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Captain Halpin and his dog aboard the 'Great Eastern'

Description

Reproduction ID: H1743 Maker: Unknown Date: 1873

Subjects

nationalmaritimemuseum | ship | ssgreateastern | greateastern | isambardkingdombrunel | brunel | steamship | submarinecable | underwatercable | cablelayer | leviathan | dog | isambardbrunel | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | cablelayingship | cablelaying | captainroberthalpin | captroberthalpin | capthalpin | roberthalpin | halpin

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Photography School Photography School

Description

Subjects

robertfrench | robertfrench | williamlawrence | williamlawrence | lawrencecollection | lawrencecollection | lawrencephotographicstudio | lawrencephotographicstudio | thelawrencephotographcollection | thelawrencephotographcollection | glassnegative | glassnegative | nationallibraryofireland | nationallibraryofireland | ballinskelligs | ballinskelligs | cokerry | cokerry | ireland | ireland | lawn | lawn | tennis | tennis | croquet | croquet | photographer | photographer | tripod | tripod | camera | camera | group | group | ladies | ladies | poles | poles | houses | houses | bungalows | bungalows | sea | sea | beach | beach | explore | explore | countykerry | countykerry | cablestation | cablestation | photography | photography | beacon | beacon | navigationaid | navigationaid | cable | cable | telegraphstation | telegraphstation | angloamericantelegraphcompany | angloamericantelegraphcompany | westernunion | westernunion | pose | pose

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Cable-laying ship ‘Silvertown’

Description

Reproduction ID: G1146 Maker: Unknown Date: 1901

Subjects

nationalmaritimemuseum | silvertown | ship | cablelayer | boat | buoy | buoyant | cablelaying | cablelayingship

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13.10J Structural Mechanics (MIT) 13.10J Structural Mechanics (MIT)

Description

Fundamental concepts of structural mechanics with applications to marine, civil, and mechanical structures. Residual stresses. Thermal effects. Analysis of beams, columns, tensioned beams, trusses, frames, cables, and shafts of general shape and material, including composites. Elastic buckling of columns. Exact and approximate methods, energy methods, principle of virtual work, introduction to computational structural mechanics. Examples from civil, mechanical, offshore, and ship structures. Fundamental concepts of structural mechanics with applications to marine, civil, and mechanical structures. Residual stresses. Thermal effects. Analysis of beams, columns, tensioned beams, trusses, frames, cables, and shafts of general shape and material, including composites. Elastic buckling of columns. Exact and approximate methods, energy methods, principle of virtual work, introduction to computational structural mechanics. Examples from civil, mechanical, offshore, and ship structures.

Subjects

structural mechanics | structural mechanics | mechanical structures | mechanical structures | residual stresses | residual stresses | thermal effects | thermal effects | beams | beams | columns | columns | tensioned beams | tensioned beams | trusses | trusses | frames | frames | arches | arches | cables | cables | shafts | shafts | elastic buckling | elastic buckling | energy methods | energy methods | virtual work | virtual work | computational structural mechanics | computational structural mechanics | 1.573J | 1.573J | 13.10 | 13.10 | 1.573 | 1.573

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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9.29J Introduction to Computational Neuroscience (MIT) 9.29J Introduction to Computational Neuroscience (MIT)

Description

Mathematical introduction to neural coding and dynamics. Convolution, correlation, linear systems, Fourier analysis, signal detection theory, probability theory, and information theory. Applications to neural coding, focusing on the visual system. Hodgkin-Huxley and related models of neural excitability, stochastic models of ion channels, cable theory, and models of synaptic transmission. Mathematical introduction to neural coding and dynamics. Convolution, correlation, linear systems, Fourier analysis, signal detection theory, probability theory, and information theory. Applications to neural coding, focusing on the visual system. Hodgkin-Huxley and related models of neural excitability, stochastic models of ion channels, cable theory, and models of synaptic transmission.

Subjects

neural coding | neural coding | dynamics | dynamics | convolution | convolution | correlation | correlation | linear systems | linear systems | Fourier analysis | Fourier analysis | signal detection theory | signal detection theory | probability theory | probability theory | information theory | information theory | neural excitability | neural excitability | stochastic models | stochastic models | ion channels | ion channels | cable theory | cable theory | 9.29 | 9.29 | 8.261 | 8.261

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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1.571 Structural Analysis and Control (MIT) 1.571 Structural Analysis and Control (MIT)

Description

This course uses computer-based methods for the analysis of large-scale structural systems. Topics covered include: modeling strategies for complex structures; application to tall buildings, cable-stayed bridges, and tension structures; introduction to the theory of active structural control; design of classical feedback control systems for civil structures; and simulation studies using customized computer software. This course uses computer-based methods for the analysis of large-scale structural systems. Topics covered include: modeling strategies for complex structures; application to tall buildings, cable-stayed bridges, and tension structures; introduction to the theory of active structural control; design of classical feedback control systems for civil structures; and simulation studies using customized computer software.

Subjects

structural analysis | structural analysis | structures | structures | large-scale structural systems | large-scale structural systems | modeling | modeling | tall buildings | tall buildings | cable-stayed bridges | cable-stayed bridges | tension structures | tension structures | active structural control | active structural control | feedback control systems | feedback control systems | civil structures | civil structures | simulations | simulations

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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6.042J Mathematics for Computer Science (MIT) 6.042J Mathematics for Computer Science (MIT)

Description

This is an introductory course in Discrete Mathematics oriented toward Computer Science and Engineering. The course divides roughly into thirds: Fundamental Concepts of Mathematics: Definitions, Proofs, Sets, Functions, Relations Discrete Structures: Modular Arithmetic, Graphs, State Machines, Counting Discrete Probability Theory A version of this course from a previous term was also taught as part of the Singapore-MIT Alliance (SMA) programme as course number SMA 5512 (Mathematics for Computer Science). This is an introductory course in Discrete Mathematics oriented toward Computer Science and Engineering. The course divides roughly into thirds: Fundamental Concepts of Mathematics: Definitions, Proofs, Sets, Functions, Relations Discrete Structures: Modular Arithmetic, Graphs, State Machines, Counting Discrete Probability Theory A version of this course from a previous term was also taught as part of the Singapore-MIT Alliance (SMA) programme as course number SMA 5512 (Mathematics for Computer Science).

Subjects

mathematical definitions | mathematical definitions | proofs and applicable methods | proofs and applicable methods | formal logic notation | formal logic notation | proof methods | proof methods | induction | induction | well-ordering | well-ordering | sets | sets | relations | relations | elementary graph theory | elementary graph theory | integer congruences | integer congruences | asymptotic notation and growth of functions | asymptotic notation and growth of functions | permutations and combinations | counting principles | permutations and combinations | counting principles | discrete probability | discrete probability | recursive definition | recursive definition | structural induction | structural induction | state machines and invariants | state machines and invariants | recurrences | recurrences | generating functions | generating functions | permutations and combinations | permutations and combinations | counting principles | counting principles | discrete mathematics | discrete mathematics | computer science | computer science

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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6.042J Mathematics for Computer Science (MIT) 6.042J Mathematics for Computer Science (MIT)

Description

This course is offered to undergraduates and is an elementary discrete mathematics course oriented towards applications in computer science and engineering. Topics covered include: formal logic notation, induction, sets and relations, permutations and combinations, counting principles, and discrete probability. This course is offered to undergraduates and is an elementary discrete mathematics course oriented towards applications in computer science and engineering. Topics covered include: formal logic notation, induction, sets and relations, permutations and combinations, counting principles, and discrete probability.

Subjects

Elementary discrete mathematics for computer science and engineering | Elementary discrete mathematics for computer science and engineering | mathematical definitions | mathematical definitions | proofs and applicable methods | proofs and applicable methods | formal logic notation | formal logic notation | proof methods | proof methods | induction | induction | well-ordering | well-ordering | sets | sets | relations | relations | elementary graph theory | elementary graph theory | integer congruences | integer congruences | asymptotic notation and growth of functions | asymptotic notation and growth of functions | permutations and combinations | permutations and combinations | counting principles | counting principles | discrete probability | discrete probability | recursive definition | recursive definition | structural induction | structural induction | state machines and invariants | state machines and invariants | recurrences | recurrences | generating functions | generating functions | 6.042 | 6.042 | 18.062 | 18.062

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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9.29J Introduction to Computational Neuroscience (MIT) 9.29J Introduction to Computational Neuroscience (MIT)

Description

This course gives a mathematical introduction to neural coding and dynamics. Topics include convolution, correlation, linear systems, game theory, signal detection theory, probability theory, information theory, and reinforcement learning. Applications to neural coding, focusing on the visual system are covered, as well as Hodgkin-Huxley and other related models of neural excitability, stochastic models of ion channels, cable theory, and models of synaptic transmission. Visit the Seung Lab Web site. This course gives a mathematical introduction to neural coding and dynamics. Topics include convolution, correlation, linear systems, game theory, signal detection theory, probability theory, information theory, and reinforcement learning. Applications to neural coding, focusing on the visual system are covered, as well as Hodgkin-Huxley and other related models of neural excitability, stochastic models of ion channels, cable theory, and models of synaptic transmission. Visit the Seung Lab Web site.

Subjects

neural coding | neural coding | dynamics | dynamics | convolution | convolution | correlation | correlation | linear systems | linear systems | Fourier analysis | Fourier analysis | signal detection theory | signal detection theory | probability theory | probability theory | information theory | information theory | neural excitability | neural excitability | stochastic models | stochastic models | ion channels | ion channels | cable theory | cable theory

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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15.020 Competition in Telecommunications (MIT) 15.020 Competition in Telecommunications (MIT)

Description

Competition in Telecommunications provides an introduction to the economics, business strategies, and technology of telecommunications markets. This includes markets for wireless communications, local and long-distance services, and customer equipment. The convergence of computers, cable TV and telecommunications and the competitive emergence of the Internet are covered in depth. A number of speakers from leading companies in the industry will give course lectures. Competition in Telecommunications provides an introduction to the economics, business strategies, and technology of telecommunications markets. This includes markets for wireless communications, local and long-distance services, and customer equipment. The convergence of computers, cable TV and telecommunications and the competitive emergence of the Internet are covered in depth. A number of speakers from leading companies in the industry will give course lectures.

Subjects

telephone | telephone | Internet | Internet | communications | communications | economics | economics | business strategy | business strategy | technologies | technologies | wireless | wireless | convergence | convergence | cable television | cable television | governmental regulations | governmental regulations | public policy | public policy | evolution of technology | evolution of technology | computer hardware and software | computer hardware and software | VoIP | VoIP | data and voice traffic | data and voice traffic | network integration | network integration | deregulation | deregulation | cell phones | cell phones | WiFi | WiFi | Internet commerce | Internet commerce | spectrum auctions | spectrum auctions | telecommunications markets | telecommunications markets | competition | competition | wireless communications | wireless communications | long-distance services | long-distance services | computers | computers | satellite TV | satellite TV | telecommunications industry | telecommunications industry | regulation | regulation | technology | technology | market structures | market structures | data traffic | data traffic | voice traffic | voice traffic

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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6.042J Mathematics for Computer Science (MIT) 6.042J Mathematics for Computer Science (MIT)

Description

This course is offered to undergraduates and is an elementary discrete mathematics course oriented towards applications in computer science and engineering. Topics covered include: formal logic notation, induction, sets and relations, permutations and combinations, counting principles, and discrete probability. This course is offered to undergraduates and is an elementary discrete mathematics course oriented towards applications in computer science and engineering. Topics covered include: formal logic notation, induction, sets and relations, permutations and combinations, counting principles, and discrete probability.

Subjects

Elementary discrete mathematics for computer science and engineering | Elementary discrete mathematics for computer science and engineering | mathematical definitions | mathematical definitions | proofs and applicable methods | proofs and applicable methods | formal logic notation | formal logic notation | proof methods | proof methods | induction | induction | well-ordering | well-ordering | sets | sets | relations | relations | elementary graph theory | elementary graph theory | integer congruences | integer congruences | asymptotic notation and growth of functions | asymptotic notation and growth of functions | permutations and combinations | permutations and combinations | counting principles | counting principles | discrete probability | discrete probability | recursive definition | recursive definition | structural induction | structural induction | state machines and invariants | state machines and invariants | recurrences | recurrences | generating functions | generating functions | 6.042 | 6.042 | 18.062 | 18.062

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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Deck of the 'Great Eastern'

Description

Reproduction ID: H2415 Maker: Unknown Date: 1865

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying

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Cable Laying Machinery on the 'Great Eastern'

Description

Reproduction ID: H2456 Maker: Unknown Date: 1865-1872

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying

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An engineer next to the cable laying machinery

Description

Reproduction ID: H2458 Maker: Unknown Date: 1865

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying

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Cable laying machinery on the 'Great Eastern'

Description

Reproduction ID: H2457 Maker: Unknown Date: 1865-1872

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying

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Captain Harrison of the 'Great Eastern'

Description

Reproduction ID: P39223 Maker: Unknown Date: 1859

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | scottrussell | easterncompany | greatshipcompany | captainwilliamharrison | captwilliamharrison | captharrison | williamharrison | harrison | captainharrison

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Building the 'Great Eastern'

Description

Reproduction ID: H1696 Maker: Robert Howlett Date: 1857

Subjects

nationalmaritimemuseum | ikb | greateastern | paddle | steamer | ship | steamship | ssgreateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | shipyard | shipbuilding | millwall

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The position of the sternpost screw on the 'Great Eastern'

Description

Reproduction ID: H1695 Maker: Robert Howlett Date: 1857

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | shipyard | shipbuilding | millwall | stern | sternpost | screw | chains

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The 'Great Eastern' under construction at Millwall

Description

Reproduction ID: D0676 Maker: Joseph Cundall Date: 18 August 1855 Find out more about this image on Collections

Subjects

nationalmaritimemuseum | shipyard | shipbuilding | ship | riverthames | thamesriver | thames | jscottrussellco | london | isambardkingdombrunel | isambardbrunel | brunel | ssgreateastern | greateastern | scottrussell | easternsteamnavigationcompany | easterncompany | leviathan | greatshipcompany | millwall | steamship | cablelayingship | cablelaying | cl0412 | cl0412fs | cl0412s1 | cl0412d3 | great | eastern | giant | isle | dogs | cutting | edge | technology | mid | 19th | century | industry | cost | greenwich | teamwork | ladders | detail | task | effort | huge | massive | construction | site | scale | challenge | skill | engineering | details | building | complexity | structure | posing | rivets | achievement | workers

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One of the 'Great Eastern's' grappling hooks

Description

Reproduction ID: H2373 Maker: Unknown Date: 1865

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | grapplinghook | grapplinghooks | cl0412 | cl0412s1 | cl0412d7

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The 'Great Eastern' in Liverpool waiting to be broken up at Henry Bath and Sons yard

Description

Reproduction ID: P10571 Maker: Unknown Date: 1888-1890

Subjects

nationalmaritimemuseum | liverpool | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | breakers | breakersyard | henrybathsons | henrybathandsons

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The 'Great Eastern' cable ship

Description

Reproduction ID: P01715 Maker: Unknown Date: 1869

Subjects

nationalmaritimemuseum | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying

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'Great Eastern' at Milford Haven

Description

Reproduction ID: H1931 Maker: Unknown Date: about 1884

Subjects

nationalmaritimemuseum | milfordhaven | ship | steamship | ssgreateastern | greateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | pembrokeshire

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The building of the 'Great Eastern': the starboard profile.

Description

Reproduction ID: H1703 Maker: Robert Howlett Date: 1857

Subjects

nationalmaritimemuseum | greateastern | ship | steamship | ssgreateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | millwall | shipyard | shipbuilding | thamesriver | riverthames

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Building of the 'Great Eastern', stern view

Description

Reproduction ID: H1700 Maker: Robert Howlett Date: 1857

Subjects

nationalmaritimemuseum | greateastern | ship | steamship | ssgreateastern | easternsteamnavigationcompany | jscottrussellco | scottrussell | easterncompany | greatshipcompany | isambardkingdombrunel | isambardbrunel | brunel | leviathan | cablelayingship | cablelaying | millwall | shipyard | shipbuilding | thamesriver | riverthames

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