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C0002P0060

Description

Eye Swab

Subjects

svmsvet | cats | diagnostics | eyes | cat | feline | felines | ocular | ocularswab | c0002 | conjunctivalswab | eyeswab | diagnosticswab

License

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C0002P0061

Description

Eye swab

Subjects

svmsvet | cats | diagnostics | eyes | cat | feline | felines | ocular | ocularswab | c0002 | diagnosticswab | eyeswab | conjunctivalswab

License

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

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C0002P0060

Description

Eye Swab

Subjects

svmsvet | cats | diagnostics | eyes | cat | feline | felines | ocular | ocularswab | c0002 | conjunctivalswab | eyeswab | diagnosticswab

License

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

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Nottingham Vet School | FlickR

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C0002P0061

Description

Eye swab

Subjects

svmsvet | cats | diagnostics | eyes | cat | feline | felines | ocular | ocularswab | c0002 | diagnosticswab | eyeswab | conjunctivalswab

License

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

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MSc in EBHC: Introduction to the Practice of Evidence-Based Health Care

Description

Annette Pluddermann, Senior researcher DPCHS, gives an introduction to the Practice of Evidence-Based Health Care Wales; http://creativecommons.org/licenses/by-nc-sa/2.0/uk/

Subjects

evidence based healthcare | EBHC | Health | screening | diagnostics | Medicine | evidence based healthcare | EBHC | Health | screening | diagnostics | Medicine

License

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

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HST.512 Genomic Medicine (MIT) HST.512 Genomic Medicine (MIT)

Description

Includes audio/video content: AV lectures. This course reviews the key genomic technologies and computational approaches that are driving advances in prognostics, diagnostics, and treatment. Throughout the semester, emphasis will return to issues surrounding the context of genomics in medicine including: what does a physician need to know? what sorts of questions will s/he likely encounter from patients? how should s/he respond? Lecturers will guide the student through real world patient-doctor interactions. Outcome considerations and socioeconomic implications of personalized medicine are also discussed. The first part of the course introduces key basic concepts of molecular biology, computational biology, and genomics. Continuing in the informatics applications portion of the course, lec Includes audio/video content: AV lectures. This course reviews the key genomic technologies and computational approaches that are driving advances in prognostics, diagnostics, and treatment. Throughout the semester, emphasis will return to issues surrounding the context of genomics in medicine including: what does a physician need to know? what sorts of questions will s/he likely encounter from patients? how should s/he respond? Lecturers will guide the student through real world patient-doctor interactions. Outcome considerations and socioeconomic implications of personalized medicine are also discussed. The first part of the course introduces key basic concepts of molecular biology, computational biology, and genomics. Continuing in the informatics applications portion of the course, lec

Subjects

genomics | genomics | genomic medicine | genomic medicine | genetics | genetics | genomic measurement | genomic measurement | microarray | microarray | informatics | informatics | bioinformatics | bioinformatics | computational biology | computational biology | machine learning | machine learning | pharmacogenomics | pharmacogenomics | complex traits | complex traits | individual pharmacology | individual pharmacology | cancer diagnostics | cancer diagnostics | genetic disease | genetic disease | biomedical | biomedical | genomes | genomes | bioethics | bioethics | integrative genomics | integrative genomics | genomic technologies | genomic technologies

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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Emerging Infectious Diseases

Description

Professor Peter Horby is Senior Clinical Research Fellow. His research focusses on epidemic diseases such as Ebola and bird flu, and crosses the disciplines of basic science, medical science and public health. Influenza, SARS & Ebola Research on emerging infectious diseases can only be conducted during outbreaks. Although virology has improved, a well calibrated and effective public health response is often lacking. Epidemiological and clinical research as well as mathematical modelling will give us answers during the epidemics and help us provide better diagnostics and better treatments. Wales; http://creativecommons.org/licenses/by-nc-sa/2.0/uk/

Subjects

infectious disease | outbreak | ebola | bird flu | epidemic diseases | virology | diagnostics | treatments | infectious disease | outbreak | ebola | bird flu | epidemic diseases | virology | diagnostics | treatments

License

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

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15.795 Seminar in Operations Management (MIT) 15.795 Seminar in Operations Management (MIT)

Description

This seminar will explore the purposes and development of Technology Roadmaps for systematically mapping out possible development paths for various technological domains and the industries that build on them. Data of importance for such roadmaps include rates of innovation, key bottlenecks, physical limitations, improvement trendlines, corporate intent, and value chain and industry evolutionary paths. The course will build on ongoing work on the MIT Communications Technology Roadmap project, but will explore other domains selected from Nanotechnology, Bio-informatics, Geno/Proteino/Celleomics, Neurotechnology, Imaging & Diagnostics, etc. Thesis and Special Project opportunities will be offered. This seminar will explore the purposes and development of Technology Roadmaps for systematically mapping out possible development paths for various technological domains and the industries that build on them. Data of importance for such roadmaps include rates of innovation, key bottlenecks, physical limitations, improvement trendlines, corporate intent, and value chain and industry evolutionary paths. The course will build on ongoing work on the MIT Communications Technology Roadmap project, but will explore other domains selected from Nanotechnology, Bio-informatics, Geno/Proteino/Celleomics, Neurotechnology, Imaging & Diagnostics, etc. Thesis and Special Project opportunities will be offered.

Subjects

technology development | technology development | operations management | operations management | roadmap | roadmap | nnovation | nnovation | bottleneck | bottleneck | corporate intent | corporate intent | value chain | value chain | nanotechnology | nanotechnology | bioninformatics | bioninformatics | neurotechnology | neurotechnology | imaging | imaging | diagnostics | diagnostics | innovation | innovation

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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Emerging Infectious Diseases

Description

Professor Peter Horby is Senior Clinical Research Fellow. His research focusses on epidemic diseases such as Ebola and bird flu, and crosses the disciplines of basic science, medical science and public health. Influenza, SARS & Ebola Research on emerging infectious diseases can only be conducted during outbreaks. Although virology has improved, a well calibrated and effective public health response is often lacking. Epidemiological and clinical research as well as mathematical modelling will give us answers during the epidemics and help us provide better diagnostics and better treatments. Wales; http://creativecommons.org/licenses/by-nc-sa/2.0/uk/

Subjects

infectious disease | outbreak | ebola | bird flu | epidemic diseases | virology | diagnostics | treatments | infectious disease | outbreak | ebola | bird flu | epidemic diseases | virology | diagnostics | treatments

License

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

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HST.035 Principle and Practice of Human Pathology (MIT) HST.035 Principle and Practice of Human Pathology (MIT)

Description

This course provides a comprehensive overview of human pathology with emphasis on mechanisms of disease and diagnostic medicine. Topics include:Cellular Mechanisms of DiseaseMolecular PathologyPathology of Major Organ SystemsReview of Diagnostic Tools from Traditional Surgical Pathology to Diagnostic SpectroscopyFunctional and Molecular ImagingMolecular DiagnosticsIn addition to lectures, one of the two weekly sessions includes a 2-3 hour laboratory component. Periodically, time will also be devoted to minicases.LecturersProf. Jon AsterProf. Frederick BieberProf. Carlo BrugnaraProf. Robert B. ColvinProf. Christopher CrumProf. Douglas DockeryProf. Mel FeanyProf. Michael FeldProf. Jonathan FletcherProf. Michael GimbroneProf. Todd GolubProf. Frank B. HuProf. Donald IngberProf. Hart LidovProf. This course provides a comprehensive overview of human pathology with emphasis on mechanisms of disease and diagnostic medicine. Topics include:Cellular Mechanisms of DiseaseMolecular PathologyPathology of Major Organ SystemsReview of Diagnostic Tools from Traditional Surgical Pathology to Diagnostic SpectroscopyFunctional and Molecular ImagingMolecular DiagnosticsIn addition to lectures, one of the two weekly sessions includes a 2-3 hour laboratory component. Periodically, time will also be devoted to minicases.LecturersProf. Jon AsterProf. Frederick BieberProf. Carlo BrugnaraProf. Robert B. ColvinProf. Christopher CrumProf. Douglas DockeryProf. Mel FeanyProf. Michael FeldProf. Jonathan FletcherProf. Michael GimbroneProf. Todd GolubProf. Frank B. HuProf. Donald IngberProf. Hart LidovProf.

Subjects

human pathology | human pathology | disease mechanisms | disease mechanisms | cellular pathology | cellular pathology | molecular pathology | molecular pathology | diagnostic tools | diagnostic tools | surgical pathology | surgical pathology | diagnostic spectroscopy | diagnostic spectroscopy | functional imaging | functional imaging | molecular imaging | molecular imaging | molecular diagnostics | molecular diagnostics | medicine | medicine | immune system | immune system | transplantation | transplantation | diagnosis | diagnosis | neoplasia | neoplasia | pathobiology | pathobiology | pathophysiology | pathophysiology

License

Content within individual OCW courses is (c) by the individual authors unless otherwise noted. MIT OpenCourseWare materials are licensed by the Massachusetts Institute of Technology under a Creative Commons License (Attribution-NonCommercial-ShareAlike). For further information see http://ocw.mit.edu/terms/index.htm

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7.01SC Fundamentals of Biology (MIT) 7.01SC Fundamentals of Biology (MIT)

Description

Fundamentals of Biology focuses on the basic principles of biochemistry, molecular biology, genetics, and recombinant DNA. These principles are necessary to understanding the basic mechanisms of life and anchor the biological knowledge that is required to understand many of the challenges in everyday life, from human health and disease to loss of biodiversity and environmental quality. Fundamentals of Biology focuses on the basic principles of biochemistry, molecular biology, genetics, and recombinant DNA. These principles are necessary to understanding the basic mechanisms of life and anchor the biological knowledge that is required to understand many of the challenges in everyday life, from human health and disease to loss of biodiversity and environmental quality.

Subjects

amino acids | amino acids | carboxyl group | carboxyl group | amino group | amino group | side chains | side chains | polar | polar | hydrophobic | hydrophobic | primary structure | primary structure | secondary structure | secondary structure | tertiary structure | tertiary structure | quaternary structure | quaternary structure | x-ray crystallography | x-ray crystallography | alpha helix | alpha helix | beta sheet | beta sheet | ionic bond | ionic bond | non-polar bond | non-polar bond | van der Waals interactions | van der Waals interactions | proton gradient | proton gradient | cyclic photophosphorylation | cyclic photophosphorylation | sunlight | sunlight | ATP | ATP | chlorophyll | chlorophyll | chlorophyll a | chlorophyll a | electrons | electrons | hydrogen sulfide | hydrogen sulfide | biosynthesis | biosynthesis | non-cyclic photophosphorylation | non-cyclic photophosphorylation | photosystem II | photosystem II | photosystem I | photosystem I | cyanobacteria | cyanobacteria | chloroplast | chloroplast | stroma | stroma | thylakoid membrane | thylakoid membrane | Genetics | Genetics | Mendel | Mendel | Mendel's Laws | Mendel's Laws | cloning | cloning | restriction enzymes | restriction enzymes | vector | vector | insert DNA | insert DNA | ligase | ligase | library | library | E.Coli | E.Coli | phosphatase | phosphatase | yeast | yeast | transformation | transformation | ARG1 gene | ARG1 gene | ARG1 mutant yeast | ARG1 mutant yeast | yeast wild-type | yeast wild-type | cloning by complementation | cloning by complementation | Human Beta Globin gene | Human Beta Globin gene | protein tetramer | protein tetramer | vectors | vectors | antibodies | antibodies | human promoter | human promoter | splicing | splicing | mRNA | mRNA | cDNA | cDNA | reverse transcriptase | reverse transcriptase | plasmid | plasmid | electrophoresis | electrophoresis | DNA sequencing | DNA sequencing | primer | primer | template | template | capillary tube | capillary tube | laser detector | laser detector | human genome project | human genome project | recombinant DNA | recombinant DNA | clone | clone | primer walking | primer walking | subcloning | subcloning | computer assembly | computer assembly | shotgun sequencing | shotgun sequencing | open reading frame | open reading frame | databases | databases | polymerase chain reaction (PCR) | polymerase chain reaction (PCR) | polymerase | polymerase | nucleotides | nucleotides | Thermus aquaticus | Thermus aquaticus | Taq polymerase | Taq polymerase | thermocycler | thermocycler | resequencing | resequencing | in vitro fertilization | in vitro fertilization | pre-implantation diagnostics | pre-implantation diagnostics | forensics | forensics | genetic engineering | genetic engineering | DNA sequences | DNA sequences | therapeutic proteins | therapeutic proteins | E. coli | E. coli | disease-causing mutations | disease-causing mutations | cleavage of DNA | cleavage of DNA | bacterial transformation | bacterial transformation | recombinant DNA revolution | recombinant DNA revolution | biotechnology industry | biotechnology industry | Robert Swanson | Robert Swanson | toxin gene | toxin gene | pathogenic bacterium | pathogenic bacterium | biomedical research | biomedical research | S. Pyogenes | S. Pyogenes | origin of replication | origin of replication

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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X0002P0555

Description

Lateromedial radiographs of joint ill in the hocks of a calf

Subjects

svmsvet | cow | calf | bovine | joint | ill | radiograph | diagnostics | lateromedial | septicaemia | infection | hock | tibiotarsus

License

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

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C0000P0080

Description

microscope

Subjects

svmsvet | equipment | diagnostics

License

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

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C0000P0079

Description

Ophthalmoscope and Otoscope

Subjects

svmsvet | equipment | diagnostics

License

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

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X0002P0555

Description

Lateromedial radiographs of joint ill in the hocks of a calf

Subjects

svmsvet | cow | calf | bovine | joint | ill | radiograph | diagnostics | lateromedial | septicaemia | infection | hock | tibiotarsus

License

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

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C0000P0080

Description

microscope

Subjects

svmsvet | equipment | diagnostics

License

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

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HST.512 Genomic Medicine (MIT)

Description

This course reviews the key genomic technologies and computational approaches that are driving advances in prognostics, diagnostics, and treatment. Throughout the semester, emphasis will return to issues surrounding the context of genomics in medicine including: what does a physician need to know? what sorts of questions will s/he likely encounter from patients? how should s/he respond? Lecturers will guide the student through real world patient-doctor interactions. Outcome considerations and socioeconomic implications of personalized medicine are also discussed. The first part of the course introduces key basic concepts of molecular biology, computational biology, and genomics. Continuing in the informatics applications portion of the course, lecturers begin each lecture block with a scen

Subjects

genomics | genomic medicine | genetics | genomic measurement | microarray | informatics | bioinformatics | computational biology | machine learning | pharmacogenomics | complex traits | individual pharmacology | cancer diagnostics | genetic disease | biomedical | genomes | bioethics | integrative genomics | genomic technologies

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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C0000P0138

Description

FIV, FeLV Test Kit

Subjects

svmsvet | equipment | cat | diagnostics | fiv | felv | snaptest

License

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

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C0000P0138

Description

FIV, FeLV Test Kit

Subjects

svmsvet | equipment | cat | diagnostics | fiv | felv | snaptest

License

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

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HST.035 Principle and Practice of Human Pathology (MIT)

Description

This course provides a comprehensive overview of human pathology with emphasis on mechanisms of disease and diagnostic medicine. Topics include:Cellular Mechanisms of DiseaseMolecular PathologyPathology of Major Organ SystemsReview of Diagnostic Tools from Traditional Surgical Pathology to Diagnostic SpectroscopyFunctional and Molecular ImagingMolecular DiagnosticsIn addition to lectures, one of the two weekly sessions includes a 2-3 hour laboratory component. Periodically, time will also be devoted to minicases.LecturersProf. Jon AsterProf. Frederick BieberProf. Carlo BrugnaraProf. Robert B. ColvinProf. Christopher CrumProf. Douglas DockeryProf. Mel FeanyProf. Michael FeldProf. Jonathan FletcherProf. Michael GimbroneProf. Todd GolubProf. Frank B. HuProf. Donald IngberProf. Hart LidovProf.

Subjects

human pathology | disease mechanisms | cellular pathology | molecular pathology | diagnostic tools | surgical pathology | diagnostic spectroscopy | functional imaging | molecular imaging | molecular diagnostics | medicine | immune system | transplantation | diagnosis | neoplasia | pathobiology | pathophysiology

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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HST.035 Principle and Practice of Human Pathology (MIT)

Description

This course provides a comprehensive overview of human pathology with emphasis on mechanisms of disease and diagnostic medicine. Topics include:Cellular Mechanisms of DiseaseMolecular PathologyPathology of Major Organ SystemsReview of Diagnostic Tools from Traditional Surgical Pathology to Diagnostic SpectroscopyFunctional and Molecular ImagingMolecular DiagnosticsIn addition to lectures, one of the two weekly sessions includes a 2-3 hour laboratory component. Periodically, time will also be devoted to minicases.LecturersProf. Jon AsterProf. Frederick BieberProf. Carlo BrugnaraProf. Robert B. ColvinProf. Christopher CrumProf. Douglas DockeryProf. Mel FeanyProf. Michael FeldProf. Jonathan FletcherProf. Michael GimbroneProf. Todd GolubProf. Frank B. HuProf. Donald IngberProf. Hart LidovProf.

Subjects

human pathology | disease mechanisms | cellular pathology | molecular pathology | diagnostic tools | surgical pathology | diagnostic spectroscopy | functional imaging | molecular imaging | molecular diagnostics | medicine | immune system | transplantation | diagnosis | neoplasia | pathobiology | pathophysiology

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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Automotive Diagnostic Simulations Start Here Introduction

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 assess

Subjects

ILRforSkills | automotive | cars | repairs | electrical | introduction | ‘start here’ | diagnostics | mechanic | ENGINEERING | X

License

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/

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Automotive 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 assess

Subjects

cars | automotive | ILRforSkills | mechanic | diagnostics | electrical | repairs | batteries | battery | ENGINEERING | X

License

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/

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Automotive Diagnostic Simulations Charging

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 assess

Subjects

cars | automotive | ILRforSkills | mechanic | diagnostics | electrical | repairs | alternator | charging | ENGINEERING | X

License

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/

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Automotive Diagnostic Simulations Exterior Lighting

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 assess

Subjects

ILRforSkills | automotive | cars | repairs | electrical | exterior lighting | lights | diagnostics | mechanic | headlights | ENGINEERING

License

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/

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