{"@id":"https://credentialengineregistry.org/resources/ce-8886b1de-dd37-4b62-87b6-39e94a41ab67","@type":"ceterms:DoctoralDegree","@context":"https://credreg.net/ctdl/schema/context/json","ceterms:ctid":"ce-8886b1de-dd37-4b62-87b6-39e94a41ab67","ceterms:name":{"en-US":"Doctor of Philosophy in Chemical 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/graduate-departments"]},"ceterms:creditValue":[{"@type":"ceterms:ValueProfile","schema:value":57.0,"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 Department of Chemical and Biomedical Engineering at the FAMU-FSU College of Engineering offers the degrees of Doctor of Philosophy (PhD) and Master of Science (MS) in both biomedical and chemical engineering, as well as the Bachelor of Science (BS) degrees in biomedical and chemical engineering. The Department is strongly committed to building a graduate research program of national reputation in both applied and fundamental areas. The faculty believes that graduate programs must be diverse, interdisciplinary, and flexible to prepare biomedical and chemical engineers who can handle the challenging applications in modern research, industry, and society. Major research areas include: Biomaterials Cellular and Tissue Engineering Imaging (NMR, MRI, Electron Microscopy) Materials Science and Engineering: Superconductivity, Magnetism, and Solid State Chemistry Magnetic Field Assisted Separations Nanoscale Science and Engineering Plasma and Reaction Engineering Polymers and Complex Fluids Renewable and Advanced Power Production Sustainable Materials - Minerals, Plastics Recycling, and 3D-printing Many of these efforts are conducted in close cooperation with the High Performance Materials Institute (HPMI); Aero-Propulsion, Mechatronics, and Energy (AME) Center; the Institute of Molecular Biophysics (IMB); the FSU Departments of Biological Sciences, Chemistry and Biochemistry, Physics, and Scientific Computing; the National High Magnetic Field Laboratory (NHMFL); the FSU College of Medicine and Department of Biomedical Sciences; the Florida A\u0026M University School of Pharmacy and Pharmaceutical Sciences; as well as with the Departments of Mechanical, Industrial and Manufacturing, and Electrical and Computer Engineering in the College of Engineering. Chemical engineering (ChE) encompasses the development,\napplication, and operation of the processes in which chemical and/\nor physical changes of material are involved. The work of a chemical engineer is to analyze, develop, design, control, construct, and/\nor supervise chemical processes in research and development, pilotscale operations, and industrial production. Chemical engineers are\nemployed in the manufacture of inorganic chemicals (i.e., acids, alkalis, pigments, and fertilizers); organic chemicals (i.e., petrochemicals,\npolymers, fuels, propellants, pharmaceuticals, and specialty chemicals); biological products (i.e., enzymes, vaccines, biochemicals, biofuels, etc.); foods; semiconductors; and paper.\nChemical engineers with graduate degrees work in a wide range of\norganizations where their technical skills are needed. These organizations may include local, state, and federal governments; private and\npublic corporations; and education. Chemical engineers are involved\nin process and plant operation, technical services groups; research\nand development laboratories; plant design groups; occupational and\nsafety programs; technical sales; technical training; and technical\nmanagement. Graduate education can lead to careers in the medical\nsciences, chemical engineering, and other engineering and scientific\ndisciplines, as well as business and law."},"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=14.0701","ceterms:codedNotation":"14.0701","ceterms:frameworkName":{"en-US":"Classification of Instructional Programs"},"ceterms:targetNodeName":{"en-US":"Chemical Engineering."},"ceterms:targetNodeDescription":{"en-US":"A program that prepares individuals to apply mathematical and scientific principles to the design, development and operational evaluation of systems employing chemical processes, such as chemical reactors, kinetic systems, electrochemical systems, energy conservation processes, heat and mass transfer systems, and separation processes; and the applied analysis of chemical problems such as corrosion, particle abrasion, energy loss, pollution, and fluid mechanics."}}]}