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16.100 Aerodynamics (MIT) 16.100 Aerodynamics (MIT)
Description
This course extends fluid mechanic concepts from Unified Engineering to the aerodynamic performance of wings and bodies in sub/supersonic regimes. 16.100 generally has four components: subsonic potential flows, including source/vortex panel methods; viscous flows, including laminar and turbulent boundary layers; aerodynamics of airfoils and wings, including thin airfoil theory, lifting line theory, and panel method/interacting boundary layer methods; and supersonic and hypersonic airfoil theory. Course material varies each year depending upon the focus of the design problem. Technical RequirementsFile decompression software, such as Winzip® or StuffIt®, is required to open the .tar files found on this course site. MATLAB This course extends fluid mechanic concepts from Unified Engineering to the aerodynamic performance of wings and bodies in sub/supersonic regimes. 16.100 generally has four components: subsonic potential flows, including source/vortex panel methods; viscous flows, including laminar and turbulent boundary layers; aerodynamics of airfoils and wings, including thin airfoil theory, lifting line theory, and panel method/interacting boundary layer methods; and supersonic and hypersonic airfoil theory. Course material varies each year depending upon the focus of the design problem. Technical RequirementsFile decompression software, such as Winzip® or StuffIt®, is required to open the .tar files found on this course site. MATLABSubjects
aerodynamics | aerodynamics | airflow | airflow | air | air | body | body | aircraft | aircraft | aerodynamic modes | aerodynamic modes | aero | aero | forces | forces | flow | flow | computational | computational | CFD | CFD | aerodynamic analysis | aerodynamic analysis | lift | lift | drag | drag | potential flows | potential flows | imcompressible | imcompressible | supersonic | supersonic | subsonic | subsonic | panel method | panel method | vortex lattice method | vortex lattice method | boudary layer | boudary layer | transition | transition | turbulence | turbulence | inviscid | inviscid | viscous | viscous | euler | euler | navier-stokes | navier-stokes | wind tunnel | wind tunnel | flow similarity | flow similarity | non-dimensional | non-dimensional | mach number | mach number | reynolds number | reynolds number | integral momentum | integral momentum | airfoil | airfoil | wing | wing | stall | stall | friction drag | friction drag | induced drag | induced drag | wave drag | wave drag | pressure drag | pressure drag | fluid element | fluid element | shear strain | shear strain | normal strain | normal strain | vorticity | vorticity | divergence | divergence | substantial derviative | substantial derviative | laminar | laminar | displacement thickness | displacement thickness | momentum thickness | momentum thickness | skin friction | skin friction | separation | separation | velocity profile | velocity profile | 2-d panel | 2-d panel | 3-d vortex | 3-d vortex | thin airfoil | thin airfoil | lifting line | lifting line | aspect ratio | aspect ratio | twist | twist | camber | camber | wing loading | wing loading | roll moments | roll moments | finite volume approximation | finite volume approximation | shocks | shocks | expansion fans | expansion fans | shock-expansion theory | shock-expansion theory | transonic | transonic | critical mach number | critical mach number | wing sweep | wing sweep | Kutta condition | Kutta condition | team project | team project | blended-wing-body | blended-wing-body | computational fluid dynamics | computational fluid dynamics | Incompressible | IncompressibleLicense
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See all metadata13.024 Numerical Marine Hydrodynamics (MIT) 13.024 Numerical Marine Hydrodynamics (MIT)
Description
This course is an introduction to numerical methods: interpolation, differentiation, integration, and systems of linear equations. It covers the solution of differential equations by numerical integration, as well as partial differential equations of inviscid hydrodynamics: finite difference methods, boundary integral equation panel methods. Also addressed are introductory numerical lifting surface computations, fast Fourier transforms, the numerical representation of deterministic and random sea waves, as well as integral boundary layer equations and numerical solutions.Technical RequirementMATLAB® software is required to run the .m files found on this course site. The .FIN and .OUT are simply data offest tables. They can be viewed with any text reader. RealOne™ This course is an introduction to numerical methods: interpolation, differentiation, integration, and systems of linear equations. It covers the solution of differential equations by numerical integration, as well as partial differential equations of inviscid hydrodynamics: finite difference methods, boundary integral equation panel methods. Also addressed are introductory numerical lifting surface computations, fast Fourier transforms, the numerical representation of deterministic and random sea waves, as well as integral boundary layer equations and numerical solutions.Technical RequirementMATLAB® software is required to run the .m files found on this course site. The .FIN and .OUT are simply data offest tables. They can be viewed with any text reader. RealOne™Subjects
numerical methods | numerical methods | interpolation | interpolation | differentiation | differentiation | integration | integration | systems of linear equations | systems of linear equations | differential equations | differential equations | numerical integration | numerical integration | partial differential | partial differential | boundary integral equation panel methods | boundary integral equation panel methods | deterministic and random sea waves | deterministic and random sea waves | Fast Fourier Transforms | Fast Fourier Transforms | finite difference methods | finite difference methods | Integral boundary layer equations | Integral boundary layer equations | numerical lifting surface computations | numerical lifting surface computations | Numerical representation | Numerical representation | numerical solutions | numerical solutions | partial differential equations of inviscid hydrodynamics | partial differential equations of inviscid hydrodynamics | incompressible fluid mechanics | incompressible fluid mechanics | calculus | calculus | complex numbers | complex numbers | root finding | root finding | curve fitting | curve fitting | numerical differentiation | numerical differentiation | numerical errors | numerical errors | panel methods | panel methods | oscillating rigid objects | oscillating rigid objects | 2.29 | 2.29License
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See all metadataDescription
Includes audio/video content: AV faculty introductions. This course is an introduction to numerical methods: interpolation, differentiation, integration, and systems of linear equations. It covers the solution of differential equations by numerical integration, as well as partial differential equations of inviscid hydrodynamics: finite difference methods, boundary integral equation panel methods. Also addressed are introductory numerical lifting surface computations, fast Fourier transforms, the numerical representation of deterministic and random sea waves, as well as integral boundary layer equations and numerical solutions. This course was originally offered in Course 13 (Department of Ocean Engineering) as 13.024. In 2005, ocean engineering subjects became part of Course 2 (Department Includes audio/video content: AV faculty introductions. This course is an introduction to numerical methods: interpolation, differentiation, integration, and systems of linear equations. It covers the solution of differential equations by numerical integration, as well as partial differential equations of inviscid hydrodynamics: finite difference methods, boundary integral equation panel methods. Also addressed are introductory numerical lifting surface computations, fast Fourier transforms, the numerical representation of deterministic and random sea waves, as well as integral boundary layer equations and numerical solutions. This course was originally offered in Course 13 (Department of Ocean Engineering) as 13.024. In 2005, ocean engineering subjects became part of Course 2 (DepartmentSubjects
numerical methods | numerical methods | interpolation | interpolation | differentiation | differentiation | integration | integration | systems of linear equations | systems of linear equations | differential equations | differential equations | numerical integration | numerical integration | partial differential | partial differential | boundary integral equation panel methods | boundary integral equation panel methods | deterministic and random sea waves | deterministic and random sea waves | Fast Fourier Transforms | Fast Fourier Transforms | finite difference methods | finite difference methods | Integral boundary layer equations | Integral boundary layer equations | numerical lifting surface computations | numerical lifting surface computations | Numerical representation | Numerical representation | numerical solutions | numerical solutions | partial differential equations of inviscid hydrodynamics | partial differential equations of inviscid hydrodynamics | incompressible fluid mechanics | incompressible fluid mechanics | calculus | calculus | complex numbers | complex numbers | root finding | root finding | curve fitting | curve fitting | numerical differentiation | numerical differentiation | numerical errors | numerical errors | panel methods | panel methods | oscillating rigid objects | oscillating rigid objectsLicense
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.htmSite sourced from
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See all metadata16.100 Aerodynamics (MIT) 16.100 Aerodynamics (MIT)
Description
This course extends fluid mechanic concepts from Unified Engineering to the aerodynamic performance of wings and bodies in sub/supersonic regimes. 16.100 generally has four components: subsonic potential flows, including source/vortex panel methods; viscous flows, including laminar and turbulent boundary layers; aerodynamics of airfoils and wings, including thin airfoil theory, lifting line theory, and panel method/interacting boundary layer methods; and supersonic and hypersonic airfoil theory. Course material varies each year depending upon the focus of the design problem. This course extends fluid mechanic concepts from Unified Engineering to the aerodynamic performance of wings and bodies in sub/supersonic regimes. 16.100 generally has four components: subsonic potential flows, including source/vortex panel methods; viscous flows, including laminar and turbulent boundary layers; aerodynamics of airfoils and wings, including thin airfoil theory, lifting line theory, and panel method/interacting boundary layer methods; and supersonic and hypersonic airfoil theory. Course material varies each year depending upon the focus of the design problem.Subjects
aerodynamics | aerodynamics | airflow | airflow | air | air | body | body | aircraft | aircraft | aerodynamic modes | aerodynamic modes | aero | aero | forces | forces | flow | flow | computational | computational | CFD | CFD | aerodynamic analysis | aerodynamic analysis | lift | lift | drag | drag | potential flows | potential flows | imcompressible | imcompressible | supersonic | supersonic | subsonic | subsonic | panel method | panel method | vortex lattice method | vortex lattice method | boudary layer | boudary layer | transition | transition | turbulence | turbulence | inviscid | inviscid | viscous | viscous | euler | euler | navier-stokes | navier-stokes | wind tunnel | wind tunnel | flow similarity | flow similarity | non-dimensional | non-dimensional | mach number | mach number | reynolds number | reynolds number | integral momentum | integral momentum | airfoil | airfoil | wing | wing | stall | stall | friction drag | friction drag | induced drag | induced drag | wave drag | wave drag | pressure drag | pressure drag | fluid element | fluid element | shear strain | shear strain | normal strain | normal strain | vorticity | vorticity | divergence | divergence | substantial derivative | substantial derivative | laminar | laminar | displacement thickness | displacement thickness | momentum thickness | momentum thickness | skin friction | skin friction | separation | separation | velocity profile | velocity profile | 2-d panel | 2-d panel | 3-d vortex | 3-d vortex | thin airfoil | thin airfoil | lifting line | lifting line | aspect ratio | aspect ratio | twist | twist | camber | camber | wing loading | wing loading | roll moments | roll moments | finite volume approximation | finite volume approximation | shocks | shocks | expansion fans | expansion fans | shock-expansion theory | shock-expansion theory | transonic | transonic | critical mach number | critical mach number | wing sweep | wing sweep | Kutta condition | Kutta condition | team project | team project | blended-wing-body | blended-wing-body | computational fluid dynamics | computational fluid dynamicsLicense
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.htmSite sourced from
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See all metadata2.29 Numerical Fluid Mechanics (MIT) 2.29 Numerical Fluid Mechanics (MIT)
Description
This course introduces students to MATLAB®. Numerical methods include number representation and errors, interpolation, differentiation, integration, systems of linear equations, and Fourier interpolation and transforms. Students will study partial and ordinary differential equations as well as elliptic and parabolic differential equations, and solutions by numerical integration, finite difference methods, finite element methods, boundary element methods, and panel methods. This course introduces students to MATLAB®. Numerical methods include number representation and errors, interpolation, differentiation, integration, systems of linear equations, and Fourier interpolation and transforms. Students will study partial and ordinary differential equations as well as elliptic and parabolic differential equations, and solutions by numerical integration, finite difference methods, finite element methods, boundary element methods, and panel methods.Subjects
numerical methods | numerical methods | interpolation | interpolation | integration | integration | systems of linear equations | systems of linear equations | differential equations | differential equations | numerical integration | numerical integration | partial differential equations of inviscid hydrodynamics | partial differential equations of inviscid hydrodynamics | finite difference methods | finite difference methods | boundary integral equation panel methods | boundary integral equation panel methods | numerical lifting surface computations | numerical lifting surface computations | Fast Fourier Transforms | Fast Fourier Transforms | Numerical representation | Numerical representation | deterministic and random sea waves | deterministic and random sea waves | Integral boundary layer equations | Integral boundary layer equations | numerical solutions | numerical solutionsLicense
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.htmSite sourced from
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See all metadata14.661 Labor Economics I (MIT) 14.661 Labor Economics I (MIT)
Description
Neoclassical analysis of the labor market and its institutions. A systematic development of the theory of labor supply, labor demand, and human capital. Topics discussed also include wage and employment determination, turnover, search, immigration, unemployment, equalizing differences, and institutions in the labor market. There is particular emphasis on the interaction of theoretical and empirical modeling and the development of independent research interests. Neoclassical analysis of the labor market and its institutions. A systematic development of the theory of labor supply, labor demand, and human capital. Topics discussed also include wage and employment determination, turnover, search, immigration, unemployment, equalizing differences, and institutions in the labor market. There is particular emphasis on the interaction of theoretical and empirical modeling and the development of independent research interests.Subjects
labor economics | public policy | schooling | learning | matching | experience | wages | minimum wage | college | investment | training | firms | corporations | labor | unions | panel data | neoclassical model | turnover models | turnover | economics | labor economics | public policy | schooling | learning | matching | experience | wages | minimum wage | college | investment | training | firms | corporations | labor | unions | panel data | neoclassical model | turnover models | turnover | economics | labor | labor | market | market | statistics | statistics | theory | theory | neoclassical | neoclassical | supply | supply | model | model | life-cycle | life-cycle | demand | demand | wages | wages | immigration | immigration | human capital | human capital | econometrics | econometrics | liquidity | liquidity | constraints | constraints | mobility | mobility | incentives | incentives | organization | organization | moral hazard | moral hazard | insurance | insurance | investments | investments | efficiency | efficiency | unemployment | unemployment | search | search | jobs | jobs | training | training | capital | capital | firm | firm | technology | technology | skills | skills | risk | risk | signaling | signaling | discrimination | discrimination | self-selection | self-selection | learning | learning | natives | nativesLicense
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.htmSite sourced from
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See all metadata2.29 Numerical Fluid Mechanics (MIT) 2.29 Numerical Fluid Mechanics (MIT)
Description
This course will provide students with an introduction to numerical methods and MATLAB®. Topics covered throughout the course will include: errors, condition numbers and roots of equations; Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error analysis, and stability; high-order and compact finite-differences; finite volume methods; time marching methods; Navier-Stokes solvers; grid generation; finite volumes on complex geometries; finite element methods; spectral methods; boundary element and panel methods; turbulent flows; boundary layers; Lagrangian Coherent Structures. Subject includes a final research project. This course will provide students with an introduction to numerical methods and MATLAB®. Topics covered throughout the course will include: errors, condition numbers and roots of equations; Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error analysis, and stability; high-order and compact finite-differences; finite volume methods; time marching methods; Navier-Stokes solvers; grid generation; finite volumes on complex geometries; finite element methods; spectral methods; boundary element and panel methods; turbulent flows; boundary layers; Lagrangian Coherent Structures. Subject includes a final research project.Subjects
errors | errors | condition numbers and roots of equations | condition numbers and roots of equations | Navier-Stokes | Navier-Stokes | direct and iterative methods for linear systems | direct and iterative methods for linear systems | finite differences for elliptic | finite differences for elliptic | parabolic and hyperbolic equations | parabolic and hyperbolic equations | Fourier decomposition | error analysis | and stability | Fourier decomposition | error analysis | and stability | high-order and compact finite-differences | high-order and compact finite-differences | finite volume methods | finite volume methods | time marching methods | time marching methods | Navier-Stokes solvers | Navier-Stokes solvers | grid generation | grid generation | finite volumes on complex geometries | finite volumes on complex geometries | finite element methods | finite element methods | spectral methods | spectral methods | boundary element and panel methods | boundary element and panel methods | turbulent flows | turbulent flows | boundary layers | boundary layers | Lagrangian Coherent Structures | Lagrangian Coherent StructuresLicense
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.htmSite sourced from
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See all metadata2.23 Hydrofoils and Propellers (MIT) 2.23 Hydrofoils and Propellers (MIT)
Description
This course develops the theory and design of hydrofoil sections, including lifting and thickness problems for sub-cavitating sections, unsteady flow problems, and computer-aided design of low drag cavitation-free sections. It also covers lifting line and lifting surface theory with applications to hydrofoil craft, rudder, control surface, propeller and wind turbine rotor design. Other topics include computer-aided design of wake adapted propellers; steady and unsteady propeller thrust and torque; performance analysis and design of wind turbine rotors in steady and stochastic wind; and numerical principles of vortex lattice and lifting surface panel methods. Projects illustrate the development of computational methods for lifting, propeller and wind turbine flows, and use of state-of-the-a This course develops the theory and design of hydrofoil sections, including lifting and thickness problems for sub-cavitating sections, unsteady flow problems, and computer-aided design of low drag cavitation-free sections. It also covers lifting line and lifting surface theory with applications to hydrofoil craft, rudder, control surface, propeller and wind turbine rotor design. Other topics include computer-aided design of wake adapted propellers; steady and unsteady propeller thrust and torque; performance analysis and design of wind turbine rotors in steady and stochastic wind; and numerical principles of vortex lattice and lifting surface panel methods. Projects illustrate the development of computational methods for lifting, propeller and wind turbine flows, and use of state-of-the-aSubjects
turbine | turbine | rotor | rotor | computer-aided design | computer-aided design | propulsion | propulsion | lifting line | lifting line | thrust | thrust | torque | torque | vortices | vortices | boundary layers | boundary layers | wake adaptation | wake adaptation | cavitation | cavitation | fluid flow | fluid flow | fluid dynamics | fluid dynamics | lifting surface panel method | lifting surface panel method | vortex lattice method | vortex lattice method | lifting flow | lifting flowLicense
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.htmSite sourced from
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See all metadata14.385 Nonlinear Econometric Analysis (MIT) 14.385 Nonlinear Econometric Analysis (MIT)
Description
This course presents micro-econometric models, including large sample theory for estimation and hypothesis testing, generalized method of moments (GMM), estimation of censored and truncated specifications, quantile regression, structural estimation, nonparametric and semiparametric estimation, treatment effects, panel data, bootstrapping, simulation methods, and Bayesian methods. The methods are illustrated with economic applications. This course presents micro-econometric models, including large sample theory for estimation and hypothesis testing, generalized method of moments (GMM), estimation of censored and truncated specifications, quantile regression, structural estimation, nonparametric and semiparametric estimation, treatment effects, panel data, bootstrapping, simulation methods, and Bayesian methods. The methods are illustrated with economic applications.Subjects
nonlinear | nonlinear | econometric | econometric | analysis | analysis | generalized method of moments | generalized method of moments | GMM | GMM | maximum likelihood estimation | maximum likelihood estimation | MLE | MLE | minimum distance | minimum distance | extremum | extremum | large sample theory | large sample theory | asymptotic theory | asymptotic theory | discrete choice | discrete choice | censoring | censoring | sample selection | sample selection | bootstrap | bootstrap | subsampling | subsampling | finite-sample methods | finite-sample methods | quantile regression | quantile regression | QR | QR | distributional methods | distributional methods | Bayesian methods | Bayesian methods | quasi-Bayesian methods | quasi-Bayesian methods | bounds | bounds | partial identification | partial identification | weak instruments | weak instruments | many instruments | many instruments | instrumental variables | instrumental variables | nonparametric estimation | nonparametric estimation | semiparametric estimation | semiparametric estimation | treatment effects | treatment effects | nonlinear models | nonlinear models | panel data | panel data | economic modeling | economic modelingLicense
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.htmSite sourced from
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See all metadata14.386 New Econometric Methods (MIT) 14.386 New Econometric Methods (MIT)
Description
This course focuses on recent developments in econometrics, especially structural estimation. The topics include nonseparable models, models of imperfect competition, auction models, duration models, and nonlinear panel data. Results are illustrated with economic applications. This course focuses on recent developments in econometrics, especially structural estimation. The topics include nonseparable models, models of imperfect competition, auction models, duration models, and nonlinear panel data. Results are illustrated with economic applications.Subjects
econometrics | econometrics | recent developments | recent developments | structural estimation | structural estimation | nonseparable models | nonseparable models | models of imperfect competition | models of imperfect competition | auction models | auction models | duration models | duration models | and nonlinear panel data | and nonlinear panel data | economic applications | economic applicationsLicense
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.htmSite sourced from
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See all metadata14.32 Econometrics (MIT) 14.32 Econometrics (MIT)
Description
Introduction to econometric models and techniques, simultaneous equations, program evaluation, emphasizing regression. Advanced topics include instrumental variables, panel data methods, measurement error, and limited dependent variable models. May not count toward HASS requirement. Introduction to econometric models and techniques, simultaneous equations, program evaluation, emphasizing regression. Advanced topics include instrumental variables, panel data methods, measurement error, and limited dependent variable models. May not count toward HASS requirement.Subjects
econometrics | econometrics | statistical methods | statistical methods | differences-in-differences | differences-in-differences | 2SLS | 2SLS | FGLS | FGLS | serial correlation | serial correlation | IV | IV | two-stage least squares | two-stage least squares | multivariate regression | multivariate regression | simultaneous equations | simultaneous equations | econometric models | econometric models | program evaluation | program evaluation | linear regression | linear regression | instrumental variables | instrumental variables | panel data methods | panel data methods | measurement error | measurement error | limited dependent variable models | limited dependent variable modelsLicense
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.htmSite sourced from
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See all metadataDescription
This course reviews the processing and structure of cellular materials as they are created from polymers, metals, ceramics, glasses, and composites, develops models for the mechanical behavior of cellular solids, and shows how the unique properties of honeycombs and foams are exploited in applications such as lightweight structural panels, energy absorption devices and thermal insulation. The applications of cellular solids in medicine include increased fracture risk due to trabecular bone loss in patients with osteoporosis, the development of metal foam coatings for orthopaedic implants, and designing porous scaffolds for tissue engineering that mimic the extracellular matrix. Modelling of cellular materials applied to natural materials and biomimicking is explored. Students taking the gr This course reviews the processing and structure of cellular materials as they are created from polymers, metals, ceramics, glasses, and composites, develops models for the mechanical behavior of cellular solids, and shows how the unique properties of honeycombs and foams are exploited in applications such as lightweight structural panels, energy absorption devices and thermal insulation. The applications of cellular solids in medicine include increased fracture risk due to trabecular bone loss in patients with osteoporosis, the development of metal foam coatings for orthopaedic implants, and designing porous scaffolds for tissue engineering that mimic the extracellular matrix. Modelling of cellular materials applied to natural materials and biomimicking is explored. Students taking the grSubjects
honeycombs | honeycombs | foams | foams | lattices | lattices | stress strain | stress strain | elasticity | elasticity | bending compressive collapse stress | bending compressive collapse stress | fracture | fracture | trabecular bone | trabecular bone | osteoporosis | osteoporosis | tissue engineering | tissue engineering | scaffolds | scaffolds | energy absorption devices | energy absorption devices | structural sandwich panels | structural sandwich panels | cellular structures in plants | cellular structures in plantsLicense
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.htmSite sourced from
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See all metadataGreenwell's Dry Docks, Sunderland Greenwell's Dry Docks, Sunderland
Description
Subjects
road | road | bridge | bridge | roof | roof | industry | industry | window | window | water | water | wall | wall | yard | yard | docks | docks | buildings | buildings | landscape | landscape | dock | dock | workers | workers | construction | construction | cabin | cabin | industrial | industrial | ship | ship | panel | panel | parts | parts | piers | piers | ships | ships | debris | debris | aerialview | aerialview | bank | bank | rail | rail | row | row | structure | structure | riverwear | riverwear | container | container | deck | deck | doorway | doorway | trail | trail | northsea | northsea | frame | frame | cylinder | cylinder | land | land | vehicle | vehicle | mast | mast | tradition | tradition | shipyard | shipyard | striking | striking | scratch | scratch | drydock | drydock | aerialphotography | aerialphotography | impressive | impressive | borders | borders | digitalimage | digitalimage | sunderland | sunderland | shipbuilding | shipbuilding | industrialheritage | industrialheritage | drydocks | drydocks | glassmaking | glassmaking | coalmining | coalmining | wearside | wearside | mouthoftheriver | mouthoftheriver | twentiethcentury | twentiethcentury | southdock | southdock | blackandwhitephotograph | blackandwhitephotograph | pallion | pallion | georgeclark | georgeclark | heavyindustries | heavyindustries | march1962 | march1962 | marineengineering | marineengineering | engineworks | engineworks | wearmouthcolliery | wearmouthcolliery | shiprepairing | shiprepairing | williamdoxfordsons | williamdoxfordsons | austinpickersgill | austinpickersgill | jlthompsonsons | jlthompsonsons | riversidecoalstaithes | riversidecoalstaithes | sirjameslaingsons | sirjameslaingsons | aerialtouroftheriverwear | aerialtouroftheriverwear | repairingyard | repairingyard | twgreenwellandcompanyltd | twgreenwellandcompanyltd | greenwellsdrydocks | greenwellsdrydocksLicense
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See all metadataEngine room of the cargo ship 'Empire Ruskin' Engine room of the cargo ship 'Empire Ruskin'
Description
Subjects
abstract | abstract | blur | blur | industry | industry | wheel | wheel | metal | metal | wall | wall | cord | cord | vent | vent | daylight | daylight | interesting | interesting | construction | construction | iron | iron | industrial | industrial | ship | ship | floor | floor | panel | panel | steel | steel | interior | interior | parts | parts | room | room | debris | debris | pipe | pipe | grain | grain | platform | platform | rail | rail | vessel | vessel | structure | structure | ceiling | ceiling | equipment | equipment | maritime | maritime | bolt | bolt | cylinder | cylinder | unusual | unusual | 1942 | 1942 | component | component | curve | curve | shipyard | shipyard | striking | striking | southshields | southshields | development | development | partnership | partnership | fascinating | fascinating | digitalimage | digitalimage | engineroom | engineroom | 1865 | 1865 | shipbuilding | shipbuilding | launched | launched | cargoship | cargoship | twentiethcentury | twentiethcentury | blackandwhitephotograph | blackandwhitephotograph | lawe | lawe | northeastofengland | northeastofengland | maritimeheritage | maritimeheritage | shipinterior | shipinterior | marineengineering | marineengineering | sirjamesknott | sirjamesknott | johnreadhead | johnreadhead | stricklineltd | stricklineltd | princeline | princeline | britishshipbuilders | britishshipbuilders | hainsteamshipcompanyltd | hainsteamshipcompanyltd | empireship | empireship | johnreadheadsonsltd | johnreadheadsonsltd | johnreadheadsons | johnreadheadsons | highwestyard | highwestyard | johnreadheadsonssouthshields | johnreadheadsonssouthshields | jsoftley | jsoftley | swanhuntergroup | swanhuntergroup | 14july1942 | 14july1942 | johnreadheadco | johnreadheadco | empireruskin | empireruskinLicense
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See all metadataDry dock at Readhead's shipyard Dry dock at Readhead's shipyard
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roof | roof | chimney | chimney | sky | sky | industry | industry | water | water | glass | glass | wheel | wheel | wall | wall | buildings | buildings | handle | handle | boat | boat | interesting | interesting | wire | wire | construction | construction | cabin | cabin | stair | stair | industrial | industrial | panel | panel | crane | crane | timber | timber | ships | ships | pipe | pipe | grain | grain | rail | rail | rope | rope | row | row | structure | structure | beam | beam | chain | chain | deck | deck | pile | pile | maritime | maritime | frame | frame | cylinder | cylinder | letter | letter | unusual | unusual | mast | mast | shipyard | shipyard | plank | plank | drydock | drydock | southshields | southshields | development | development | partnership | partnership | readhead | readhead | vessels | vessels | fascinating | fascinating | digitalimage | digitalimage | 1865 | 1865 | shipbuilding | shipbuilding | northeastengland | northeastengland | lawe | lawe | maritimeheritage | maritimeheritage | sirjamesknott | sirjamesknott | no2dock | no2dock | johnreadhead | johnreadhead | stricklineltd | stricklineltd | princeline | princeline | britishshipbuilders | britishshipbuilders | hainsteamshipcompanyltd | hainsteamshipcompanyltd | johnreadheadsonsltd | johnreadheadsonsltd | johnreadheadsons | johnreadheadsons | highwestyard | highwestyard | 16june1953 | 16june1953 | johnreadheadsonssouthshields | johnreadheadsonssouthshields | jsoftley | jsoftley | swanhuntergroup | swanhuntergroup | johnreadheadco | johnreadheadcoLicense
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See all metadata2.29 Numerical Fluid Dynamics (MIT) 2.29 Numerical Fluid Dynamics (MIT)
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This course is an introduction to numerical methods and MATLAB®: Errors, condition numbers and roots of equations. Topics covered include Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error analysis and stability; high-order and compact finite-differences; finite volume methods; time marching methods; Navier-Stokes solvers; grid generation; finite volumes on complex geometries; finite element methods; spectral methods; boundary element and panel methods; turbulent flows; boundary layers; and Lagrangian coherent structures (LCSs). This course is an introduction to numerical methods and MATLAB®: Errors, condition numbers and roots of equations. Topics covered include Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error analysis and stability; high-order and compact finite-differences; finite volume methods; time marching methods; Navier-Stokes solvers; grid generation; finite volumes on complex geometries; finite element methods; spectral methods; boundary element and panel methods; turbulent flows; boundary layers; and Lagrangian coherent structures (LCSs).Subjects
errors | errors | condition numbers and roots of equations | condition numbers and roots of equations | Navier-Stokes | Navier-Stokes | direct and iterative methods for linear systems | direct and iterative methods for linear systems | finite differences for elliptic | finite differences for elliptic | parabolic and hyperbolic equations | parabolic and hyperbolic equations | Fourier decomposition | Fourier decomposition | error analysis | error analysis | and stability | and stability | high-order and compact finite-differences | high-order and compact finite-differences | finite volume methods | finite volume methods | time marching methods | time marching methods | Navier-Stokes solvers | Navier-Stokes solvers | grid generation | grid generation | finite volumes on complex geometries | finite volumes on complex geometries | finite element methods | finite element methods | spectral methods | spectral methods | boundary element and panel methods | boundary element and panel methods | turbulent flows | turbulent flows | boundary layers | boundary layers | Lagrangian Coherent Structures | Lagrangian Coherent StructuresLicense
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.htmSite sourced from
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roof | roof | sky | sky | abstract | abstract | building | building | industry | industry | metal | metal | wall | wall | handwriting | handwriting | landscape | landscape | handle | handle | daylight | daylight | interesting | interesting | construction | construction | industrial | industrial | panel | panel | unitedkingdom | unitedkingdom | box | box | crane | crane | timber | timber | mark | mark | parts | parts | label | label | debris | debris | grain | grain | ground | ground | rope | rope | structure | structure | hose | hose | cranes | cranes | chain | chain | soil | soil | doorway | doorway | maritime | maritime | bolt | bolt | land | land | unusual | unusual | hook | hook | shipyard | shipyard | shipping | shipping | striking | striking | southshields | southshields | partnership | partnership | fascinating | fascinating | digitalimage | digitalimage | 1865 | 1865 | shipbuilding | shipbuilding | industrialheritage | industrialheritage | cargoship | cargoship | blackandwhitephotograph | blackandwhitephotograph | lawe | lawe | northeastofengland | northeastofengland | muristan | muristan | sirjamesknott | sirjamesknott | johnreadhead | johnreadhead | stricklineltd | stricklineltd | princeline | princeline | britishshipbuilders | britishshipbuilders | hainsteamshipcompanyltd | hainsteamshipcompanyltd | johnreadheadsonsltd | johnreadheadsonsltd | highwestyard | highwestyard | johnreadheadsonssouthshields | johnreadheadsonssouthshields | jsoftley | jsoftley | swanhuntergroup | swanhuntergroup | johnreadheadco | johnreadheadco | 4november1949 | 4november1949License
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See all metadata2.29 Numerical Fluid Mechanics (MIT) 2.29 Numerical Fluid Mechanics (MIT)
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This course is an introduction to numerical methods and MATLAB®: Errors, condition numbers and roots of equations. Topics covered include Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error analysis and stability; high-order and compact finite-differences; finite volume methods; time marching methods; Navier-Stokes solvers; grid generation; finite volumes on complex geometries; finite element methods; spectral methods; boundary element and panel methods; turbulent flows; boundary layers; and Lagrangian coherent structures (LCSs).Prof. Pierre Lermusiaux is very grateful to the teaching assistants Dr. Matt Ueckermann, Dr. Tapovan Lolla, Mr. Jing Lin, and Mr. Arpit Agarwal for the This course is an introduction to numerical methods and MATLAB®: Errors, condition numbers and roots of equations. Topics covered include Navier-Stokes; direct and iterative methods for linear systems; finite differences for elliptic, parabolic and hyperbolic equations; Fourier decomposition, error analysis and stability; high-order and compact finite-differences; finite volume methods; time marching methods; Navier-Stokes solvers; grid generation; finite volumes on complex geometries; finite element methods; spectral methods; boundary element and panel methods; turbulent flows; boundary layers; and Lagrangian coherent structures (LCSs).Prof. Pierre Lermusiaux is very grateful to the teaching assistants Dr. Matt Ueckermann, Dr. Tapovan Lolla, Mr. Jing Lin, and Mr. Arpit Agarwal for theSubjects
errors | errors | condition numbers and roots of equations | condition numbers and roots of equations | Navier-Stokes | Navier-Stokes | direct and iterative methods for linear systems | direct and iterative methods for linear systems | finite differences for elliptic | finite differences for elliptic | parabolic and hyperbolic equations | parabolic and hyperbolic equations | Fourier decomposition | Fourier decomposition | error analysis | error analysis | and stability | and stability | high-order and compact finite-differences | high-order and compact finite-differences | finite volume methods | finite volume methods | time marching methods | time marching methods | Navier-Stokes solvers | Navier-Stokes solvers | grid generation | grid generation | finite volumes on complex geometries | finite volumes on complex geometries | finite element methods | finite element methods | spectral methods | spectral methods | boundary element and panel methods | boundary element and panel methods | turbulent flows | turbulent flows | boundary layers | boundary layers | Lagrangian Coherent Structures | Lagrangian Coherent StructuresLicense
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.htmSite sourced from
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See all metadata'Naess Crusader' being fitted out at Manor Quay 'Naess Crusader' being fitted out at Manor Quay
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roof | roof | chimney | chimney | sky | sky | abstract | abstract | industry | industry | window | window | wall | wall | buildings | buildings | river | river | interesting | interesting | construction | construction | cabin | cabin | stair | stair | industrial | industrial | ship | ship | panel | panel | unitedkingdom | unitedkingdom | crane | crane | timber | timber | parts | parts | name | name | awesome | awesome | debris | debris | letters | letters | pipe | pipe | platform | platform | bank | bank | rail | rail | vessel | vessel | rope | rope | structure | structure | historic | historic | riverwear | riverwear | cranes | cranes | chain | chain | deck | deck | doorway | doorway | pile | pile | maritime | maritime | cylinder | cylinder | unusual | unusual | hook | hook | shipyard | shipyard | float | float | shipping | shipping | majestic | majestic | development | development | impressive | impressive | digitalimage | digitalimage | sunderland | sunderland | shipbuilding | shipbuilding | industrialheritage | industrialheritage | 2015 | 2015 | wearside | wearside | northeastengland | northeastengland | blackandwhitephotograph | blackandwhitephotograph | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | manorquay | manorquay | largestship | largestship | obocarrier | obocarrier | northsandsshipyard | northsandsshipyard | fittedout | fittedout | sunderlandshipbuildersltd | sunderlandshipbuildersltd | northsandssunderland | northsandssunderland | nordicchieftain | nordicchieftain | naesscrusader | naesscrusader | fittingoutquay | fittingoutquay | turnersphotographyltd | turnersphotographyltd | sunderlandkeelline | sunderlandkeelline | 2917metreslong | 2917metreslong | 26february1973 | 26february1973 | naesscrusadersunderlandslargestship | naesscrusadersunderlandslargestship | angloeasternbulkshipsltd | angloeasternbulkshipsltd | quayfloor | quayfloorLicense
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See all metadata'Naess Crusader' on sea trials 'Naess Crusader' on sea trials
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ocean | ocean | sea | sea | abstract | abstract | reflection | reflection | industry | industry | water | water | glass | glass | vent | vent | interesting | interesting | construction | construction | marine | marine | industrial | industrial | ship | ship | panel | panel | unitedkingdom | unitedkingdom | parts | parts | smoke | smoke | united | united | rail | rail | kingdom | kingdom | vessel | vessel | calm | calm | aerial | aerial | cargo | cargo | tools | tools | structure | structure | historic | historic | steam | steam | riverwear | riverwear | container | container | deck | deck | crew | crew | transportation | transportation | frame | frame | cylinder | cylinder | unusual | unusual | shipping | shipping | development | development | trials | trials | impressive | impressive | fascinating | fascinating | digitalimage | digitalimage | sunderland | sunderland | shipbuilding | shipbuilding | 2015 | 2015 | wearside | wearside | northeastengland | northeastengland | blackandwhitephotograph | blackandwhitephotograph | seatrials | seatrials | shipbuildingheritage | shipbuildingheritage | maritimeheritage | maritimeheritage | june1973 | june1973 | obocarrier | obocarrier | northsandsshipyard | northsandsshipyard | sunderlandshipbuildersltd | sunderlandshipbuildersltd | northsandssunderland | northsandssunderland | nordicchieftain | nordicchieftain | naesscrusader | naesscrusader | turnersphotographyltd | turnersphotographyltd | aerialbowview | aerialbowview | sunderlandkeelline | sunderlandkeelline | 2917metreslong | 2917metreslong | naesscrusadersunderlandslargestship | naesscrusadersunderlandslargestship | angloeasternbulkshipsltd | angloeasternbulkshipsltd | largestships | largestshipsLicense
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See all metadataTank engine for the Weardale Lead Company Tank engine for the Weardale Lead Company
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roof | roof | blackandwhite | blackandwhite | building | building | industry | industry | wheel | wheel | metal | metal | stone | stone | sepia | sepia | train | train | handle | handle | interesting | interesting | construction | construction | cabin | cabin | track | track | industrial | industrial | panel | panel | mechanical | mechanical | unitedkingdom | unitedkingdom | mark | mark | parts | parts | transport | transport | pipe | pipe | grain | grain | engine | engine | machine | machine | engineering | engineering | rail | rail | railway | railway | plate | plate | ground | ground | motto | motto | equipment | equipment | doorway | doorway | photograph | photograph | engines | engines | transportation | transportation | bolt | bolt | locomotive | locomotive | motor | motor | unusual | unusual | hook | hook | railways | railways | development | development | partnership | partnership | cylinders | cylinders | impressive | impressive | lid | lid | inscription | inscription | newcastleupontyne | newcastleupontyne | fascinating | fascinating | digitalimage | digitalimage | tankengine | tankengine | industrialheritage | industrialheritage | 1820 | 1820 | northeastofengland | northeastofengland | stocktonanddarlingtonrailway | stocktonanddarlingtonrailway | neutralbackground | neutralbackground | hawthornleslie | hawthornleslie | april1913 | april1913 | roberthawthorn | roberthawthorn | williamhawthorn | williamhawthorn | weardaleleadcompany | weardaleleadcompany | hawthornleslielocomotives | hawthornleslielocomotives | forthbanksworks | forthbanksworks | hawthornleslielocomotiveworks | hawthornleslielocomotiveworks | engineno3029 | engineno3029 | january1817 | january1817License
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See all metadataSide tank engine 'Earl of Mount Edgcumbe' Side tank engine 'Earl of Mount Edgcumbe'
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roof | roof | industry | industry | window | window | wheel | wheel | wall | wall | train | train | interesting | interesting | industrial | industrial | panel | panel | unitedkingdom | unitedkingdom | parts | parts | pipe | pipe | engineering | engineering | rail | rail | plate | plate | historic | historic | doorway | doorway | engines | engines | transportation | transportation | signage | signage | bolt | bolt | cylinder | cylinder | locomotive | locomotive | unusual | unusual | railways | railways | cog | cog | partnership | partnership | newcastleupontyne | newcastleupontyne | fascinating | fascinating | digitalimage | digitalimage | tankengine | tankengine | manufacturing | manufacturing | industrialheritage | industrialheritage | forthbanks | forthbanks | blackandwhitephotograph | blackandwhitephotograph | southwestofengland | southwestofengland | sepiaphotograph | sepiaphotograph | locomotiveengine | locomotiveengine | hawthornleslie | hawthornleslie | earlofmountedgcumbe | earlofmountedgcumbe | roberthawthorn | roberthawthorn | williamhawthorn | williamhawthorn | sidetankengine | sidetankengine | october1906 | october1906 | hawthornleslielocomotives | hawthornleslielocomotives | berealstoncalstockrailway | berealstoncalstockrailway | forthbanksworks | forthbanksworks | 13october1906 | 13october1906License
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light | light | shadow | shadow | chimney | chimney | industry | industry | peru | peru | window | window | wheel | wheel | metal | metal | stone | stone | bar | bar | train | train | handle | handle | vent | vent | interesting | interesting | industrial | industrial | panel | panel | mechanical | mechanical | unitedkingdom | unitedkingdom | mark | mark | parts | parts | letters | letters | transport | transport | pipe | pipe | guard | guard | grain | grain | engine | engine | engineering | engineering | rail | rail | railway | railway | plate | plate | historic | historic | number | number | doorway | doorway | step | step | engines | engines | transportation | transportation | bolt | bolt | cylinder | cylinder | locomotive | locomotive | unusual | unusual | identification | identification | railways | railways | stockton | stockton | partnership | partnership | impressive | impressive | manufactured | manufactured | lever | lever | newcastleupontyne | newcastleupontyne | fascinating | fascinating | digitalimage | digitalimage | tankengine | tankengine | industrialheritage | industrialheritage | forthbanks | forthbanks | twentiethcentury | twentiethcentury | blackandwhitephotograph | blackandwhitephotograph | northeastofengland | northeastofengland | huaral | huaral | neutralbackground | neutralbackground | sepiaphotograph | sepiaphotograph | locomotiveengine | locomotiveengine | hawthornleslie | hawthornleslie | roberthawthorn | roberthawthorn | williamhawthorn | williamhawthorn | november1910 | november1910 | sidetankengine | sidetankengine | hawthornleslielocomotives | hawthornleslielocomotives | forthbanksworks | forthbanksworks | hawthornleslielocomotiveworks | hawthornleslielocomotiveworks | 28november1910 | 28november1910 | darlingtonrailway | darlingtonrailway | northeasternrailwayofperu | northeasternrailwayofperuLicense
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See all metadataNorth Eastern Railway Company North Eastern Railway Company
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london | london | industry | industry | window | window | wheel | wheel | metal | metal | train | train | handle | handle | vent | vent | interesting | interesting | industrial | industrial | carriage | carriage | panel | panel | unitedkingdom | unitedkingdom | mark | mark | pipe | pipe | grain | grain | engine | engine | engineering | engineering | rail | rail | railway | railway | ground | ground | historic | historic | doorway | doorway | engines | engines | transportation | transportation | bolt | bolt | cylinder | cylinder | archives | archives | locomotive | locomotive | unusual | unusual | striking | striking | railways | railways | hebburn | hebburn | partnership | partnership | impressive | impressive | newcastleupontyne | newcastleupontyne | fascinating | fascinating | digitalimage | digitalimage | 1885 | 1885 | 1924 | 1924 | manufacture | manufacture | tankengine | tankengine | industrialheritage | industrialheritage | lner | lner | 1820 | 1820 | forthbanks | forthbanks | blackandwhitephotograph | blackandwhitephotograph | northeastofengland | northeastofengland | stationaryengines | stationaryengines | neutralbackground | neutralbackground | locomotiveengine | locomotiveengine | andrewleslie | andrewleslie | marineengineering | marineengineering | hawthornleslie | hawthornleslie | passengerlocomotive | passengerlocomotive | northeasternrailwaycompany | northeasternrailwaycompany | roberthawthorn | roberthawthorn | williamhawthorn | williamhawthorn | stocktonrailway | stocktonrailway | hawthornleslielocomotives | hawthornleslielocomotives | londonnortheasternrailwaycompany | londonnortheasternrailwaycompany | forthbanksworks | forthbanksworks | hawthornleslielocomotiveworks | hawthornleslielocomotiveworks | darlingtonrailway | darlingtonrailway | lner1784 | lner1784 | randwhawthornlesliecoltd | randwhawthornlesliecoltdLicense
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See all metadataNaval gun mounting at the Elswick Works Naval gun mounting at the Elswick Works
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shadow | shadow | blur | blur | industry | industry | wheel | wheel | wall | wall | handle | handle | interesting | interesting | construction | construction | support | support | paint | paint | gun | gun | industrial | industrial | factory | factory | workmen | workmen | panel | panel | mechanical | mechanical | unitedkingdom | unitedkingdom | britain | britain | timber | timber | interior | interior | parts | parts | military | military | debris | debris | great | great | pipe | pipe | working | working | navy | navy | platform | platform | rail | rail | ground | ground | rope | rope | structure | structure | ceiling | ceiling | beam | beam | chain | chain | cap | cap | pile | pile | porthole | porthole | bolt | bolt | cylinder | cylinder | archives | archives | overalls | overalls | artillery | artillery | products | products | ladder | ladder | unusual | unusual | cart | cart | cog | cog | attentive | attentive | impressive | impressive | global | global | newcastleupontyne | newcastleupontyne | fascinating | fascinating | mounting | mounting | digitalimage | digitalimage | factories | factories | customers | customers | rivertyne | rivertyne | warfare | warfare | manufacturing | manufacturing | assembled | assembled | navalgun | navalgun | industrialheritage | industrialheritage | armaments | armaments | armament | armament | blackandwhitephotograph | blackandwhitephotograph | northeastofengland | northeastofengland | armstrongwhitworth | armstrongwhitworth | lordarmstrong | lordarmstrong | c1911 | c1911 | elswickworks | elswickworks | williamgeorgearmstrong | williamgeorgearmstrong | workshopoftheworld | workshopoftheworld | scotswoodworks | scotswoodworks | vickersarmstrongcollection | vickersarmstrongcollectionLicense
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