{"@id":"https://credentialengineregistry.org/resources/ce-2ee8a507-ae7e-4058-a0e8-e5f67767d136","@type":"ceterms:BachelorDegree","@context":"https://credreg.net/ctdl/schema/context/json","ceterms:ctid":"ce-2ee8a507-ae7e-4058-a0e8-e5f67767d136","ceterms:name":{"en-US":"Bachelor of Science in Biomedical Engineering (Imaging and Signal Processing Engineering)"},"ceterms:ownedBy":["https://credentialengineregistry.org/resources/ce-5e249535-2207-4fa3-a883-22005113371f"],"ceterms:requires":[{"@type":"ceterms:ConditionProfile","ceterms:condition":{"en-US":["https://registrar.fsu.edu/bulletin/undergraduate-departments"]},"ceterms:creditValue":[{"@type":"ceterms:ValueProfile","schema:value":131.0,"ceterms:creditUnitType":[{"@type":"ceterms:CredentialAlignmentObject","ceterms:framework":"https://credreg.net/ctdl/terms/CreditUnit","ceterms:targetNode":"creditUnit:DegreeCredit","ceterms:frameworkName":{"en-US":"Credit Unit"},"ceterms:targetNodeName":{"en-US":"Degree Credit"},"ceterms:targetNodeDescription":{"en-US":"Credit that is issued or is accepted as credit for earning a college-level degree."}}]}],"ceterms:description":{"en-US":"Program Requirements"}}],"ceterms:offeredBy":["https://credentialengineregistry.org/resources/ce-5e249535-2207-4fa3-a883-22005113371f"],"ceterms:identifier":[{"@type":"ceterms:IdentifierValue","ceterms:identifierTypeName":{"en-US":"FLVC Public Status"},"ceterms:identifierValueCode":"Public"}],"ceterms:inLanguage":["en-US"],"ceterms:availableAt":[{"@type":"ceterms:Place","ceterms:latitude":30.4409616,"ceterms:longitude":-84.2906658,"ceterms:postalCode":"32306","ceterms:addressRegion":{"en-US":"FL"},"ceterms:streetAddress":{"en-US":"600 W College Ave"},"ceterms:addressLocality":{"en-US":"Tallahassee"}}],"ceterms:description":{"en-US":"The vision of the Department of Chemical and Biomedical Engineering is to be recognized as a place of excellence in fundamental and applied chemical and biomedical engineering education and life-long learning, and to be recognized as a national leader in research in modern areas of engineering. To attain this vision, the department realizes that it must continually satisfy its major stakeholders: students, industrial employers, alumni, departmental faculty, the college, the universities, the community, ABET, and other professional societies.\n\nChemical engineering encompasses the development, application, and operation of processes in which chemical, biological, and/or physical changes of material are involved. Chemical engineers analyze, develop, design, control, construct, and/or supervise chemical processes in research and development, pilot-scale operations, and industrial production. Chemical engineers are employed in the manufacture of inorganic chemicals (e.g., acids, alkalis, pigments, fertilizers), organic chemicals (e.g., petrochemicals, polymers, fuels, propellants, pharmaceuticals, specialty chemicals), biological products (e.g., enzymes, vaccines, biochemicals, biofuels), and other materials (e.g., ceramics, polymeric materials, paper, biomaterials). The graduate in chemical engineering is particularly versatile. Industrial work may involve production, operation, research, and development. Graduate education in business, medicine, dentistry, and law, as well as chemical engineering, biomedical engineering, and other engineering and scientific disciplines are viable alternatives for the more accomplished graduate.\n\nThe Department of Chemical and Biomedical Engineering has made a long-term commitment to emphasize a biological component in its curriculum. The increasing importance of biological and medical subjects within the field of engineering cannot be underestimated. Many of the remarkable breakthroughs in medical science can be directly attributed to advances in chemicals, materials, and devices spearheaded by biochemical and biomedical engineers. Currently, biomedical engineering represents the fastest growing engineering discipline in the U.S. and it is likely to continue as such. The biomedical/biotechnology industries are also the fastest growing of all current industries that employ engineers. Training in biological and biomedical engineering provides an excellent background for graduate and/or medical school, especially considering the increasing technological complexity of medical education."},"ceterms:subjectWebpage":"https://eng.famu.fsu.edu/cbe","ceterms:credentialStatusType":{"@type":"ceterms:CredentialAlignmentObject","ceterms:framework":"https://credreg.net/ctdl/terms/CredentialStatus","ceterms:targetNode":"credentialStat:Active","ceterms:frameworkName":{"en-US":"Credential Status"},"ceterms:targetNodeName":{"en-US":"Active"},"ceterms:targetNodeDescription":{"en-US":"Awards of the credential are ongoing."}},"ceterms:learningDeliveryType":[{"@type":"ceterms:CredentialAlignmentObject","ceterms:framework":"https://credreg.net/ctdl/terms/Delivery","ceterms:targetNode":"deliveryType:InPerson","ceterms:frameworkName":{"en-US":"Delivery Type"},"ceterms:targetNodeName":{"en-US":"In-Person Only"},"ceterms:targetNodeDescription":{"en-US":"Delivery is only face-to-face."}}],"ceterms:instructionalProgramType":[{"@type":"ceterms:CredentialAlignmentObject","ceterms:framework":"https://nces.ed.gov/ipeds/cipcode/Default.aspx?y=56","ceterms:targetNode":"https://nces.ed.gov/ipeds/cipcode/cipdetail.aspx?y=56\u0026cip=14.0501","ceterms:codedNotation":"14.0501","ceterms:frameworkName":{"en-US":"Classification of Instructional Programs"},"ceterms:targetNodeName":{"en-US":"Bioengineering and Biomedical Engineering."},"ceterms:targetNodeDescription":{"en-US":"A program that prepares individuals to apply mathematical and scientific principles to the design, development and operational evaluation of biomedical and health systems and products such as integrated biomedical systems, instrumentation, medical information systems, artificial organs and prostheses, and health management and care delivery systems."}}]}