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TALAT Lecture 2302: Design of Joints

Description

This lecture provides a view of types of joints in aluminium structures and how to design and calculate frequently used joints. Basic structural mechanics and knowledge of design philosophy, structural aluminium alloys and product forms is assumed.

Subjects

aluminium | aluminum | european aluminium association | eaa | talat | training in aluminium application technologies | training | metallurgy | technology | lecture | design | product | member | joint | static | welding | screws | bolts | riveting | solid state welding | special mechanical joints | joints in thin-walled structures | thread forming screws | blind rivets | cartridge fired pin connections | spot welding | adhesive bonded connections | fasteners | mechanical properties | connections | friction type bolt joints | fastenings | failure modes | deformation | spot welds | design strength | hole bearing | tilting | sheet tearing | edge failure | tension | shear | tensile failure | pull-through failure | pull-over failure | pull-out failure | lap joints | pin connections | heat affected zone | butt welds | fillet welds | ultimate limit state | welded connections | strength | corematerials | ukoer | Engineering | H000

License

Attribution-Noncommercial-Share Alike 2.0 UK: England & Wales Attribution-Noncommercial-Share Alike 2.0 UK: England & Wales http://creativecommons.org/licenses/by-nc-sa/2.0/uk/ http://creativecommons.org/licenses/by-nc-sa/2.0/uk/

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TALAT Lecture 2302: Design of Joints

Description

This lecture provides a view of types of joints in aluminium structures and how to design and calculate frequently used joints. Basic structural mechanics and knowledge of design philosophy, structural aluminium alloys and product forms is assumed.

Subjects

aluminium | aluminum | european aluminium association | EAA | Training in Aluminium Application Technologies | training | metallurgy | technology | lecture | design | product | member | joint | static | welding | screws | bolts | riveting | solid state welding | special mechanical joints | joints in thin-walled structures | thread forming screws | blind rivets | cartridge fired pin connections | spot welding | adhesive bonded connections | fasteners | mechanical properties | connections | friction type bolt joints | fastenings | failure modes | deformation | spot welds | design strength | hole bearing | tilting | sheet tearing | edge failure | tension | shear | tensile failure | pull-through failure | pull-over failure | pull-out failure | lap joints | pin connections | heat affected zone | butt welds | fillet welds | ultimate limit state | welded connections | strength | corematerials | ukoer

License

http://creativecommons.org/licenses/by-nc-sa/2.0/uk/

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9.18 Developmental Neurobiology (MIT) 9.18 Developmental Neurobiology (MIT)

Description

This course considers molecular control of neural specification, formation of neuronal connections, construction of neural systems, and the contributions of experience to shaping brain structure and function. Topics include: neural induction and pattern formation, cell lineage and fate determination, neuronal migration, axon guidance, synapse formation and stabilization, activity-dependent development and critical periods, development of behavior. This course considers molecular control of neural specification, formation of neuronal connections, construction of neural systems, and the contributions of experience to shaping brain structure and function. Topics include: neural induction and pattern formation, cell lineage and fate determination, neuronal migration, axon guidance, synapse formation and stabilization, activity-dependent development and critical periods, development of behavior.

Subjects

molecular | molecular | neural specification | neural specification | ormation of neuronal connections | ormation of neuronal connections | construction of neural systems | construction of neural systems | experience | experience | formation of neuronal connections | formation of neuronal connections | neural induction | neural induction | pattern formation | pattern formation | cell lineage | cell lineage | fate determination | fate determination | neuronal migration | neuronal migration | axon guidance | axon guidance | synapse formation | synapse formation | stabilization | stabilization | activity-dependent development | activity-dependent development | critical periods | critical periods | development | development

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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9.18 Developmental Neurobiology (MIT) 9.18 Developmental Neurobiology (MIT)

Description

This course considers molecular control of neural specification, formation of neuronal connections, construction of neural systems, and the contributions of experience to shaping brain structure and function. Topics include: neural induction and pattern formation, cell lineage and fate determination, neuronal migration, axon guidance, synapse formation and stabilization, activity-dependent development and critical periods, development of behavior. This course considers molecular control of neural specification, formation of neuronal connections, construction of neural systems, and the contributions of experience to shaping brain structure and function. Topics include: neural induction and pattern formation, cell lineage and fate determination, neuronal migration, axon guidance, synapse formation and stabilization, activity-dependent development and critical periods, development of behavior.

Subjects

molecular | molecular | neural specification | neural specification | ormation of neuronal connections | ormation of neuronal connections | construction of neural systems | construction of neural systems | experience | experience | formation of neuronal connections | formation of neuronal connections | neural induction | neural induction | pattern formation | pattern formation | cell lineage | cell lineage | fate determination | fate determination | neuronal migration | neuronal migration | axon guidance | axon guidance | synapse formation | synapse formation | stabilization | stabilization | activity-dependent development | activity-dependent development | critical periods | critical periods | development | development | 9.181 | 9.181 | 7.69 | 7.69

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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4.501 Architectural Construction and Computation (MIT) 4.501 Architectural Construction and Computation (MIT)

Description

This class investigates the use of computers in architectural design and construction. It begins with a pre-prepared design computer model, which is used for testing and process investigation in construction. It then explores the process of construction from all sides of the practice: detail design, structural design, and both legal and computational issues. This class investigates the use of computers in architectural design and construction. It begins with a pre-prepared design computer model, which is used for testing and process investigation in construction. It then explores the process of construction from all sides of the practice: detail design, structural design, and both legal and computational issues.

Subjects

architecture | architecture | digital fabrication | digital fabrication | CAD / CAM | CAD / CAM | machining | machining | computer aided design | computer aided design | digital prototype | digital prototype | fabrication | fabrication | Gehry | Gehry | TriPyramid | TriPyramid | Stata Center | Stata Center | Disney Concert Hall | Disney Concert Hall | digital architecture | digital architecture | 3D modelling | 3D modelling | 3D printing | 3D printing | Palladio | Palladio | design and manufacture | design and manufacture | construction | construction | assembly | assembly | tectonics | tectonics | building | building | building materials | building materials | joints | joints | connections | connections

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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21L.004 Reading Poetry (MIT) 21L.004 Reading Poetry (MIT)

Description

"Reading Poetry" has several aims: primarily, to increase the ways you can become more engaged and curious readers of poetry; to increase your confidence as writers thinking about literary texts; and to provide you with the language for literary description. The course is not designed as a historical survey course but rather as an introductory approach to poetry from various directions – as public or private utterances; as arranged imaginative shapes; and as psychological worlds, for example. One perspective offered is that poetry offers intellectual, moral and linguistic pleasures as well as difficulties to our private lives as readers and to our public lives as writers. Expect to hear and read poems aloud and to memorize lines; the class format will be group discussion, "Reading Poetry" has several aims: primarily, to increase the ways you can become more engaged and curious readers of poetry; to increase your confidence as writers thinking about literary texts; and to provide you with the language for literary description. The course is not designed as a historical survey course but rather as an introductory approach to poetry from various directions – as public or private utterances; as arranged imaginative shapes; and as psychological worlds, for example. One perspective offered is that poetry offers intellectual, moral and linguistic pleasures as well as difficulties to our private lives as readers and to our public lives as writers. Expect to hear and read poems aloud and to memorize lines; the class format will be group discussion,

Subjects

Literature | Literature | poetry | poetry | poets | poets | English | English | Renaissance | Renaissance | modern | modern | Shakespeare | Shakespeare | sonnets | sonnets | stanza-form | stanza-form | figurative language | figurative language | metaphor | metaphor | metonymy | metonymy | meter | meter | accent | accent | duration | duration | apostrophe | apostrophe | assonance | assonance | enjambment | enjambment | chiasmus | chiasmus | hyperbole | hyperbole | litotes | litotes | Donne | Donne | metaphysical | metaphysical | literary art | literary art | language | language | aethetic | aethetic | meaning | meaning | poetic drama | poetic drama | hymns | hymns | lyrics | lyrics | history | history | rhetoric | rhetoric | song | song | drama | drama | comedy | comedy | verse | verse | form | form | rhyme | rhyme | prose | prose | musical | musical | ambiguity | ambiguity | symbolism | symbolism | world | world | irony | irony | style | style | stylistic | stylistic | poetic diction | poetic diction | simile | simile | connections | connections | cultures | cultures | genres | genres | elements of poetry | elements of poetry | lines | lines | stanzas | stanzas | English love sonnets | English love sonnets | sound | sound | figuration | figuration | literary tradition | literary tradition

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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9.18 Developmental Neurobiology (MIT)

Description

This course considers molecular control of neural specification, formation of neuronal connections, construction of neural systems, and the contributions of experience to shaping brain structure and function. Topics include: neural induction and pattern formation, cell lineage and fate determination, neuronal migration, axon guidance, synapse formation and stabilization, activity-dependent development and critical periods, development of behavior.

Subjects

molecular | neural specification | ormation of neuronal connections | construction of neural systems | experience | formation of neuronal connections | neural induction | pattern formation | cell lineage | fate determination | neuronal migration | axon guidance | synapse formation | stabilization | activity-dependent development | critical periods | development | 9.181 | 7.69

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 https://ocw.mit.edu/terms/index.htm

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18.950 Differential Geometry (MIT) 18.950 Differential Geometry (MIT)

Description

This course is an introduction to differential geometry of curves and surfaces in three dimensional Euclidean space. First and second fundamental forms, Gaussian and mean curvature, parallel transport, geodesics, Gauss-Bonnet theorem, complete surfaces, minimal surfaces and Bernstein's theorem are among the main topics studied. This course is an introduction to differential geometry of curves and surfaces in three dimensional Euclidean space. First and second fundamental forms, Gaussian and mean curvature, parallel transport, geodesics, Gauss-Bonnet theorem, complete surfaces, minimal surfaces and Bernstein's theorem are among the main topics studied.

Subjects

Metrics | Metrics | Lie bracket | Lie bracket | connections | connections | geodesics | geodesics | tensors | tensors | intrinsic and extrinsic curvature | intrinsic and extrinsic curvature | defined manifolds using coordinate charts | defined manifolds using coordinate charts | Curves and surfaces in three dimensions | Curves and surfaces in three dimensions | Gauss-Bonnet theorem for surfaces | Gauss-Bonnet theorem for surfaces | general relativity | general relativity

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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9.18 Developmental Neurobiology (MIT)

Description

This course considers molecular control of neural specification, formation of neuronal connections, construction of neural systems, and the contributions of experience to shaping brain structure and function. Topics include: neural induction and pattern formation, cell lineage and fate determination, neuronal migration, axon guidance, synapse formation and stabilization, activity-dependent development and critical periods, development of behavior.

Subjects

molecular | neural specification | ormation of neuronal connections | construction of neural systems | experience | formation of neuronal connections | neural induction | pattern formation | cell lineage | fate determination | neuronal migration | axon guidance | synapse formation | stabilization | activity-dependent development | critical periods | development

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 https://ocw.mit.edu/terms/index.htm

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22.106 Neutron Interactions and Applications (MIT) 22.106 Neutron Interactions and Applications (MIT)

Description

This course is  a foundational study of the effects of single and multiple interactions on neutron distributions and their applications to problems across the Nuclear Engineering department - fission, fusion, and RST. Particle simulation methods are introduced to deal with complex processes that cannot be studied only experimentally or by numerical solutions of equations. Treatment will emphasize basic concepts and understanding, as well as showing the underlying scientific connections with current research areas. This course is  a foundational study of the effects of single and multiple interactions on neutron distributions and their applications to problems across the Nuclear Engineering department - fission, fusion, and RST. Particle simulation methods are introduced to deal with complex processes that cannot be studied only experimentally or by numerical solutions of equations. Treatment will emphasize basic concepts and understanding, as well as showing the underlying scientific connections with current research areas.

Subjects

neutron distributions | neutron distributions | fission | fission | fusion | fusion | RST | RST | Particle simulation methods | Particle simulation methods | complex processes | complex processes | numerical solutions of equations | numerical solutions of equations | basic concepts | basic concepts | underlying scientific connections | underlying scientific connections | current research areas | current research areas | angular distributions | angular distributions | energy distributions | energy distributions | single collision | single collision | multiple collisions | multiple collisions | neutron interactions | neutron interactions | elastic scattering | elastic scattering | inelastic scattering | inelastic scattering | MCNP | MCNP | Monte Carlo | Monte Carlo | molecular dynamics | molecular dynamics

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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MAS.961 Networks, Complexity and Its Applications (MIT) MAS.961 Networks, Complexity and Its Applications (MIT)

Description

Networks are a ubiquitous way to represent complex systems, including those in the social and economic sciences. The goal of the course is to equip students with conceptual tools that can help them understand complex systems that emerge in both nature and social systems. This is a course intended for a general audience and will discuss applications of networks and complexity to diverse systems, including epidemic spreading, social networks and the evolution of economic development. Networks are a ubiquitous way to represent complex systems, including those in the social and economic sciences. The goal of the course is to equip students with conceptual tools that can help them understand complex systems that emerge in both nature and social systems. This is a course intended for a general audience and will discuss applications of networks and complexity to diverse systems, including epidemic spreading, social networks and the evolution of economic development.

Subjects

social networks | social networks | complex networks | complex networks | macroconnections | macroconnections | Watts and Strogatz Model | Watts and Strogatz Model | Barabási-Albert Model | Barabási-Albert Model | Modularity and Community Structure | Modularity and Community Structure | The Lorenz Attractor | The Lorenz Attractor | Lyapunov Exponents | Lyapunov Exponents | visualizing networks | visualizing networks | network structure | network structure

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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7.343 Biological Bases of Learning and Memory (MIT) 7.343 Biological Bases of Learning and Memory (MIT)

Description

How does the brain come to learn whether a stimulus is annoying, rewarding or neutral? How does remembering how to ride a bicycle differ from remembering scenes from a movie? In this course, students will explore the concept that learning and memory have a physical basis that can be observed as biochemical, physiological and/or morphological changes to neural tissue. Our goal will be to understand the strategies and techniques biologists use to search for the memory trace: the "holy grail" of modern neuroscience. This course is one of many Advanced Undergraduate Seminars offered by the Biology Department at MIT. These seminars are tailored for students with an interest in using primary research literature to discuss and learn about current biological research in a highly interact How does the brain come to learn whether a stimulus is annoying, rewarding or neutral? How does remembering how to ride a bicycle differ from remembering scenes from a movie? In this course, students will explore the concept that learning and memory have a physical basis that can be observed as biochemical, physiological and/or morphological changes to neural tissue. Our goal will be to understand the strategies and techniques biologists use to search for the memory trace: the "holy grail" of modern neuroscience. This course is one of many Advanced Undergraduate Seminars offered by the Biology Department at MIT. These seminars are tailored for students with an interest in using primary research literature to discuss and learn about current biological research in a highly interact

Subjects

learning | learning | memory | memory | neural tissue | neural tissue | neuronal connections | neuronal connections | synapse formation | synapse formation | synapse stabilization | synapse stabilization | synaptic transmission | synaptic transmission | synaptic plasticity | synaptic plasticity | neuromodulation | neuromodulation | experience-dependent circuit remodeling | experience-dependent circuit remodeling | neuroscience | neuroscience | pre- and post-synaptic mechanisms | pre- and post-synaptic mechanisms | neurotransmitter release | neurotransmitter release | activity-regulated genes | activity-regulated genes | hippocampus | hippocampus | long-term potentiation | long-term potentiation | long-term depression | long-term depression | cerebellar plasticity | cerebellar plasticity | Non-Associative | Non-Associative | Associative | Associative | cpg15 | cpg15 | experience-dependent synaptic plasticity | experience-dependent synaptic plasticity | perceptual learning | perceptual learning | observational learning | observational learning

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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The Nice Valour

Description

Subjects

middleton | connections | textanalysis

License

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Henry V - Bardolph

Description

Subjects

shakespeare | connections | textanalysis

License

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The Roaring Girl

Description

Subjects

middleton | connections | textanalysis

License

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Henry V - Bourbon

Description

Subjects

shakespeare | connections | textanalysis

License

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TALAT Lecture 2203: Structural materials fabrication

Description

This lecture gives a brief introduction into the basic fabrication methods for structural aluminium alloy materials with respect to machining, forming, joining and surface treatments as a necessary background for the design process; it describes the subject of welding structural aluminium alloys in order to understand the materials requirements which the designer has to take into account when designing load carrying welded aluminium structures. General materials engineering background is assumed.

Subjects

aluminium | aluminum | european aluminium association | eaa | talat | training in aluminium application technologies | training | metallurgy | technology | lecture | design | product | structural design | preparation | extrusion | cutting | plasma gas cutting | shearing | sawing | machining | cold forming | bending | cold forging | bolting | riveting | adhesive bonding | explosion welded connections | sandwich element construction | surface treatment | joining | chemical properties | physical properties | welding | inert gas welding | mig welding | pulsed arc mig welding | plasma mig welding | tig welding | filler materials | weldability | joint design | backing methods | cleaning | shielding gas | pre-heating | weld cracks | solidification cracks | solution cracks | weld imperfections | economy | distortion | inspection | non-destructive testing | destructive testing | quality control aspects | corematerials | ukoer | Engineering | H000

License

Attribution-Noncommercial-Share Alike 2.0 UK: England & Wales Attribution-Noncommercial-Share Alike 2.0 UK: England & Wales http://creativecommons.org/licenses/by-nc-sa/2.0/uk/ http://creativecommons.org/licenses/by-nc-sa/2.0/uk/

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The Honest Whore

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Subjects

middleton | connections | textanalysis

License

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Henry V - Orleans

Description

Subjects

shakespeare | connections | textanalysis

License

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The Revenger's Tragedy

Description

Subjects

middleton | connections | textanalysis

License

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Henry V - Macmorris

Description

Subjects

shakespeare | connections | textanalysis

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The Family of Love

Description

Subjects

middleton | connections | textanalysis

License

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Henry V - Hostess

Description

Subjects

shakespeare | connections | textanalysis

License

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The Puritan

Description

Subjects

middleton | connections | textanalysis

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Henry V - Queen isabel

Description

Subjects

shakespeare | connections | textanalysis

License

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