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  1. Programs
  2. Forensic Toxicology and Analytical Genetics

Forensic Toxicology and Analytical Genetics

University of Kentucky

Master's DegreeCIP: 40.0510

Become a contributor for free to openly demonstrate student outcomes, industry alignment & eligibility criteria.

No description available.

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Program Pathways

Credentials this program stacks toward

No program pathways.

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Program Details

Detailed information about this program

No detailed information available.

Requirements

What you need to earn this credential

No requirements listed.

Financial Aid

Eligible funding programs

No funding information available.

Scholarships

No scholarships listed.

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Locations

Where this program is offered

  • Lexington, Kentucky

    South Limestone, Lexington, Kentucky, 40506-0032

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Related Programs

Programs related to this one

No related programs.

Skills & Competencies

Skills developed through this program

Auto-populated·from O*NET via SOC 25-1052.00

Skills

Reading ComprehensionWritingSpeakingActive ListeningCritical ThinkingComplex Problem SolvingScienceMonitoringActive LearningJudgment and Decision MakingLearning StrategiesMathematicsTime ManagementCoordinationSocial Perceptiveness

Knowledge

English LanguageComputers and ElectronicsMathematicsChemistryEducation and TrainingBiologyAdministrativeLaw and GovernmentPublic Safety and SecurityProduction and ProcessingEngineering and TechnologyDesignPhysicsCustomer and Personal ServiceMedicine and DentistryAdministration and Management

Abilities

Oral ExpressionWritten ExpressionOral ComprehensionWritten ComprehensionDeductive ReasoningInductive ReasoningProblem SensitivityInformation OrderingSpeech ClarityNear VisionSpeech RecognitionCategory FlexibilityFlexibility of Closure

Tasks

  • Prepare and deliver lectures to undergraduate or graduate students on topics such as organic chemist
  • Establish, teach, and monitor students' compliance with safety rules for handling chemicals, equipme
  • Evaluate and grade students' class work, laboratory performance, assignments, and papers.
  • Collect evidence from crime scenes, storing it in conditions that preserve its integrity.
  • Keep records and prepare reports detailing findings, investigative methods, and laboratory technique
  • Use photographic or video equipment to document evidence or crime scenes.
  • Enter data into databases.
  • Operate drones to capture aerial footage or photographs of crime scenes for further analysis.
  • Develop, improve, or customize products, equipment, formulas, processes, or analytical methods.
  • Analyze organic or inorganic compounds to determine chemical or physical properties, composition, st
  • Induce changes in composition of substances by introducing heat, light, energy, or chemical catalyst
  • Perform hydrologic, hydraulic, or water quality modeling.
  • Analyze storm water systems to identify opportunities for water resource improvements.
  • Conduct, or oversee the conduct of, investigations on matters such as water storage, wastewater disc
  • Schedule subjects for appointments, procedures, or inpatient stays as required by study protocols.
  • Perform specific protocol procedures such as interviewing subjects, taking vital signs, and performi
  • Assess eligibility of potential subjects through methods such as screening interviews, reviews of me
  • Hire, supervise, or evaluate engineers, technicians, researchers, or other staff.
  • Design or coordinate successive phases of problem analysis, solution proposals, or testing.
  • Plan or direct research, development, or production activities.

Technology

Analytical or scientific softwareData base user interface and query softwareWord processing softwareGraphics or photo imaging softwareComputer aided design CAD softwareOffice suite softwareSpreadsheet softwareGeographic information systemComputer based training softwareCalendar and scheduling softwareInformation retrieval or search softwarePresentation softwareCustomer relationship management CRM softwareAccounting softwareCategorization or classification softwareVideo conferencing softwareDocument management software

Tools

Atomic absorption AA spectrophotometersAtomic emission spectroscopesAutomated polarimetersBenchtop muffle furnacesBenchtop orbital shakersBenchtop ultracentrifugesCapillary electrophoresis systemsCarousel slide projectorsChemiluminescence analyzersCold roomsCompact digital camerasCompact disk CD playersComputer data input scannersComputer laser printersConference telephones35 millimeter camerasBenchtop mixersBiohazard suitsBlood collection kitsBody fluid collection kitsBreathalyzersColored camera filtersCrime scene evidence flagsCrime scene tape measuresCyanoacrylate fuming chambersDeoxyribonucleic acid DNA collection kitsDesktop computersDigital camerasDigital video camerasDistance measuring wheels

Work Values

AchievementWorking ConditionsIndependenceRecognitionRelationshipsSupport
Career Pathways

Occupations this program prepares you for

  • Chemistry Teachers, Postsecondary25-1052.00
  • Forensic Science Technicians19-4092.00
  • Chemists19-2031.00
  • Water Resource Specialists11-9121.02
  • Clinical Research Coordinators11-9121.01
  • Natural Sciences Managers11-9121.00
What You'll Learn

Key competencies developed through this program

Auto-populated·from NSX Competency Framework

Mastery: advanced (Level 4)(based on Master's Degree)

  • Departmental chemistry curriculum spanning undergraduate and graduate programs — lead strategic redesign to align with evolving disciplinary standards and accreditation requirements.
  • Faculty instructional development in chemistry education — mentor junior and mid-level faculty on pedagogy, lab safety leadership, and assessment design at organizational scale.
  • Research program direction integrating graduate supervision, grant acquisition, and interdisciplinary collaboration — sustain and expand within a research-intensive postsecondary institution.
  • Laboratory safety policy and institutional compliance frameworks — author and implement across an entire chemistry division, establishing accountability structures for faculty and staff.
  • Long-range course and program assessment systems — design and oversee to produce department-wide evidence of student learning outcomes and continuous improvement cycles.
  • Cross-disciplinary academic partnerships involving chemistry, engineering, and biology — initiate and govern to create integrated degree pathways and collaborative research opportunities.
  • Departmental technology adoption strategy for analytical software, electronic mail, and instructional platforms — define and champion to enhance teaching quality and research productivity.
  • Distinguished public scholarship in chemistry — produce and disseminate through peer-reviewed publication and invited lecture, elevating the department's national and international reputation.
  • Institutional academic integrity and student conduct standards pertaining to laboratory and research environments — interpret, enforce, and refine as a senior faculty leader.
  • Emerging pedagogical methodologies and scientific advances in chemistry — evaluate and integrate into institutional teaching practice, modeling intellectual curiosity and achievement orientation for the entire faculty.

Some details on this page are auto-populated from public workforce data sources: O*NET (opens in new tab), BLS (opens in new tab), College Scorecard (opens in new tab), DOL Training Provider Results (opens in new tab), NSX (opens in new tab). Provided in partnership with LER.me Career Intelligence.

Student Outcomes

Performance metrics for this program

Completion Rate
Not reported
Placement Rate
Not reported