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18.409 Behavior of Algorithms (MIT) 18.409 Behavior of Algorithms (MIT)

Description

This course is a study of Behavior of Algorithms and covers an area of current interest in theoretical computer science. The topics vary from term to term. During this term, we discuss rigorous approaches to explaining the typical performance of algorithms with a focus on the following approaches: smoothed analysis, condition numbers/parametric analysis, and subclassing inputs. This course is a study of Behavior of Algorithms and covers an area of current interest in theoretical computer science. The topics vary from term to term. During this term, we discuss rigorous approaches to explaining the typical performance of algorithms with a focus on the following approaches: smoothed analysis, condition numbers/parametric analysis, and subclassing inputs.

Subjects

Condition number | Condition number | largest singluar value of a matrix | largest singluar value of a matrix | Smoothed analysis | Smoothed analysis | Gaussian elimination | Gaussian elimination | Growth factors of partial and complete pivoting | Growth factors of partial and complete pivoting | GE of graphs with low bandwidth or small separators | GE of graphs with low bandwidth or small separators | Spectral Partitioning of planar graphs | Spectral Partitioning of planar graphs | spectral paritioning of well-shaped meshes | spectral paritioning of well-shaped meshes | spectral paritioning of nearest neighbor graphs | spectral paritioning of nearest neighbor graphs | Turner's theorem | Turner's theorem | bandwidth of semi-random graphs. | bandwidth of semi-random graphs. | McSherry's spectral bisection algorithm | McSherry's spectral bisection algorithm | Linear Programming | Linear Programming | von Neumann's algorithm | von Neumann's algorithm | primal and dual simplex methods | and duality Strong duality theorem | primal and dual simplex methods | and duality Strong duality theorem | Renegar's condition numbers | Renegar's condition numbers

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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[Alex Ferguson, New York AL (baseball)] (LOC) [Alex Ferguson, New York AL (baseball)] (LOC)

Description

Subjects

libraryofcongress | libraryofcongress | new | new | york | york | yankees | yankees | newyorkyankees | newyorkyankees | bw | bw | black | black | white | white | blackwhite | blackwhite | bandw | bandw | pussy | pussy | riot | riot | mono | mono | blackandwhite | blackandwhite | forkball | forkball | pitcher | pitcher | base | base | ball | ball | baseball | baseball

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[Chief] Bald Eagle on RECRUIT (LOC) [Chief] Bald Eagle on RECRUIT (LOC)

Description

Subjects

world | world | blackandwhite | blackandwhite | bw | bw | white | white | black | black | glass | glass | monochrome | monochrome | port | port | one | one | mono | mono | blackwhite | blackwhite | riot | riot | war | war | gun | gun | native | native | military | military | indian | indian | united | united | wwi | wwi | pussy | pussy | navy | navy | machine | machine | nativeamerican | nativeamerican | negative | negative | american | american | bain | bain | libraryofcongress | libraryofcongress | states | states | bandw | bandw | uss | uss | machinegun | machinegun | weapons | weapons | recruit | recruit | whiteblack | whiteblack | ussrecruit1917 | ussrecruit1917

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Bishop Potter's tomb (LOC) Bishop Potter's tomb (LOC)

Description

Subjects

new | new | york | york | city | city | nyc | nyc | blackandwhite | blackandwhite | bw | bw | white | white | ny | ny | black | black | church | church | saint | saint | st | st | john | john | blackwhite | blackwhite | riot | riot | cathedral | cathedral | gothic | gothic | pussy | pussy | potter | potter | divine | divine | libraryofcongress | libraryofcongress | bandw | bandw | bishop | bishop | episcopal | episcopal | protestant | protestant | horatio | horatio | cofe | cofe | whiteblack | whiteblack | henrycodmanpotter | henrycodmanpotter

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Perritt, New York NL (baseball)] (LOC) Perritt, New York NL (baseball)] (LOC)

Description

Subjects

new | new | york | york | blackandwhite | blackandwhite | bw | bw | white | white | black | black | monochrome | monochrome | hat | hat | ball | ball | mono | mono | blackwhite | blackwhite | riot | riot | uniform | uniform | noir | noir | baseball | baseball | pussy | pussy | national | national | giants | giants | loc | loc | libraryofcongress | libraryofcongress | nl | nl | bandw | bandw | base | base | league | league | pologrounds | pologrounds | nationalleague | nationalleague | newyorkgiants | newyorkgiants | nlb | nlb | perritt | perritt | newyorkbaseballgiants | newyorkbaseballgiants | williampolperritt | williampolperritt | williamperritt | williamperritt | polperritt | polperritt

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Boy's camp - drill (LOC) Boy's camp - drill (LOC)

Description

Subjects

road | road | boy | boy | blackandwhite | blackandwhite | bw | bw | white | white | news | news | black | black | boys | boys | kids | kids | army | army | mono | mono | march | march | blackwhite | blackwhite | kid | kid | riot | riot | uniform | uniform | pussy | pussy | tent | tent | marching | marching | bain | bain | service | service | libraryofcongress | libraryofcongress | cracker | cracker | dust | dust | bandw | bandw | drill | drill | whiteblack | whiteblack | caucasion | caucasion | glasstype | glasstype

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6.451 Principles of Digital Communication II (MIT) 6.451 Principles of Digital Communication II (MIT)

Description

Includes audio/video content: AV lectures. This course is the second of a two-term sequence with 6.450. The focus is on coding techniques for approaching the Shannon limit of additive white Gaussian noise (AWGN) channels, their performance analysis, and design principles. After a review of 6.450 and the Shannon limit for AWGN channels, the course begins by discussing small signal constellations, performance analysis and coding gain, and hard-decision and soft-decision decoding. It continues with binary linear block codes, Reed-Muller codes, finite fields, Reed-Solomon and BCH codes, binary linear convolutional codes, and the Viterbi algorithm. More advanced topics include trellis representations of binary linear block codes and trellis-based decoding; codes on graphs; the sum-product and Includes audio/video content: AV lectures. This course is the second of a two-term sequence with 6.450. The focus is on coding techniques for approaching the Shannon limit of additive white Gaussian noise (AWGN) channels, their performance analysis, and design principles. After a review of 6.450 and the Shannon limit for AWGN channels, the course begins by discussing small signal constellations, performance analysis and coding gain, and hard-decision and soft-decision decoding. It continues with binary linear block codes, Reed-Muller codes, finite fields, Reed-Solomon and BCH codes, binary linear convolutional codes, and the Viterbi algorithm. More advanced topics include trellis representations of binary linear block codes and trellis-based decoding; codes on graphs; the sum-product and

Subjects

coding techniques | coding techniques | the Shannon limit of additive white Gaussian noise channels | the Shannon limit of additive white Gaussian noise channels | performance analysis | performance analysis | Small signal constellations | Small signal constellations | coding gain | coding gain | Hard-decision and soft-decision decoding | Hard-decision and soft-decision decoding | Introduction to binary linear block codes | Introduction to binary linear block codes | Reed-Muller codes | Reed-Muller codes | finite fields | finite fields | Reed-Solomon and BCH codes | Reed-Solomon and BCH codes | binary linear convolutional codes | binary linear convolutional codes | Viterbi and BCJR algorithms | Viterbi and BCJR algorithms | Trellis representations of binary linear block codes | Trellis representations of binary linear block codes | trellis-based ML decoding | trellis-based ML decoding | Codes on graphs | Codes on graphs | sum-product | sum-product | max-product | max-product | decoding algorithms | decoding algorithms | Turbo codes | Turbo codes | LDPC codes and RA codes | LDPC codes and RA codes | Coding for the bandwidth-limited regime | Coding for the bandwidth-limited regime | Lattice codes. | Lattice codes. | Trellis-coded modulation | Trellis-coded modulation | Multilevel coding | Multilevel coding | Shaping | Shaping | Lattice codes | Lattice codes

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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Summer Opera, Columbia (LOC) Summer Opera, Columbia (LOC)

Description

Subjects

blackandwhite | blackandwhite | bw | bw | white | white | news | news | black | black | monochrome | monochrome | mono | mono | blackwhite | blackwhite | riot | riot | opera | opera | university | university | pussy | pussy | band | band | columbia | columbia | orchestra | orchestra | bain | bain | service | service | libraryofcongress | libraryofcongress | bandw | bandw | columbiauniversity | columbiauniversity | whiteblack | whiteblack

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Shamrock III in dry dock at Erie Basin, Aug. 17, 1903 (LOC) Shamrock III in dry dock at Erie Basin, Aug. 17, 1903 (LOC)

Description

Subjects

new | new | york | york | blackandwhite | blackandwhite | bw | bw | white | white | black | black | cup | cup | brooklyn | brooklyn | boat | boat | blackwhite | blackwhite | riot | riot | dock | dock | noir | noir | sailing | sailing | ship | ship | yacht | yacht | plate | plate | dry | dry | negative | negative | repair | repair | sail | sail | libraryofcongress | libraryofcongress | bandw | bandw | races | races | shamrock | shamrock | americascup | americascup | americas | americas | eriebasin | eriebasin | keel | keel | whiteblack | whiteblack | gravingdock | gravingdock | reacing | reacing | shmrock | shmrock | sirthomaslipton | sirthomaslipton | shamrockiii | shamrockiii

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manager John McGraw at right, New York NL at World Series 1917 (baseball)] (LOC) manager John McGraw at right, New York NL at World Series 1917 (baseball)] (LOC)

Description

Subjects

world | world | blackandwhite | blackandwhite | bw | bw | white | white | chicago | chicago | black | black | ball | ball | blackwhite | blackwhite | riot | riot | baseball | baseball | little | little | sox | sox | pussy | pussy | national | national | american | american | napoleon | napoleon | series | series | libraryofcongress | libraryofcongress | bandw | bandw | pitcher | pitcher | base | base | whitesox | whitesox | league | league | mugsy | mugsy | whiteblack | whiteblack | muggsy | muggsy

License

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18.409 Behavior of Algorithms (MIT)

Description

This course is a study of Behavior of Algorithms and covers an area of current interest in theoretical computer science. The topics vary from term to term. During this term, we discuss rigorous approaches to explaining the typical performance of algorithms with a focus on the following approaches: smoothed analysis, condition numbers/parametric analysis, and subclassing inputs.

Subjects

Condition number | largest singluar value of a matrix | Smoothed analysis | Gaussian elimination | Growth factors of partial and complete pivoting | GE of graphs with low bandwidth or small separators | Spectral Partitioning of planar graphs | spectral paritioning of well-shaped meshes | spectral paritioning of nearest neighbor graphs | Turner's theorem | bandwidth of semi-random graphs. | McSherry's spectral bisection algorithm | Linear Programming | von Neumann's algorithm | primal and dual simplex methods | and duality Strong duality theorem | Renegar's condition numbers

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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British kite balloon (LOC) British kite balloon (LOC)

Description

Subjects

libraryofcongress | libraryofcongress | gosnay | gosnay | france | france | 1918 | 1918 | may | may | wwi | wwi | royalflyingcorps | royalflyingcorps | caquot | caquot | england | england | united | united | kingdom | kingdom | unitedkingdom | unitedkingdom | derigable | derigable | blimp | blimp | kite | kite | kyte | kyte | limmie | limmie | brit | brit | brits | brits | bw | bw | black | black | white | white | blackwhite | blackwhite | whiteblack | whiteblack | pussy | pussy | riot | riot | bandw | bandw | mono | mono | blackandwhite | blackandwhite | uk | uk | glass | glass | negative | negative | lib | lib | bainnewsservice | bainnewsservice | bain | bain | news | news | service | service | world | world | war | war | one | one | worldwarone | worldwarone | worldwari | worldwari | western | western | front | front | raf | raf | royal | royal | airforce | airforce | royalairforce | royalairforce | gondola | gondola | commonwealth | commonwealth | common | common | wealth | wealth | lighterthanair | lighterthanair | observationballoon | observationballoon | aviation | aviation

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ESD.68J Communications and Information Policy (MIT) ESD.68J Communications and Information Policy (MIT)

Description

This course provides an introduction to the technology and policy context of public communications networks, through critical discussion of current issues in communications policy and their historical roots. The course focuses on underlying rationales and models for government involvement and the complex dynamics introduced by co-evolving technologies, industry structure, and public policy objectives. Cases drawn from cellular, fixed-line, and Internet applications include evolution of spectrum policy and current proposals for reform; the migration to broadband and implications for universal service policies; and property rights associated with digital content. The course lays a foundation for thesis research in this domain. This course provides an introduction to the technology and policy context of public communications networks, through critical discussion of current issues in communications policy and their historical roots. The course focuses on underlying rationales and models for government involvement and the complex dynamics introduced by co-evolving technologies, industry structure, and public policy objectives. Cases drawn from cellular, fixed-line, and Internet applications include evolution of spectrum policy and current proposals for reform; the migration to broadband and implications for universal service policies; and property rights associated with digital content. The course lays a foundation for thesis research in this domain.

Subjects

network | network | networking | networking | telecommunications | telecommunications | data network | data network | internet | internet | services | services | wireless | wireless | public policy | public policy | FCC | FCC | regulation | regulation | information service | information service | telecom | telecom | datacom | datacom | broadband | broadband | bandwidth | bandwidth | open access | open access | spectrum | spectrum | copyright | copyright | RIAA | RIAA | IP | IP | intellectual property | intellectual property | DRM | DRM | privacy | privacy | piracy | piracy | layered model | layered model | interconnection | interconnection | competition | competition | VoIP | VoIP | IPTV | IPTV | network neutrality | network neutrality | ISP | ISP | telco | telco | ESD.68 | ESD.68 | 6.978 | 6.978

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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2.71 Optics (MIT) 2.71 Optics (MIT)

Description

This course provides an introduction to optical science with elementary engineering applications. Topics covered in geometrical optics include: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Topics covered in wave optics include: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Fraunhofer diffraction, image formation, resolution, space-bandwidth product. Analytical and numerical tools used in optical design are emphasized. Graduate students are required to complete assignments with stronger analytical content, and an advanced design project. This course provides an introduction to optical science with elementary engineering applications. Topics covered in geometrical optics include: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Topics covered in wave optics include: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Fraunhofer diffraction, image formation, resolution, space-bandwidth product. Analytical and numerical tools used in optical design are emphasized. Graduate students are required to complete assignments with stronger analytical content, and an advanced design project.

Subjects

optics | optics | optical science | optical science | geometrical optics | geometrical optics | ray-tracing | ray-tracing | aberrations | aberrations | lens design | lens design | apertures | apertures | stops | stops | radiometry | radiometry | photometry | photometry | Wave optics | Wave optics | electrodynamics | electrodynamics | polarization | polarization | interference | interference | wave-guiding | wave-guiding | Fresnel | Fresnel | Fraunhofer diffraction | Fraunhofer diffraction | image formation | image formation | resolution | resolution | space-bandwidth product | space-bandwidth product | optical design | optical design

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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2.71 Optics (MIT) 2.71 Optics (MIT)

Description

Introduction to optical science with elementary engineering applications. Geometrical optics: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Wave optics: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Faunhofer diffraction, image formation, resolution, space-bandwidth product. Emphasis on analytical and numerical tools used in optical design. Graduate students are required to complete additional assignments with stronger analytical content, and an advanced design project. Introduction to optical science with elementary engineering applications. Geometrical optics: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Wave optics: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Faunhofer diffraction, image formation, resolution, space-bandwidth product. Emphasis on analytical and numerical tools used in optical design. Graduate students are required to complete additional assignments with stronger analytical content, and an advanced design project.

Subjects

ray-tracing | ray-tracing | lens design | lens design | apertures and stops | apertures and stops | radiometry | radiometry | photometry | photometry | Wave optics | Wave optics | basic electrodynamics | basic electrodynamics | electrodynamics | electrodynamics | polarization | polarization | wave-guiding | wave-guiding | Fresnel and Faunhofer diffraction | Fresnel and Faunhofer diffraction | image formation | image formation | resolution | resolution | space-bandwidth product | space-bandwidth product

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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2.71 Optics (MIT) 2.71 Optics (MIT)

Description

This course is an introduction to optical science with elementary engineering applications. Topics covered include geometrical optics: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry; wave optics: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Faunhofer diffraction, image formation, resolution, and space-bandwidth product. Emphasis is on analytical and numerical tools used in optical design. Graduate students are required to complete additional assignments with stronger analytical content, and an advanced design project. This course is an introduction to optical science with elementary engineering applications. Topics covered include geometrical optics: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry; wave optics: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Faunhofer diffraction, image formation, resolution, and space-bandwidth product. Emphasis is on analytical and numerical tools used in optical design. Graduate students are required to complete additional assignments with stronger analytical content, and an advanced design project.

Subjects

optical science | optical science | elementary engineering applications | elementary engineering applications | Geometrical optics | Geometrical optics | ray-tracing | ray-tracing | aberrations | aberrations | lens design; apertures | lens design; apertures | stops | stops | radiometry | radiometry | photometry | photometry | Wave optics | Wave optics | basic electrodynamics | basic electrodynamics | polarization | polarization | interference | interference | wave-guiding | wave-guiding | Fresnel | Fresnel | Faunhofer diffraction | Faunhofer diffraction | image formation | image formation | resolution | resolution | space-bandwidth product | space-bandwidth product | optical design | optical design

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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6.451 Principles of Digital Communication II (MIT) 6.451 Principles of Digital Communication II (MIT)

Description

This course is the second of a two-term sequence with 6.450. The focus is on coding techniques for approaching the Shannon limit of additive white Gaussian noise (AWGN) channels, their performance analysis, and design principles. After a review of 6.450 and the Shannon limit for AWGN channels, the course begins by discussing small signal constellations, performance analysis and coding gain, and hard-decision and soft-decision decoding. It continues with binary linear block codes, Reed-Muller codes, finite fields, Reed-Solomon and BCH codes, binary linear convolutional codes, and the Viterbi algorithm.More advanced topics include trellis representations of binary linear block codes and trellis-based decoding; codes on graphs; the sum-product and min-sum algorithms This course is the second of a two-term sequence with 6.450. The focus is on coding techniques for approaching the Shannon limit of additive white Gaussian noise (AWGN) channels, their performance analysis, and design principles. After a review of 6.450 and the Shannon limit for AWGN channels, the course begins by discussing small signal constellations, performance analysis and coding gain, and hard-decision and soft-decision decoding. It continues with binary linear block codes, Reed-Muller codes, finite fields, Reed-Solomon and BCH codes, binary linear convolutional codes, and the Viterbi algorithm.More advanced topics include trellis representations of binary linear block codes and trellis-based decoding; codes on graphs; the sum-product and min-sum algorithms

Subjects

coding techniques | coding techniques | the Shannon limit of additive white Gaussian noise channels | the Shannon limit of additive white Gaussian noise channels | performance analysis | performance analysis | Small signal constellations | Small signal constellations | coding gain | coding gain | Hard-decision and soft-decision decoding | Hard-decision and soft-decision decoding | Introduction to binary linear block codes | Introduction to binary linear block codes | Reed-Muller codes | Reed-Muller codes | finite fields | finite fields | Reed-Solomon and BCH codes | Reed-Solomon and BCH codes | binary linear convolutional codes | binary linear convolutional codes | Viterbi and BCJR algorithms | Viterbi and BCJR algorithms | Trellis representations of binary linear block codes | Trellis representations of binary linear block codes | trellis-based ML decoding | trellis-based ML decoding | Codes on graphs | Codes on graphs | sum-product | sum-product | max-product | max-product | decoding algorithms | decoding algorithms | Turbo codes | Turbo codes | LDPC codes and RA codes | LDPC codes and RA codes | Coding for the bandwidth-limited regime | Coding for the bandwidth-limited regime | Lattice codes | Lattice codes | Trellis-coded modulation | Trellis-coded modulation | Multilevel coding | Multilevel coding | Shaping | Shaping

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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Jewish Quarter, Jerusalem (LOC) Jewish Quarter, Jerusalem (LOC)

Description

Subjects

street | street | blackandwhite | blackandwhite | bw | bw | white | white | news | news | black | black | building | building | brick | brick | stone | stone | blackwhite | blackwhite | riot | riot | alley | alley | mediterranean | mediterranean | jerusalem | jerusalem | pussy | pussy | east | east | shops | shops | bain | bain | quarter | quarter | hood | hood | service | service | loc | loc | libraryofcongress | libraryofcongress | barter | barter | jews | jews | judaism | judaism | middle | middle | bandw | bandw | eastern | eastern | trade | trade | ghetto | ghetto | section | section | whiteblack | whiteblack

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2.71 Optics (MIT) 2.71 Optics (MIT)

Description

Includes audio/video content: AV lectures. This course provides an introduction to optical science with elementary engineering applications. Topics covered in geometrical optics include: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Topics covered in wave optics include: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Fraunhofer diffraction, image formation, resolution, space-bandwidth product. Analytical and numerical tools used in optical design are emphasized. Graduate students are required to complete assignments with stronger analytical content, and an advanced design project. Includes audio/video content: AV lectures. This course provides an introduction to optical science with elementary engineering applications. Topics covered in geometrical optics include: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Topics covered in wave optics include: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Fraunhofer diffraction, image formation, resolution, space-bandwidth product. Analytical and numerical tools used in optical design are emphasized. Graduate students are required to complete assignments with stronger analytical content, and an advanced design project.

Subjects

optical science | optical science | elementary engineering applications | elementary engineering applications | Geometrical optics | Geometrical optics | ray-tracing | ray-tracing | aberrations | aberrations | lens design | lens design | apertures | apertures | stops | stops | radiometry | radiometry | photometry | photometry | Wave optics | Wave optics | basic electrodynamics | basic electrodynamics | polarization | polarization | interference | interference | wave-guiding | wave-guiding | Fresnel | Fresnel | Faunhofer diffraction | Faunhofer diffraction | image formation | image formation | resolution | resolution | space-bandwidth product | space-bandwidth product | optical design | optical design

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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2.71 Optics (MIT)

Description

This course provides an introduction to optical science with elementary engineering applications. Topics covered in geometrical optics include: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Topics covered in wave optics include: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Fraunhofer diffraction, image formation, resolution, space-bandwidth product. Analytical and numerical tools used in optical design are emphasized. Graduate students are required to complete assignments with stronger analytical content, and an advanced design project.

Subjects

optical science | elementary engineering applications | Geometrical optics | ray-tracing | aberrations | lens design | apertures | stops | radiometry | photometry | Wave optics | basic electrodynamics | polarization | interference | wave-guiding | Fresnel | Faunhofer diffraction | image formation | resolution | space-bandwidth product | optical design

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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ESD.68J Communications and Information Policy (MIT)

Description

This course provides an introduction to the technology and policy context of public communications networks, through critical discussion of current issues in communications policy and their historical roots. The course focuses on underlying rationales and models for government involvement and the complex dynamics introduced by co-evolving technologies, industry structure, and public policy objectives. Cases drawn from cellular, fixed-line, and Internet applications include evolution of spectrum policy and current proposals for reform; the migration to broadband and implications for universal service policies; and property rights associated with digital content. The course lays a foundation for thesis research in this domain.

Subjects

network | networking | telecommunications | data network | internet | services | wireless | public policy | FCC | regulation | information service | telecom | datacom | broadband | bandwidth | open access | spectrum | copyright | RIAA | IP | intellectual property | DRM | privacy | piracy | layered model | interconnection | competition | VoIP | IPTV | network neutrality | ISP | telco | ESD.68 | 6.978

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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ESD.68J Communications and Information Policy (MIT)

Description

This course provides an introduction to the technology and policy context of public communications networks, through critical discussion of current issues in communications policy and their historical roots. The course focuses on underlying rationales and models for government involvement and the complex dynamics introduced by co-evolving technologies, industry structure, and public policy objectives. Cases drawn from cellular, fixed-line, and Internet applications include evolution of spectrum policy and current proposals for reform; the migration to broadband and implications for universal service policies; and property rights associated with digital content. The course lays a foundation for thesis research in this domain.

Subjects

network | networking | telecommunications | data network | internet | services | wireless | public policy | FCC | regulation | information service | telecom | datacom | broadband | bandwidth | open access | spectrum | copyright | RIAA | IP | intellectual property | DRM | privacy | piracy | layered model | interconnection | competition | VoIP | IPTV | network neutrality | ISP | telco | ESD.68 | 6.978

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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Police Patrol (LOC)

Description

Subjects

blackandwhite | bw | white | black | glass | monochrome | river | mono | blackwhite | gun | ss | cancer | machine | police | nypd | scout | potato | batterypark | loc | libraryofcongress | bandw | ammo | 1915 | colt | patrol | seabury | machinegun | digger | 1920 | browning | thebattery | 5x7 | castleclinton | bluecoat | whiteblack | rectal | 3006 | policeboat | potatodigger | baine | xmlns:dc=httppurlorgdcelements11 | m1895 | m1895coltbrowningmachinegun | browningpotatodigger | coltbrowningm1895 | browningm1895 | m1895coltbrowning | dc:identifier=httphdllocgovlocpnpggbain24204

License

No known copyright restrictions

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Police Patrol (LOC)

Description

Subjects

bw | white | black | monochrome | mono | blackwhite | gun | machine | police | nypd | scout | mmg | loc | libraryofcongress | bandw | colt | seabury | machinegun | browning | policeboat | potatodigger | baine | xmlns:dc=httppurlorgdcelements11 | m1895 | m1895coltbrowningmachinegun | browningpotatodigger | coltbrowningm1895 | browningm1895 | m1895coltbrowning | dc:identifier=httphdllocgovlocpnpggbain24202

License

No known copyright restrictions

Site sourced from

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2.71 Optics (MIT)

Description

Introduction to optical science with elementary engineering applications. Geometrical optics: ray-tracing, aberrations, lens design, apertures and stops, radiometry and photometry. Wave optics: basic electrodynamics, polarization, interference, wave-guiding, Fresnel and Faunhofer diffraction, image formation, resolution, space-bandwidth product. Emphasis on analytical and numerical tools used in optical design. Graduate students are required to complete additional assignments with stronger analytical content, and an advanced design project.

Subjects

ray-tracing | lens design | apertures and stops | radiometry | photometry | Wave optics | basic electrodynamics | electrodynamics | polarization | wave-guiding | Fresnel and Faunhofer diffraction | image formation | resolution | space-bandwidth product

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

Site sourced from

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Attribution

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