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Analytical Science

Description

Wales undergraduate level and as a CPD training resource

Subjects

ukoer | sfsoer | oer | open educational resources | metadata | analytical science | cpd training resource | analytical chemistry | measurement science | analytical process model | skills for analytical science | skills for analytical chemistry | analytical sample preparation | separation and concentration of analytes | units of measurement | volumetric techniques | gravimetric techniques | calibration methods | standard-addition | method of internal-standards | statistical analysis of data | measurement uncertainty | chromatographic methods | thin layer chromatography | gc | gas chromatography | hplc | high-performance liquid chromatography | capillary electrophoresis | potentiometry | ion-selective electrodes | amperometry | coulometry | plated film thickness | electromagnetic spectrum | electronic transitions | vibrational energy | comparison of spectroscopic techniques | fluorescence spectroscopy | mid infra-red spectroscopy | near infra-red spectroscopy | aas | atomic absorption spectroscopy | atomic emission spectroscopy | inductively coupled plasme emission spectroscopy | icpms | icpes | atomic fluorescence spectroscopy | comparison of elemental analysis techniques | principles of mass spectroscopy | electron impact mass spectroscopy | chemical ionisation mass spectroscopy | quadrupole mass spectroscopy | time-of-flight mass analysers | ion-trap mass analysers | off-line sampling systems | at-line sampling systems | on-line sampling systems | in-line sampling systems | performance characteristics of analytical techniques | flow injection analysis | fia | process gc | process ir | process ms | process uv/visible | quality management | quality assurance | qa | vam principles | quality control | qc | analytical method validation | analytical method performance characteristics | sampling of solids | liquids and gases | measurement of ph | karl fischer titration | uv/visible spectroscopy | beer's law | beer-lambert law | deviations from beer's law | mid ir spectroscopy | near ir spectroscopy | raman spectroscopy | fourier transform spectroscopies | x-ray methods | x-ray fluorescence spectroscopy | gc-ms | lc-ms | Physical sciences | F000

License

Attribution-Noncommercial-No Derivative Works 2.0 UK: England & Wales Attribution-Noncommercial-No Derivative Works 2.0 UK: England & Wales http://creativecommons.org/licenses/by-nc-nd/2.0/uk/ http://creativecommons.org/licenses/by-nc-nd/2.0/uk/

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ños Animales (2010) ños Animales (2010)

Description

Los procesos gastrointestinales constituyen uno de los hallazgos clínicos más frecuentes en la práctica veterinaria de pequeños animales. La técnica endoscópica ofrece en este campo una gran seguridad diagnóstica, gracias a la posibilidad de obtener biopsias en los diferentes tramos explorados. Los objetivos específicos de este curso de Endoscopia son formar a los alumnos en la utilización y manejo del endoscopio y la toma de biopsias de las diferentes porciones del aparato digestivo, con fines diagnósticos. Además, se pretende darle a conocer las patologías concretas de esta especialidad que puede encontrar en la práctica clínica profesional y ponerle en contacto con casos clínicos representativos, tomados de la práctica clínica, para estar en condiciones de enfrentarse a Los procesos gastrointestinales constituyen uno de los hallazgos clínicos más frecuentes en la práctica veterinaria de pequeños animales. La técnica endoscópica ofrece en este campo una gran seguridad diagnóstica, gracias a la posibilidad de obtener biopsias en los diferentes tramos explorados. Los objetivos específicos de este curso de Endoscopia son formar a los alumnos en la utilización y manejo del endoscopio y la toma de biopsias de las diferentes porciones del aparato digestivo, con fines diagnósticos. Además, se pretende darle a conocer las patologías concretas de esta especialidad que puede encontrar en la práctica clínica profesional y ponerle en contacto con casos clínicos representativos, tomados de la práctica clínica, para estar en condiciones de enfrentarse a

Subjects

endoscopy | endoscopy | colonoscopia | colonoscopia | gato | gato | medicina interna | medicina interna | duodenoscopy | duodenoscopy | gastrointestinal | gastrointestinal | internal medicine | internal medicine | ía Animal | ía Animal | veterinary | veterinary | small animals | small animals | perro | perro | veterinaria | veterinaria | gastroscopia | gastroscopia | gastroenterology | gastroenterology | gastroenterologia | gastroenterologia | digestive | digestive | colonoscopy | colonoscopy | digestivo | digestivo | duodenoscopia | duodenoscopia | ños animales | ños animales | dog | dog | cat | cat | í (guionista) | í (guionista) | endoscopia | endoscopia | gastroscopy | gastroscopy

License

http://creativecommons.org/licenses/by-nc-sa/3.0/

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22.903 Photon and Neutron Scattering Spectroscopy and Its Applications in Condensed Matter (MIT) 22.903 Photon and Neutron Scattering Spectroscopy and Its Applications in Condensed Matter (MIT)

Description

The purpose of this course is to discuss modern techniques of generation of x-ray photons and neutrons and then follow with selected applications of newly developed photon and neutron scattering spectroscopic techniques to investigations of properties of condensed matter which are of interest to nuclear engineers. The purpose of this course is to discuss modern techniques of generation of x-ray photons and neutrons and then follow with selected applications of newly developed photon and neutron scattering spectroscopic techniques to investigations of properties of condensed matter which are of interest to nuclear engineers.

Subjects

Nuclear engineering | Nuclear engineering | photon | photon | neutron | neutron | scattering | scattering | spectroscopy | spectroscopy | neutron sources | neutron sources | photon sources | photon sources | neutron scattering theory | neutron scattering theory | light and X-ray scattering theory | light and X-ray scattering theory | linear response theory | linear response theory | inelastic neutron scattering spectroscopy | inelastic neutron scattering spectroscopy | quasielastic neutron scattering spectroscopy | quasielastic neutron scattering spectroscopy | photon correlation spectroscopy | photon correlation spectroscopy | inelastic X-ray scattering spectroscopy | inelastic X-ray scattering spectroscopy

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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3.014 Materials Laboratory (MIT) 3.014 Materials Laboratory (MIT)

Description

This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre

Subjects

electron | electron | electronic properties | electronic properties | magnetism | magnetism | magentic properties | magentic properties | structure | structure | crystal | crystal | lattice | lattice | energy | energy | thermodynamics | thermodynamics | differential scanning calorimetry (DSC) | differential scanning calorimetry (DSC) | x-ray diffraction (XRD) | x-ray diffraction (XRD) | scanning probe microscopy (AFM | scanning probe microscopy (AFM | STM) | STM) | scanning electron microscopy (SEM) | scanning electron microscopy (SEM) | UV/Vis | UV/Vis | Raman spectroscopy | Raman spectroscopy | FTIR spectroscopy | FTIR spectroscopy | x-ray photoelectron spectroscopy (XPS) | x-ray photoelectron spectroscopy (XPS) | vibrating sample magnetometry (VSM) | vibrating sample magnetometry (VSM) | dynamic light scattering (DLS) | dynamic light scattering (DLS) | phonon | phonon | quantum | quantum | quantum mechanics | quantum mechanics | radiation | radiation | battery | battery | fuel cell | fuel cell | ferromagnetism | ferromagnetism | ferromagnetic | ferromagnetic | polymer | polymer | glass | glass | corrosion | corrosion

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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3.014 Materials Laboratory (MIT) 3.014 Materials Laboratory (MIT)

Description

This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre This course is a required sophomore subject in the Department of Materials Science and Engineering, designed to be taken in conjunction with the core lecture subject 3.012 Fundamentals of Materials Science and Engineering. The laboratory subject combines experiments illustrating the principles of quantum mechanics, thermodynamics and structure with intensive oral and written technical communication practice. Specific topics include: experimental exploration of the connections between energetics, bonding and structure of materials, and application of these principles in instruments for materials characterization; demonstration of the wave-like nature of electrons; hands-on experience with techniques to quantify energy (DSC), bonding (XPS, AES, FTIR, UV/Vis and force spectroscopy), and degre

Subjects

electron | electron | electronic properties | electronic properties | magnetism | magnetism | magentic properties | magentic properties | structure | structure | crystal | crystal | lattice | lattice | energy | energy | thermodynamics | thermodynamics | differential scanning calorimetry (DSC) | differential scanning calorimetry (DSC) | x-ray diffraction (XRD) | x-ray diffraction (XRD) | scanning probe microscopy (AFM | scanning probe microscopy (AFM | STM) | STM) | scanning electron microscopy (SEM) | scanning electron microscopy (SEM) | UV/Vis | UV/Vis | Raman spectroscopy | Raman spectroscopy | FTIR spectroscopy | FTIR spectroscopy | x-ray photoelectron spectroscopy (XPS) | x-ray photoelectron spectroscopy (XPS) | vibrating sample magnetometry (VSM) | vibrating sample magnetometry (VSM) | dynamic light scattering (DLS) | dynamic light scattering (DLS) | phonon | phonon | quantum | quantum | quantum mechanics | quantum mechanics | radiation | radiation | battery | battery | fuel cell | fuel cell | ferromagnetism | ferromagnetism | ferromagnetic | ferromagnetic | polymer | polymer | glass | glass | corrosion | corrosion

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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O'Donovan Rossa funeral committee O'Donovan Rossa funeral committee

Description

Subjects

ireland | ireland | dublin | dublin | funeral | funeral | michaelslater | michaelslater | leinster | leinster | parnellsquare | parnellsquare | gardenofremembrance | gardenofremembrance | jamescasey | jamescasey | codublin | codublin | 100yearsago | 100yearsago | glasnevincemetery | glasnevincemetery | jamestobin | jamestobin | cathalbrugha | cathalbrugha | odonovanrossa | odonovanrossa | eamondevalera | eamondevalera | tomclarke | tomclarke | rutlandsquare | rutlandsquare | arthurgriffith | arthurgriffith | thomasjclarke | thomasjclarke | johnlarkin | johnlarkin | jameswhelan | jameswhelan | josephkelly | josephkelly | jeremiahodonovanrossa | jeremiahodonovanrossa | michaelmcginn | michaelmcginn | countessmarkievicz | countessmarkievicz | josephmurray | josephmurray | williamcullen | williamcullen | locationidentified | locationidentified | josephmcguinness | josephmcguinness | peopleidentified | peopleidentified | keoghbrothers | keoghbrothers | keoghcollection | keoghcollection | rotundagardens | rotundagardens | majorjohnmacbride | majorjohnmacbride | martinconlon | martinconlon | dateidentified | dateidentified | 10september1831 | 10september1831 | funeralcommittee | funeralcommittee | 29june1915 | 29june1915 | 100ishyearsago | 100ishyearsago | backrowjko’reilly | backrowjko’reilly | ptkeohane | ptkeohane | diarmuidlynch | diarmuidlynch | commandanteamonndevalera | commandanteamonndevalera | brparsons | brparsons | johno’mahony | johno’mahony | wo’learycurtis | wo’learycurtis | thirdrowcommandantgeneralthomasmacdonagh | thirdrowcommandantgeneralthomasmacdonagh | jjo’kellysceilg | jjo’kellysceilg | councillorrichardo’carroll | councillorrichardo’carroll | jfarrentreasurerdublintradescouncil | jfarrentreasurerdublintradescouncil | seamusbuggy | seamusbuggy | seanmacgadhra | seanmacgadhra | henrynichollsbabai | henrynichollsbabai | jlawlorvicepresidentdublintradescouncil | jlawlorvicepresidentdublintradescouncil | williamo’brienexpresidentdublintradescouncil | williamo’brienexpresidentdublintradescouncil | tfarrenpresidentdublintradescouncil | tfarrenpresidentdublintradescouncil | secondrowmissjwalsh | secondrowmissjwalsh | mrscholohan | mrscholohan | bhathairofoghludha | bhathairofoghludha | johnrreynoldsfaa | johnrreynoldsfaa | commandanteamonndaly | commandanteamonndaly | seamusoconchubhair | seamusoconchubhair | peadarmcnally | peadarmcnally | jamesstritch | jamesstritch | mrstomclarke | mrstomclarke | misssmacmahon | misssmacmahon | missbcassidy | missbcassidy | fourthrowmaireniraghnaill | fourthrowmaireniraghnaill | mrsco’moore | mrsco’moore | thomasmeldon | thomasmeldon | briano’higginsbriannabansan | briano’higginsbriannabansan | missbwalsh | missbwalsh | mrsjosephmcguinness | mrsjosephmcguinness

License

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Ryan Aeronautical Image

Description

Subjects

aviation | aircraft | airplane | aerialdrone | drone | unmannedaircraft | unmannedairvehicle | uav | reconnaissanceaircraft | reconnaissance | teledyne | ryan | teledyneryan | teledyneryanyqm98compasscope | ryanyqm98compasscope | yqm98 | compasscope | yqm98compasscope | yqm98acompasscoper | yqm98a | compasscoper | ryanyqm98compasscoper | ryanyqm98acompasscoper | yqm98compasscoper | coper | ryanyqm98rtern | yqm98rtern | ryanyqm98artern | yqm98artern | rtern | garrettairesearch | garrett | garrettatf3 | atf3 | garrettf104 | f104 | garrettyf104ga100 | yf104ga100 | f104ga100

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3.91 Mechanical Behavior of Plastics (MIT) 3.91 Mechanical Behavior of Plastics (MIT)

Description

This course is aimed at presenting the concepts underlying the response of polymeric materials to applied loads. These will include both the molecular mechanisms involved and the mathematical description of the relevant continuum mechanics. It is dominantly an "engineering" subject, but with an atomistic flavor. It covers the influence of processing and structure on mechanical properties of synthetic and natural polymers: Hookean and entropic elastic deformation, linear viscoelasticity, composite materials and laminates, yield and fracture. This course is aimed at presenting the concepts underlying the response of polymeric materials to applied loads. These will include both the molecular mechanisms involved and the mathematical description of the relevant continuum mechanics. It is dominantly an "engineering" subject, but with an atomistic flavor. It covers the influence of processing and structure on mechanical properties of synthetic and natural polymers: Hookean and entropic elastic deformation, linear viscoelasticity, composite materials and laminates, yield and fracture.

Subjects

plastics; synthetic high polymers; viscoelastic phenomena; viscoelastic and strength properties; mechanical property evaluation; plastics fabrication methods | plastics; synthetic high polymers; viscoelastic phenomena; viscoelastic and strength properties; mechanical property evaluation; plastics fabrication methods | plastics | plastics | synthetic high polymers | synthetic high polymers | viscoelastic phenomena | viscoelastic phenomena | viscoelastic and strength properties | viscoelastic and strength properties | mechanical property evaluation | mechanical property evaluation | plastics fabrication methods | plastics fabrication methods

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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3.91J Mechanical Behavior of Plastics (MIT) 3.91J Mechanical Behavior of Plastics (MIT)

Description

Relation among chemical composition, physical structure, and mechanical behavior of plastics or synthetic high polymers. Study of types of polymers; fundamentals of viscoelastic phenomena such as creep, stress relaxation, stress rupture, mechanical damping, impact; effects of chemical composition and structure on viscoelastic and strength properties; methods of mechanical property evaluation. Influences of plastics fabrication methods. Emphasis on recent research techniques and results. Individual laboratory projects investigating problems related to current research. Relation among chemical composition, physical structure, and mechanical behavior of plastics or synthetic high polymers. Study of types of polymers; fundamentals of viscoelastic phenomena such as creep, stress relaxation, stress rupture, mechanical damping, impact; effects of chemical composition and structure on viscoelastic and strength properties; methods of mechanical property evaluation. Influences of plastics fabrication methods. Emphasis on recent research techniques and results. Individual laboratory projects investigating problems related to current research.

Subjects

plastics | | plastics | | synthetic high polymers | | synthetic high polymers | | viscoelastic phenomena | | viscoelastic phenomena | | viscoelastic and strength properties | | viscoelastic and strength properties | | mechanical property evaluation | | mechanical property evaluation | | plastics fabrication methods | plastics fabrication methods | plastics | plastics | synthetic high polymers | synthetic high polymers | viscoelastic phenomena | viscoelastic phenomena | viscoelastic and strength properties | viscoelastic and strength properties | mechanical property evaluation | mechanical property evaluation | 3.91 | 3.91 | 1.593 | 1.593

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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20.309 Biological Engineering II: Instrumentation and Measurement (MIT) 20.309 Biological Engineering II: Instrumentation and Measurement (MIT)

Description

Includes audio/video content: AV special element video. This course covers sensing and measurement for quantitative molecular/cell/tissue analysis, in terms of genetic, biochemical, and biophysical properties. Methods include light and fluorescence microscopies; electro-mechanical probes such as atomic force microscopy, laser and magnetic traps, and MEMS devices; and the application of statistics, probability and noise analysis to experimental data. Enrollment preference is given to juniors and seniors. Includes audio/video content: AV special element video. This course covers sensing and measurement for quantitative molecular/cell/tissue analysis, in terms of genetic, biochemical, and biophysical properties. Methods include light and fluorescence microscopies; electro-mechanical probes such as atomic force microscopy, laser and magnetic traps, and MEMS devices; and the application of statistics, probability and noise analysis to experimental data. Enrollment preference is given to juniors and seniors.

Subjects

DNA analysis | DNA analysis | Fourier analysis | Fourier analysis | FFT | FFT | DNA melting | DNA melting | electronics | electronics | microscopy | microscopy | microscope | microscope | probes | probes | biology | biology | atomic force microscope | atomic force microscope | AFM | AFM | scanning probe microscope | scanning probe microscope | image processing | image processing | MATLAB | MATLAB | convolution | convolution | optoelectronics | optoelectronics | rheology | rheology | fluorescence | fluorescence | noise | noise | detector | detector | optics | optics | diffraction | diffraction | optical trap | optical trap | 3D | 3D | 3-D | 3-D | three-dimensional imaging | three-dimensional imaging | visualization | visualization

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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Gothic revival castle Gothic revival castle

Description

Subjects

china | china | ireland | ireland | india | india | cogalway | cogalway | northumberland | northumberland | famine | famine | phoenixpark | phoenixpark | connaught | connaught | johnnash | johnnash | 1811 | 1811 | stillorgan | stillorgan | mrsball | mrsball | fieldmarshal | fieldmarshal | nationallibraryofireland | nationallibraryofireland | conventschool | conventschool | johnfoley | johnfoley | chillinghamcastle | chillinghamcastle | chapoo | chapoo | lawrencecollection | lawrencecollection | loughcutracastle | loughcutracastle | viscountgort | viscountgort | locationidentified | locationidentified | stereographicnegatives | stereographicnegatives | jamessimonton | jamessimonton | frederickhollandmares | frederickhollandmares | viscountgough | viscountgough | 7thviscountgort | 7thviscountgort | thestereopairsphotographcollection | thestereopairsphotographcollection | johnfortunelawrence | johnfortunelawrence | williammervynlawrence | williammervynlawrence | captainthehongeorgegough | captainthehongeorgegough | mrcrace | mrcrace | verekerfamily | verekerfamily | 3rdlordgort | 3rdlordgort | encumberedestatescourt | encumberedestatescourt | sthelensbooterstown | sthelensbooterstown

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The Apollo 9 Astronauts The Apollo 9 Astronauts

Description

Subjects

scott | scott | flag | flag | aviation | aviation | astronaut | astronaut | nasa | nasa | astronauts | astronauts | rocket | rocket | boeing | boeing | kennedyspacecenter | kennedyspacecenter | capecanaveral | capecanaveral | ksc | ksc | douglas | douglas | apollo | apollo | spacesuit | spacesuit | aerospace | aerospace | saturnv | saturnv | davescott | davescott | grumman | grumman | spaceflight | spaceflight | projectapollo | projectapollo | spaceexploration | spaceexploration | naa | naa | nationalaeronauticsandspaceadministration | nationalaeronauticsandspaceadministration | davidscott | davidscott | northamericanaviation | northamericanaviation | mannedspaceflight | mannedspaceflight | rustyschweickart | rustyschweickart | apollo9 | apollo9 | apolloproject | apolloproject | apolloprogram | apolloprogram | douglasaircraft | douglasaircraft | lc39a | lc39a | launchcomplex39 | launchcomplex39 | lc39 | lc39 | saturnrocket | saturnrocket | mcdivitt | mcdivitt | northamericanrockwell | northamericanrockwell | launchcomplex39a | launchcomplex39a | davidrscott | davidrscott | schweickart | schweickart | douglasaircraftcompany | douglasaircraftcompany | apolloix | apolloix | jimmcdivitt | jimmcdivitt | jamesmcdivitt | jamesmcdivitt | jamesamcdivitt | jamesamcdivitt | russelllschweickart | russelllschweickart

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3.20 Materials at Equilibrium (SMA 5111) (MIT) 3.20 Materials at Equilibrium (SMA 5111) (MIT)

Description

Material covered in this course includes the following topics: Laws of thermodynamics: general formulation and applications to mechanical, electromagnetic and electrochemical systems, solutions, and phase diagrams Computation of phase diagrams Statistical thermodynamics and relation between microscopic and macroscopic properties, including ensembles, gases, crystal lattices, phase transitions Applications to phase stability and properties of mixtures Computational modeling Interfaces This course was also taught as part of the Singapore-MIT Alliance (SMA) programme as course number SMA 5111 (Materials at Equilibrium). Material covered in this course includes the following topics: Laws of thermodynamics: general formulation and applications to mechanical, electromagnetic and electrochemical systems, solutions, and phase diagrams Computation of phase diagrams Statistical thermodynamics and relation between microscopic and macroscopic properties, including ensembles, gases, crystal lattices, phase transitions Applications to phase stability and properties of mixtures Computational modeling Interfaces This course was also taught as part of the Singapore-MIT Alliance (SMA) programme as course number SMA 5111 (Materials at Equilibrium).

Subjects

thermodynamics | thermodynamics | mechanical | mechanical | electromagnetic and electrochemical systems | electromagnetic and electrochemical systems | phase diagrams | phase diagrams | Statistical thermodynamics | Statistical thermodynamics | microscopic and macroscopic properties | microscopic and macroscopic properties | ensembles | ensembles | gases | gases | crystal lattices | crystal lattices | phase transitions | phase transitions | phase stability | phase stability | properties of mixtures | properties of mixtures | Computational modeling | Computational modeling | Interfaces | Interfaces | mechanical | electromagnetic and electrochemical systems | mechanical | electromagnetic and electrochemical systems | Computational modeling; Interfaces | Computational modeling; Interfaces | mechanical systems | mechanical systems | electromagnetic systems | electromagnetic systems | electrochemical systems | electrochemical systems | laws of thermodynamics | laws of thermodynamics | solutions | solutions | microscopic properties | microscopic properties | macroscopic properties | macroscopic properties

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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3.071 Amorphous Materials (MIT) 3.071 Amorphous Materials (MIT)

Description

This course discusses the fundamental material science behind amorphous solids, or non-crystalline materials. It covers formation of amorphous solids; amorphous structures and their electrical and optical properties; and characterization methods and technical applications. This course discusses the fundamental material science behind amorphous solids, or non-crystalline materials. It covers formation of amorphous solids; amorphous structures and their electrical and optical properties; and characterization methods and technical applications.

Subjects

glass | glass | amorphous solid | amorphous solid | mechanical and optical properties | mechanical and optical properties | metastable | metastable | silica | silica | ideal crystals | ideal crystals | network formers | network formers | modifiers | modifiers | intermediates | intermediates | alkali silicate glass | alkali silicate glass | amorphous semiconductors | amorphous semiconductors | metallic glass | metallic glass | glass forming theory | glass forming theory | crystallization | crystallization | thermodynamics of nucleation | thermodynamics of nucleation | potential energy landscape | potential energy landscape | Zachariasen’s rules | Zachariasen’s rules | kinetic theory | kinetic theory | network topology theory | network topology theory | laboratory glass transition | laboratory glass transition | glass forming ability parmaters | glass forming ability parmaters | performance metrics | performance metrics | GST phase change alloy | GST phase change alloy | PCM | PCM | phase change memory | phase change memory | data storage | data storage | pitch drop experiment | pitch drop experiment | temperature dependence | temperature dependence | viscous flow | viscous flow | stron v. fragile liquids | stron v. fragile liquids | non- newtonian behavior | non- newtonian behavior | viscometry | viscometry | linear elasticity | linear elasticity | Newtonian viscosity | Newtonian viscosity | elasticity | elasticity | viscosity | viscosity | glass shaping | glass shaping | relaxation | relaxation | mechanical properties | mechanical properties | glass stregthening | glass stregthening | electrical properties | electrical properties | transport properties | transport properties | macroelectronics | macroelectronics | optical properties | optical properties | optical fibers | optical fibers | waveguides | waveguides | amorphous state | amorphous state

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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AL-88A Al Menasco Album Image_000014

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airplane | aircraft | aviation | pirate | barnstorming | c4 | artsmith | menascoc4 | menascopirate | x962y | nx962y | lockheedbrothersaircraftcorporation | lockheedbrothers | olympicduofour | olympicduo4 | duofour | duo4 | menascomotorscompany | menascomotors | menascoc4pirate | c4pirate | albertmenasco | lougheadbrothersaircraftcorporation | lougheadbrothersaircraft | lougheadbrothers | lockheedbrothersaircraft

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5.33 Advanced Chemical Experimentation and Instrumentation (MIT) 5.33 Advanced Chemical Experimentation and Instrumentation (MIT)

Description

5.33 focuses on advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry, illustrated through molecular spectroscopy. The written and oral presentation of experimental results is also emphasized in the course.AcknowledgementsThe materials for 5.33 reflect the work of many faculty members associated with this course over the years. WARNING NOTICEThe experiments described in these materials are potentially hazardous and require a high level of safety training, special facilities and equipment, and supervision by appropriate individuals. You bear the sole responsibility, liability, and risk for the implementation of such safety procedures and measures. MIT shall have no responsibility, liability, or risk for the content or imp 5.33 focuses on advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry, illustrated through molecular spectroscopy. The written and oral presentation of experimental results is also emphasized in the course.AcknowledgementsThe materials for 5.33 reflect the work of many faculty members associated with this course over the years. WARNING NOTICEThe experiments described in these materials are potentially hazardous and require a high level of safety training, special facilities and equipment, and supervision by appropriate individuals. You bear the sole responsibility, liability, and risk for the implementation of such safety procedures and measures. MIT shall have no responsibility, liability, or risk for the content or imp

Subjects

advance chemical experimentation | advance chemical experimentation | chemistry laboratory | chemistry laboratory | chemistry lab | chemistry lab | molecular spectroscopy | molecular spectroscopy | acetylene | acetylene | magnetic resonance spectroscopy | magnetic resonance spectroscopy | ESR | ESR | time-resolved | time-resolved | electronic spectroscopy | electronic spectroscopy | nitrogen scission | nitrogen scission | molybdenum (III) xylidine | molybdenum (III) xylidine

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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Happy 8th Birthday, Flickr Commons ! 7 days to go (LOC) Happy 8th Birthday, Flickr Commons ! 7 days to go (LOC)

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sf | sf | sanfrancisco | sanfrancisco | california | california | bridge | bridge | b | b | color | color | colour | colour | america | america | project | project | golden | golden | jon | jon | gate | gate | san | san | francisco | francisco | ellis | ellis | m | m | highway1 | highway1 | goldengatebridge | goldengatebridge | goldengate | goldengate | carol | carol | artdeco | artdeco | sanfranciscobay | sanfranciscobay | loc | loc | libraryofcongress | libraryofcongress | suspensionbridge | suspensionbridge | sfbay | sfbay | strauss | strauss | us101 | us101 | morrow | morrow | thegoldengate | thegoldengate | josephstrauss | josephstrauss | sr1 | sr1 | fransico | fransico | lovelace | lovelace | californiastateroute1 | californiastateroute1 | josephbstrauss | josephbstrauss | thegoldengatebridge | thegoldengatebridge | stateroute1 | stateroute1 | usroute101 | usroute101 | charlesellis | charlesellis | irvingfmorrow | irvingfmorrow | irvingmorrow | irvingmorrow | highsmiths | highsmiths | charlesaltonellis | charlesaltonellis | goldengatebridgeandhighwaydistrict | goldengatebridgeandhighwaydistrict | charlesaellis | charlesaellis | happybirthdayflickrcommons | happybirthdayflickrcommons

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STS-82 STS-82

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Subjects

1997 | 1997 | discovery | discovery | spaceshuttle | spaceshuttle | missionpatch | missionpatch | february11 | february11 | hst | hst | february21 | february21 | marklee | marklee | hubblespacetelescope | hubblespacetelescope | stevensmith | stevensmith | josephtanner | josephtanner | scotthorowitz | scotthorowitz | stevenhawley | stevenhawley | sts82 | sts82 | kennethbowersox | kennethbowersox | gregoryharbaugh | gregoryharbaugh

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Edinburgh. Sir Walter Scott Monument

Description

Collection: A. D. White Architectural Photographs, Cornell University Library Accession Number: 15/5/3090.01239 Title: Edinburgh. Sir Walter Scott Monument Photographer: George Washington Wilson (Scottish, 1823-1893) Architect of Scott Memorial: E. Meikle Kemp (1795-1844) Monument date: 1840-1846 Photograph date: ca. 1865-ca. 1885 Location: Europe: United Kingdom; Edinburgh Materials: albumen print Image: 7 1/2 x 11 1/2 in.; 19.05 x 29.21 cm Provenance: Gift of Andrew Dickson White Persistent URI: hdl.handle.net/1813.001/5tdh There are no known copyright restrictions on this image. The digital file is owned by the Cornell University Library which is making it freely available with the request that, when possible, the Library be credited as its source. We had some help with the geocoding from Web Services by Yahoo!

Subjects

cornelluniversitylibrary | sirwalterscottmemorialedinburghscotland | princesstreetedinburghscotland | edinburghcastleedinburghscotland | nationalgalleryofscotlandedinburghscotland | cityscapes | urbanviews | pedestrians | omnibuses | carriages | awnings | urbanparks | wroughtiron | monuments | memorials | crockets | spires | flyingbuttresses | museums | publicbuildings | castles | fortifications | hills | railroadstations | culidentifier:value=155309001239 | culidentifier:lunafield=accessionnumber

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5.35 Introduction to Experimental Chemistry (MIT) 5.35 Introduction to Experimental Chemistry (MIT)

Description

This course is the first part of a modular sequence of increasingly sophisticated (and challenging) laboratory courses required of all Chemistry majors: 5.35 Introduction to Experimental Chemistry, 5.36 Biochemistry and Organic Laboratory, 5.37 Organic and Inorganic Laboratory, and 5.38 Physical Chemistry Laboratory. This course provides students with a survey of spectroscopy, and introduces synthesis of coordination compounds and kinetics. This class is part of the new laboratory curriculum in the MIT Department of Chemistry. Undergraduate Research-Inspired Experimental Chemistry Alternatives (URIECA) introduces students to cutting edge research topics in a modular format.   AcknowledgementsProfessor Nelson and Dr. Twardowski would like to acknowledge the contribution This course is the first part of a modular sequence of increasingly sophisticated (and challenging) laboratory courses required of all Chemistry majors: 5.35 Introduction to Experimental Chemistry, 5.36 Biochemistry and Organic Laboratory, 5.37 Organic and Inorganic Laboratory, and 5.38 Physical Chemistry Laboratory. This course provides students with a survey of spectroscopy, and introduces synthesis of coordination compounds and kinetics. This class is part of the new laboratory curriculum in the MIT Department of Chemistry. Undergraduate Research-Inspired Experimental Chemistry Alternatives (URIECA) introduces students to cutting edge research topics in a modular format.   AcknowledgementsProfessor Nelson and Dr. Twardowski would like to acknowledge the contribution

Subjects

Chemistry | Chemistry | experimental chemistry | experimental chemistry | spectroscopy | spectroscopy | synthesis of coordination compounds and kinetics | synthesis of coordination compounds and kinetics | IR Spectroscopy | IR Spectroscopy | IR Spectroscopy of Proteins | IR Spectroscopy of Proteins | 15 MHz NMR | 15 MHz NMR | 300 MHz | 300 MHz | Lambert-Beer | Lambert-Beer | Kinetics Measurements | Kinetics Measurements

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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5.33 Advanced Chemical Experimentation and Instrumentation (MIT) 5.33 Advanced Chemical Experimentation and Instrumentation (MIT)

Description

5.33 focuses on advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry, illustrated through molecular spectroscopy. The written and oral presentation of experimental results is also emphasized in the course. Acknowledgements The materials for 5.33 reflect the work of many faculty members associated with this course over the years. WARNING NOTICE The experiments described in these materials are potentially hazardous and require a high level of safety training, special facilities and equipment, and supervision by appropriate individuals. You bear the sole responsibility, liability, and risk for the implementation of such safety procedures and measures. MIT shall have no responsibility, liability, or risk for the content or impleme 5.33 focuses on advanced experimentation, with particular emphasis on chemical synthesis and the fundamentals of quantum chemistry, illustrated through molecular spectroscopy. The written and oral presentation of experimental results is also emphasized in the course. Acknowledgements The materials for 5.33 reflect the work of many faculty members associated with this course over the years. WARNING NOTICE The experiments described in these materials are potentially hazardous and require a high level of safety training, special facilities and equipment, and supervision by appropriate individuals. You bear the sole responsibility, liability, and risk for the implementation of such safety procedures and measures. MIT shall have no responsibility, liability, or risk for the content or impleme

Subjects

advance chemical experimentation | advance chemical experimentation | chemistry laboratory | chemistry laboratory | chemistry lab | chemistry lab | molecular spectroscopy | molecular spectroscopy | acetylene | acetylene | magnetic resonance spectroscopy | magnetic resonance spectroscopy | ESR | ESR | time-resolved | time-resolved | electronic spectroscopy | electronic spectroscopy | nitrogen scission | nitrogen scission | molybdenum (III) xylidine | molybdenum (III) xylidine

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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5.13 Organic Chemistry II (MIT) 5.13 Organic Chemistry II (MIT)

Description

This intermediate organic chemistry course focuses on the methods used to identify the structure of organic molecules, advanced principles of organic stereochemistry, organic reaction mechanisms, and methods used for the synthesis of organic compounds. Additional special topics include illustrating the role of organic chemistry in biology, medicine, and industry. This intermediate organic chemistry course focuses on the methods used to identify the structure of organic molecules, advanced principles of organic stereochemistry, organic reaction mechanisms, and methods used for the synthesis of organic compounds. Additional special topics include illustrating the role of organic chemistry in biology, medicine, and industry.

Subjects

intermediate organic chemistry | intermediate organic chemistry | organic molecules | organic molecules | stereochemistry | stereochemistry | reaction mechanisms | reaction mechanisms | synthesis of organic compounds | synthesis of organic compounds | synthesis | synthesis | structure determination | structure determination | mechanism | mechanism | reactivity | reactivity | functional groups | functional groups | NMR | NMR | spectroscopy | spectroscopy | spectrometry | spectrometry | structure elucidation | structure elucidation | infrared spectroscopy | infrared spectroscopy | nuclear magnetic resonance spectroscopy | nuclear magnetic resonance spectroscopy | reactive intermediates | reactive intermediates | carbocations | carbocations | radicals | radicals | aromaticity | aromaticity | conjugated systems | conjugated systems | molecular orbital theory | molecular orbital theory | pericyclic reactions | pericyclic reactions

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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6.728 Applied Quantum and Statistical Physics (MIT) 6.728 Applied Quantum and Statistical Physics (MIT)

Description

6.728 covers concepts in elementary quantum mechanics and statistical physics. The course introduces applied quantum physics and  emphasizes an experimental basis for quantum mechanics. Concepts covered include: Schrodinger's equation applied to the free particle, tunneling, the harmonic oscillator, and hydrogen atom, variational methods, Fermi-Dirac, Bose-Einstein, and Boltzmann distribution functions, and simple models for metals, semiconductors, and devices such as electron microscopes, scanning tunneling microscope, thermonic emitters, atomic force microscope, and others. 6.728 covers concepts in elementary quantum mechanics and statistical physics. The course introduces applied quantum physics and  emphasizes an experimental basis for quantum mechanics. Concepts covered include: Schrodinger's equation applied to the free particle, tunneling, the harmonic oscillator, and hydrogen atom, variational methods, Fermi-Dirac, Bose-Einstein, and Boltzmann distribution functions, and simple models for metals, semiconductors, and devices such as electron microscopes, scanning tunneling microscope, thermonic emitters, atomic force microscope, and others.

Subjects

applied quantum physics | applied quantum physics | quantum physics | quantum physics | statistical physics | statistical physics | quantum mechanics | quantum mechanics | Schrodinger | Schrodinger | tunneling | tunneling | harmonic oscillator | harmonic oscillator | hydrogen atom | hydrogen atom | variational methods | variational methods | Fermi-Dirac | Fermi-Dirac | Bose-Einstein | Bose-Einstein | Boltzmann | Boltzmann | distribution function | distribution function | electron microscope | electron microscope | scanning tunneling microscope | scanning tunneling microscope | thermonic emitter | thermonic emitter | atomic force microscope | atomic force microscope

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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Índia Índia

Description

Subjects

fundaçãocaloustegulbenkian | fundaçãocaloustegulbenkian | gulbenkian | gulbenkian | bibliotecadearte | bibliotecadearte | biblioteca | biblioteca | arte | arte | francismilletrogers | francismilletrogers | francis | francis | millet | millet | rogers | rogers | cochim | cochim | índia | índia | igrejadesãofrancisco | igrejadesãofrancisco | igreja | igreja | sãofrancisco | sãofrancisco | túmulo | túmulo | vascodagama | vascodagama

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21L.704 Studies in Poetry: "Does Poetry Matter" (MIT) 21L.704 Studies in Poetry: "Does Poetry Matter" (MIT)

Description

The landscape we will explore is the troublesome one of the relevance, impact, and importance of poetry in a troubled modern world. We will read both poetry and prose by several substantial modern writers, each of whom confronted the question that is the subject's title. The landscape we will explore is the troublesome one of the relevance, impact, and importance of poetry in a troubled modern world. We will read both poetry and prose by several substantial modern writers, each of whom confronted the question that is the subject's title.

Subjects

Poetry | Robert Lowell | Denise Levertov | Adrienne Rich | Seamus Heaney | Robert Pinsky | Billy Collins | Jean Monahan | John Hodgen | Lloyd Schwartz | Steve Tapscott | Rita Dove | Neil Astley | Poetry | Robert Lowell | Denise Levertov | Adrienne Rich | Seamus Heaney | Robert Pinsky | Billy Collins | Jean Monahan | John Hodgen | Lloyd Schwartz | Steve Tapscott | Rita Dove | Neil Astley | Poetry | | Poetry | | Robert Lowell | | Robert Lowell | | Denise Levertov | | Denise Levertov | | Adrienne Rich | | Adrienne Rich | | Seamus Heaney | | Seamus Heaney | | Robert Pinsky | | Robert Pinsky | | Billy Collins | | Billy Collins | | Jean Monahan | | Jean Monahan | | John Hodgen | | John Hodgen | | Lloyd Schwartz | | Lloyd Schwartz | | Steve Tapscott | | Steve Tapscott | | Rita Dove | | Rita Dove | | Neil Astley | Neil Astley | Adrienne Rich | Adrienne Rich | Billy Collins | Billy Collins | Denise Levertow | Denise Levertow | Jean Monahan | Jean Monahan | John Hodgen | John Hodgen | Lloyd Schwartz | Lloyd Schwartz | Poetry | Poetry | Rita Dove | Rita Dove | Robert Lowell | Robert Lowell | Robert Pinsky | Robert Pinsky | Seamus Heaney | Seamus Heaney | Steve Tapscott | Steve Tapscott

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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