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Description
This course will introduce students to the principles, performance, and challenges of electrochemical and photoelectrochemical devices. This will be done in the context of global energy needs and challenges, and will include an overview of different energy technologies. This course will introduce students to the principles, performance, and challenges of electrochemical and photoelectrochemical devices. This will be done in the context of global energy needs and challenges, and will include an overview of different energy technologies.Subjects
electrochemistry | electrochemistry | battery | battery | fuel cell | fuel cell | energy | energy | electrodes | electrodes | solid oxide fuel cell | solid oxide fuel cell | lithium ion battery | lithium ion battery | proton exchange membrane | proton exchange membrane | electrical double layer | electrical double layer | chemical equilibrium | chemical equilibrium | chemical potential | chemical potential | catalysis | catalysis | Butler-Volmer model | Butler-Volmer model | electrochemical impedance spectroscopy | electrochemical impedance spectroscopy | kinetics | kinetics | surface reactivity | surface reactivityLicense
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadata3.014 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 degreSubjects
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 | corrosionLicense
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadata3.014 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 degreSubjects
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 | corrosionLicense
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadata3.22 Mechanical Behavior of Materials (MIT) 3.22 Mechanical Behavior of Materials (MIT)
Description
Here we will learn about the mechanical behavior of structures and materials, from the continuum description of properties to the atomistic and molecular mechanisms that confer those properties to all materials. We will cover elastic and plastic deformation, creep, fracture and fatigue of materials including crystalline and amorphous metals, semiconductors, ceramics, and (bio)polymers, and will focus on the design and processing of materials from the atomic to the macroscale to achieve desired mechanical behavior. We will cover special topics in mechanical behavior for material systems of your choice, with reference to current research and publications. Here we will learn about the mechanical behavior of structures and materials, from the continuum description of properties to the atomistic and molecular mechanisms that confer those properties to all materials. We will cover elastic and plastic deformation, creep, fracture and fatigue of materials including crystalline and amorphous metals, semiconductors, ceramics, and (bio)polymers, and will focus on the design and processing of materials from the atomic to the macroscale to achieve desired mechanical behavior. We will cover special topics in mechanical behavior for material systems of your choice, with reference to current research and publications.Subjects
Phenomenology | Phenomenology | mechanical behavior | mechanical behavior | material structure | material structure | deformation | deformation | failure | failure | elasticity | elasticity | viscoelasticity | viscoelasticity | plasticity | plasticity | creep | creep | fracture | fracture | fatigue | fatigue | metals | metals | semiconductors | semiconductors | ceramics | ceramics | polymers | polymers | microstructure | microstructure | composition | composition | semiconductor diodes | semiconductor diodes | thin films | thin films | carbon nanotubes | carbon nanotubes | battery materials | battery materials | superelastic alloys | superelastic alloys | defect nucleation | defect nucleation | student projects | student projects | viral capsides | viral capsidesLicense
Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htmSite sourced from
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See all metadataFlywheels : an alternative energy storage method : presentation transcript
Description
This open educational resource was released through the Higher Education Academy Engineering Subject Centre Open Engineering Resources Pilot project. The project was funded by HEFCE and the JISC/HE Academy UKOER programme.Subjects
ukoer | engscoer | cc-by | leicester college | leicester college tech | leicestercollegeoer | engineering department | education | higher education | learning | kinetic | battery | energy | rotation | nqf l4 | mechanical principals | energy storage | flywheels | edexcel hn unit | kinetic battery | Engineering | H000License
Attribution 2.0 UK: England & Wales Attribution 2.0 UK: England & Wales http://creativecommons.org/licenses/by/2.0/uk/ http://creativecommons.org/licenses/by/2.0/uk/Site sourced from
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Auto-mitrailleuse blindée de l'armée américaine.Subjects
thegreatwar | greatwar | worldwarone | worldwari | wwi | firstworldwar | unitedstatesarmy | usarmy | newyorknationalguard | nyng | armoredcar | armouredcar | mackmodelab | macktruck | mackarmoredcar | 1starmoredmotorbattery | firstarmoredmotorbattery | 1stamb | nationalguardofnewyork | ngny | armoredcarb1 | b1License
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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=httphdllocgovlocpnpggbain24204License
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See all metadataHead, the Bathing Place, Bray, Co. Wicklow Head, the Bathing Place, Bray, Co. Wicklow
Description
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august | august | regatta | regatta | crowds | crowds | bray | bray | glassnegative | glassnegative | brayhead | brayhead | robertfrench | robertfrench | williamlawrence | williamlawrence | nationallibraryofireland | nationallibraryofireland | naylorscove | naylorscove | lawrencecollection | lawrencecollection | 19071914 | 19071914 | dublinandsoutheasternrailway | dublinandsoutheasternrailway | lawrencephotographicstudio | lawrencephotographicstudio | thelawrencephotographcollection | thelawrencephotographcollection | drummbatterytrain | drummbatterytrainLicense
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See all metadataMain guns of USS Florida Main guns of USS Florida
Description
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florida | florida | ussflorida | ussflorida | battleshipbb30 | battleshipbb30 | warships | warships | navalgunnery | navalgunnery | ships | ships | worldwari | worldwari | ship | ship | warship | warship | unitedstatesnavy | unitedstatesnavy | usnavy | usnavy | usn | usn | ussfloridabb30 | ussfloridabb30 | bb30 | bb30 | floridaclass | floridaclass | battleship | battleship | cagemast | cagemast | navalgun | navalgun | navalartillery | navalartillery | mainbattery | mainbattery | gunturret | gunturret | 12ingun | 12ingun | 12inchgun | 12inchgunLicense
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See all metadataSpreminjanje tokovnih krogov Changing circuits
Description
Oglej si risbo vsakega tokovnega kroga. Če misliš, da bo žarnica (žarnici) svetila, v okvirček ... Učni list lahko uporabite pri poskusu. Images of different circuits - decide if the light bulb is on or off.Subjects
znanstvene vede | sciences | naravoslovne vede | natural sciences | tehnologija | technology | tokokrog | circuit | žarnica | electric bulb | baterija | batteryLicense
http://creativecommons.org/licenses/by-nc-sa/2.5/si/ http://creativecommons.org/licenses/by-nc-sa/2.5/si/Site sourced from
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Armement d'un cuirassé américain, l'Arizona, avec ses 6 canons de 250 mm à l'arrière.Subjects
bleu | ship | warship | unitedstatesnavy | usnavy | usn | ussarizonabb39 | ussarizona | bb39 | pennsylvaniaclass | battleship | gunturret | turret | mainbattery | 14inchgun | 14ingun | navalartillery | navalgun | sunk | pearlharbor | ussarizonamemorial | arizonamemorialLicense
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Engine room on board the cargo ship ?St. Essylt', 1948 (TWAM ref. DS.JLT/4/PH/1/653/9/1). She was launched at the North Sands shipyard of J.L. Thompson & Sons, 15 September 1947. For a view of the launch see www.flickr.com/photos/twm_news/16433838515/. This vessel was fitted with a Doxford Engine. This set celebrates the achievements of the famous Sunderland shipbuilding firm Joseph L. Thompson & Sons. The company?s origins date back to 1846 when the firm was known as Robert Thompson & Sons. Robert Thompson senior died in 1860, leaving his second son Joseph Lowes Thompson in control. In 1870 the shipyard completed its last wooden vessel and was then adapted for iron shipbuilding. By 1880 the firm had expanded its operations over much of North Sands and in 1884 completed the construction of Manor Quay, which served as fitting out and repair facilities. For many years in the late nineteenth century the yard was the most productive in Sunderland and in 1894 had the fourth largest output of any shipyard in the world. The Depression affected the firm severely in the early 1930s and no vessels were launched from 1931 to 1934. However, during those years the company developed a hull design giving greater efficiency and economy in service. During the Second World War the prototype developed by Joseph L. Thompson & Sons proved so popular that it was used by the US Government as the basis of over 2,700 Liberty ships built at American shipyards between 1942 and 1945. After the War the North Sands shipyard went on to build many fine cargo ships, oil tankers and bulk carriers. Sadly the shipyard closed in 1979, although it briefly reopened in 1986 to construct the crane barge ITM Challenger. (Copyright) We're happy for you to share these digital images within the spirit of The Commons. Please cite 'Tyne & Wear Archives & Museums' when reusing. Certain restrictions on high quality reproductions and commercial use of the original physical version apply though; if you're unsure please email archives@twmuseums.org.ukSubjects
sunderland | shipbuilding | jlthompsonsonsltd | northsandssunderland | stessylt | cargoship | engineroom | doxfordengine | marineengineering | whiteoutline | mark | grain | blackandwhitephotograph | industrialheritage | industry | northsandsshipyard | archives | digitalimage | shipbuildingheritage | maritimeheritage | abstract | transportation | components | mechanical | engine | room | machine | 1948 | launched | 15september1947 | vessel | ship | robertthompsonsons | 1846 | robertthompsonsenior | josephlowesthompson | iron | northsands | operations | construction | production | development | structure | manorquay | fittingout | repairfacilities | shipyard | funnel | exhaustsystem | radarequipment | cabinheatingsystem | batteryroom | pilotscabin | accommodation | bar | rail | sign | label | letters | pipe | wall | floor | ceiling | interior | bolt | vent | interesting | fascinating | unusual | northeastofengland | unitedkingdom | wonderful | glare | artificiallight | circuitLicense
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See all metadataSome Account of Some of the Bloody Deeds of Gen. Jackson
Description
Collection: Cornell University Collection of Political Americana, Cornell University Library Repository: Susan H. Douglas Political Americana Collection, #2214 Rare & Manuscript Collections, Cornell University Library, Cornell University Title: Some Account of Some of the Bloody Deeds of Gen. Jackson Political Party: Democratic Election Year: 1828 Date Made: ca. 1828 Measurement: Print: 22 x 14 in.; 55.88 x 35.56 cm Classification: Prints Persistent URI: hdl.handle.net/1813.001/5zj0 There are no known U.S. 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.Subjects
cornelluniversitylibrary | broadsides | editorials | jacksonandrew | warof1812 | executions | coffins | nativeamericans | neworleanslouisiana | assaultandbattery | murder | creekwar18131814 | massacres | culidentifier:value=2214br0053 | culidentifier:lunafield=idnumberLicense
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newyork | manhattan | batterypark | libraryofcongress | 1917 | arthurbalfour | xmlns:dc=httppurlorgdcelements11 | dc:identifier=httphdllocgovlocpnpggbain24346License
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newyork | manhattan | batterypark | libraryofcongress | 1917 | xmlns:dc=httppurlorgdcelements11 | dc:identifier=httphdllocgovlocpnpggbain24345License
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newyork | manhattan | batterypark | libraryofcongress | 1917 | arthurbalfour | xmlns:dc=httppurlorgdcelements11 | dc:identifier=httphdllocgovlocpnpggbain24342License
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Battery charger in black metal housing and in original cream and red cardboard box.. Maker: Stellar Components Ltd. Date: 1990 - 1999 - from the The Betty Smithers Design Collection at Staffordshire University.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/Site sourced from
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See all metadataInternal Battery for Toshiba Laptop Computer
Description
Internal battery for laptop. Maker: Toshiba - from the The Betty Smithers Design Collection at Staffordshire University.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/Site sourced from
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See all metadataMaking a power cell and a lemon battery
Description
Powerpoint presentation show photographs of the science students carrying out different experiments and activities: Making a power cell and a lemon batterySubjects
photographs | powerpoint | experiments | activities | power cell | lemon | battery | ppt | SCIENCES and MATHEMATICS | RLicense
Attribution-Noncommercial 2.0 UK: England & Wales Attribution-Noncommercial 2.0 UK: England & Wales http://creativecommons.org/licenses/by-nc/2.0/uk/ http://creativecommons.org/licenses/by-nc/2.0/uk/Site sourced from
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See all metadataAutomotive Diagnostic Simulations Batteries
Description
An interactive module using a simulated multimeter and vehicle system to help users learn the correct diagnostic process for finding faults. To do this, a sequence of screens that mirror the real-world process relating to automotive systems are used. The electrical test meter (multimeter) can be set to the appropriate range for a test, and then the leads of the meter moved to make connections to a circuit or representation of a system on a vehicle. The meter will then give readings that have to be interpreted by the user, who will then decide on the next test to carry out. The results of several tests will allow a diagnosis to be made. Incorrect settings and connections may result in the simulated meter being damaged! The process used and the actual result of the diagnostics will be assessSubjects
cars | automotive | ILRforSkills | mechanic | diagnostics | electrical | repairs | batteries | battery | ENGINEERING | XLicense
Attribution-ShareAlike 4.0 International Attribution-ShareAlike 4.0 International http://creativecommons.org/licenses/by-sa/4.0/ http://creativecommons.org/licenses/by-sa/4.0/Site sourced from
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See all metadata3.014 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 degreSubjects
electron | electronic properties | magnetism | magentic properties | structure | crystal | lattice | energy | thermodynamics | differential scanning calorimetry (DSC) | x-ray diffraction (XRD) | scanning probe microscopy (AFM | STM) | scanning electron microscopy (SEM) | UV/Vis | Raman spectroscopy | FTIR spectroscopy | x-ray photoelectron spectroscopy (XPS) | vibrating sample magnetometry (VSM) | dynamic light scattering (DLS) | phonon | quantum | quantum mechanics | radiation | battery | fuel cell | ferromagnetism | ferromagnetic | polymer | glass | corrosionLicense
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.htmSite sourced from
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See all metadata3.22 Mechanical Behavior of Materials (MIT)
Description
Here we will learn about the mechanical behavior of structures and materials, from the continuum description of properties to the atomistic and molecular mechanisms that confer those properties to all materials. We will cover elastic and plastic deformation, creep, fracture and fatigue of materials including crystalline and amorphous metals, semiconductors, ceramics, and (bio)polymers, and will focus on the design and processing of materials from the atomic to the macroscale to achieve desired mechanical behavior. We will cover special topics in mechanical behavior for material systems of your choice, with reference to current research and publications.Subjects
Phenomenology | mechanical behavior | material structure | deformation | failure | elasticity | viscoelasticity | plasticity | creep | fracture | fatigue | metals | semiconductors | ceramics | polymers | microstructure | composition | semiconductor diodes | thin films | carbon nanotubes | battery materials | superelastic alloys | defect nucleation | student projects | viral capsidesLicense
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.htmSite sourced from
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See all metadata3.014 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 degreSubjects
electron | electronic properties | magnetism | magentic properties | structure | crystal | lattice | energy | thermodynamics | differential scanning calorimetry (DSC) | x-ray diffraction (XRD) | scanning probe microscopy (AFM | STM) | scanning electron microscopy (SEM) | UV/Vis | Raman spectroscopy | FTIR spectroscopy | x-ray photoelectron spectroscopy (XPS) | vibrating sample magnetometry (VSM) | dynamic light scattering (DLS) | phonon | quantum | quantum mechanics | radiation | battery | fuel cell | ferromagnetism | ferromagnetic | polymer | glass | corrosionLicense
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.htmSite sourced from
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libraryofcongress | dc:identifier=httphdllocgovlocpnpggbain29309 | xmlns:dc=httppurlorgdcelements11 | twsims | thetuswsims | thetuswillrettesims | honorablethetuswsims | namesparentsgivetheirchildren | nannienanniekitrell | nanniekitrell | nannienanniekitrellsims | nanniekitrellsims | kitrell | sims | membersofushouseofrepresentatives | ushouseofrepresentatives | uscongress | 8thcongressionaldistrictoftennessee | mckinleyadministration | rooseveltadministration | taftadministration | wilsonadministration | simsact | boxing | fightfilms | censorship | cumberlanduniversity | savannahcollege | waynesborotennessee | lindentennessee | tennessee | politicians | lawyers | democrats | charlescglover | charlesglover | glover | riggsnationalbank | speakerofthehouse | jameschampclark | jamesclark | clark | assault | assaultandbattery | freespeech | protectedspeech | farragutsquare | rockcreekpark | thenationalzoo | nationalzoo | fonz | gloverpark | landpreservation | washingtondc | districtofcolumbia | bowties | photographer | edmonston | davidedmonton | dbedmonton | davidbedmonton | 1407fstreetnw | 1407fstreetnwwashingtondcLicense
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libraryofcongress | dc:identifier=httphdllocgovlocpnpggbain29654 | xmlns:dc=httppurlorgdcelements11 | newyorkrailways | transit | batterycars | streetcar | manhattan | newyorkcity | lowermanhattan | chambersstreet | chambersst | centrestreet | centrest | 1centrest | manhattanmunicipalbuilding | municipalbuilding | mckimmeadandwhite | mckimmeadwhite | williammkendall | williamkendall | kendall | beauxartsLicense
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