of United Kingdom-related topics
633:, Mechanical Engineering Community, retrieved 2018-04-17.
535:
powered tools, activated by work-piece (e.g.: coin phone)
418:, mill and factory power was usually transmitted using a
1757:
History of the cooperative Movement
733:. Reprinted by McGraw-Hill, New York and London, 1926 (
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994:"Energy input–output analysis in Turkish agriculture"
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automated machine action altered through measurement
541:
selected signaling control, e.g. hydro power control
361:, but trip hammers have been replaced by modern ore
209:
was first used, to pump water from a mine, in 1712.
766:
Science and
Technology in the Industrial Revolution
529:
powered tools, multi-functioned, program controlled
217:started mainly with textile machinery, such as the
1116:
828:
763:
752:
687:
724:, New Haven, Connecticut: Yale University Press,
2102:
1848:Timeline of materials technology
1123:. Cambridge, Massachusetts, London: MIT Press.
835:. Cambridge, Massachusetts, London: MIT Press.
44:used for raising ore. This woodblock is from
1633:Stockton and Darlington Railway
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550:segregation/rejection according to measurement
1911:
1153:
1048:Combined work capability of human vs machines
918:Ayres, R. U.; Ayres, L. W.; Warr, B. (2002).
526:powered tools, single functioned, fixed cycle
481:
189:designed and constructed the first mill with
690:An Encyclopedia of the History of Technology
661:<Based on the works of Joseph Needham>
651:. New York: Simon and Schuster. p. 55.
523:powered hand-tools, e.g. electric-controlled
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1918:
1904:
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1115:Hunter, Louis C.; Bryant, Lynwood (1991).
827:Hunter, Louis C.; Bryant, Lynwood (1991).
508:
103:, usually are considered machines. After
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1467:John Kay (spinning frame)
1462:John Kay (flying shuttle)
1397:Thomas and George Cranege
320:
200:
122:
35:
802:The World's Work: A History of Our Time
794:
770:. University of Toronto Press. p.
643:Temple, Robert; Joseph Needham (1986).
559:correcting performance during operation
257:the first bicycle was invented and used
14:
2103:
1853:Timeline of steam power
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864:
708:
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556:correcting performance after operation
341:base circle, and wound onto the right
1899:
1568:Abbeydale Industrial Hamlet
1141:
991:
797:"The Passing Of The Man With The Hoe"
553:selection of appropriate action cycle
504:Energy and energy efficiency theories
1878:
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282:
135:used wooden parts until around 1800.
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32:Productivity-improving technologies
24:
1099:
795:Rumeley, Edward A. (August 1910).
721:English and American Tool Builders
394:and an assortment of power tools.
25:
2142:
2065:History of electrical engineering
1382:Isambard Kingdom Brunel
440:
1877:
1866:
1865:
1618:Portsmouth Block Mills
1343:
532:powered tools, remote-controlled
378:Construction equipment includes
139:
2111:Secondary sector of the economy
1843:Timeline of invention
1818:History of technology
1681:Newcomen steam engine
1457:Joseph Marie Jacquard
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433:A step beyond mechanization is
193:ca. 1650. In the 18th century
1938:History of technology cultures
1603:Derwent Valley Mills
1472:Francis Cabot Lowell
820:
636:
631:Mechanization & Automation
624:
614:
597:
317:list of agricultural machinery
13:
1:
2085:History of nuclear technology
2060:History of computing hardware
2038:History of technology domains
1060:"Mechanization and its level"
1021:10.1016/s0960-1481(03)00135-6
590:
302:
2070:History of materials science
718:Roe, Joseph Wickham (1916),
585:Newly industrialized country
7:
1828:Industrial archaeology
1731:Watt steam engine
1417:Abraham Darby III
563:
460:armoured personnel carriers
10:
2147:
1696:Reverberatory furnace
1623:Quarry Bank Mill
1412:Abraham Darby II
1325:Economies of agglomeration
671:: CS1 maint: postscript (
501:
482:Mechanical vs human labour
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295:After 1900 factories were
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111:and it is controlled by a
50:by George Bauer (pen name
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1739:
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1407:Abraham Darby I
1352:
1341:
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762:Musson; Robinson (1969).
610:. London: John W. Parker.
129:Salisbury Cathedral clock
2050:History of communication
2045:History of biotechnology
1721:Stephenson's Rocket
1537:Richard Trevithick
936:IC Engine 20% efficient
604:Willis, Robert (1861).
575:Bulk materials handling
509:Levels of mechanization
2116:Agricultural machinery
2075:History of measurement
1945:Prehistoric technology
1792:Rochdale Pioneers
1777:Industrial unrest
1583:Bridgewater Canal
1527:Robert Stephenson
1522:George Stephenson
1497:William Radcliffe
1452:Benjamin Huntsman
1427:William Fairbairn
1387:Edmund Cartwright
1362:Richard Arkwright
1265:Industry/Manufacturing
1106:Jerome, Harry (1934).
992:Ozkan, Burhan (2004).
891:. 1983. Archived from
865:Jerome, Harry (1934).
373:Bulk material handling
346:
309:Mechanized agriculture
261:Mechanized agriculture
136:
72:
55:
2020:Industrial Revolution
1927:History of technology
1762:Cottage industry
1447:Eaton Hodgkinson
1432:James Hargreaves
1367:Thomas Boulsover
694:. London: Routledge.
544:performance recording
324:
242:continuous production
215:Industrial Revolution
207:Newcomen steam engine
201:Industrial revolution
133:Industrial Revolution
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67:
39:
2090:History of transport
2055:History of computing
1701:Sheffield plate
1502:Richard Roberts
1482:Thomas Newcomen
1402:Samuel Crompton
1372:Matthew Boulton
1330:Economies of density
686:McNeil, Ian (1990).
489:large diesel engines
2080:History of medicine
1711:Spinning jenny
1706:Spinning frame
1676:Flying shuttle
1666:Crucible steel
1547:John Wilkinson
1532:Thomas Telford
1377:James Brindley
1013:2004REne...29...39O
464:mechanized infantry
462:, to move troops (
2131:Industrial history
1802:Industrial warfare
1651:Blast furnace
1512:Samuel Slater
1507:Thomas Savery
1477:Lunar Society
1335:Economies of scale
1089:2011-08-15 at the
476:motorized infantry
347:
292:of glass bottles.
273:combine harvesters
269:threshing machines
267:and horse powered
191:epicycloidal teeth
137:
56:
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1767:Factory Acts
1752:Child labour
1716:Steam engine
1628:Soho Foundry
1517:John Smeaton
1442:Thomas Highs
1437:Hawks family
1084:basic-to-advanced
747:978-0-917914-73-7
580:Industrialisation
517:hand/muscle power
474:refers to units (
456:armoured vehicles
398:Powered machinery
352:material handling
283:Twentieth century
52:Georgius Agricola
16:(Redirected from
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2015:Great Divergence
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445:Main article:
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441:Military usage
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392:cherry pickers
388:concrete pumps
331:Line of Action
327:involute gears
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219:spinning jenny
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195:involute gears
149:blast furnaces
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1066:on 2011-08-15
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140:Ancient times
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63:mechanisation
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59:Mechanization
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19:
18:Mechanisation
2037:
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1797:Urbanization
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1068:. Retrieved
1064:the original
1054:
1043:
1032:. Retrieved
1025:the original
1004:
1000:
987:
978:
967:
956:. Retrieved
952:the original
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893:the original
880:
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811:. Retrieved
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359:trip hammers
356:
348:
345:base circle.
342:
338:
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286:
277:
259:in Germany.
251:invented by
246:
233:
227:
211:John Smeaton
204:
184:
179:
177:
167:
160:
157:trip hammers
145:Water wheels
143:
73:
68:
62:
58:
57:
45:
2005:Renaissance
1787:Proletariat
1747:Bourgeoisie
538:measurement
297:electrified
253:Jethro Tull
234:self acting
223:water frame
221:(1764) and
113:closed loop
91:and belts,
2105:Categories
1644:technology
1642:Invention/
1608:Ironbridge
1305:Technology
1285:Metallurgy
1175:revolution
1169:Industrial
1070:2010-05-13
1034:2018-04-20
958:2011-03-22
813:2009-07-10
591:References
520:hand-tools
502:See also:
468:mechanized
435:automation
424:unit drive
420:line shaft
402:See also:
367:ball mills
335:stationary
307:See also:
303:Categories
249:seed drill
109:automation
42:mine hoist
2126:Machinery
1990:Byzantine
1950:Neolithic
1811:Reference
1578:Bethlehem
1573:Allentown
1320:Workforce
1290:Sociology
1280:Machinery
1270:Invention
1007:(1): 39.
925:(Report).
667:cite book
621:workshop.
472:motorized
187:Desargues
76:machinery
1872:Category
1598:Cromford
1588:Broseley
1310:Textiles
1087:Archived
739:27-24075
730:16011753
564:See also
363:crushers
343:rotating
339:rotating
225:(1768).
165:(1555).
153:sawmills
2010:Ottoman
1980:Chinese
1884:Commons
1782:Luddite
1691:Railway
1671:Factory
1353:People/
1009:Bibcode
453:tracked
414:Before
265:reapers
119:History
89:sheaves
85:pulleys
2025:Modern
1985:Indian
1561:Places
1355:groups
1260:Cotton
1238:Themes
1214:Fourth
1200:Second
1127:
839:
778:
745:
737:
728:
698:
655:
380:cranes
315:, and
169:Clocks
101:cranks
93:shafts
1975:Roman
1960:Mayan
1656:Canal
1300:Steel
1221:Fifth
1207:Third
1193:First
1186:Proto
1028:(PDF)
997:(PDF)
923:(PDF)
896:(PDF)
889:(PDF)
872:(PDF)
81:gears
1965:Inca
1275:Iron
1255:Coke
1245:Coal
1171:and
1125:ISBN
837:ISBN
776:ISBN
743:ISBN
735:LCCN
726:LCCN
696:ISBN
673:link
653:ISBN
365:and
325:Two
240:for
205:The
155:and
127:The
99:and
97:cams
61:(or
1017:doi
87:or
2107::
1015:.
1005:29
1003:.
999:.
851:^
807:XX
805:.
799:.
774:.
772:69
754:^
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710:^
669:}}
665:{{
430:.
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1147:v
1133:.
1110:.
1073:.
1037:.
1019::
1011::
961:.
874:.
845:.
816:.
784:.
704:.
675:)
20:)
Text is available under the Creative Commons Attribution-ShareAlike License. Additional terms may apply.