LER.me

Make All Learning Count.

Get Connected

  • What is a LER?
  • FAQs (opens in new tab)
  • Partner with Us
  • Visit EBSCOed (opens in new tab)

View our Policies

  • Accessibility (opens in new tab)
  • Standards (opens in new tab)
  • Terms of Use (opens in new tab)
  • Privacy Policy (opens in new tab)
  • Opt out (opens in new tab)

Get the app

Get it on Google PlayDownload on the App Store

© 2026 All rights reserved.

Powered by EBSCOed

Skip to main contentSkip to footer
  • Live Data
My LER
My LER
  1. Programs
  2. Aerospace Engineering

Aerospace Engineering

University of Kentucky

Bachelor's DegreeCIP: 14.0201

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

No description available.

Loading Skills & Competencies
Program Pathways

Credentials this program stacks toward

No program pathways.

Loading What You'll Learn
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.

Visit Program Website
Locations

Where this program is offered

  • Lexington, Kentucky

    South Limestone, Lexington, Kentucky, 40506-0032

Loading Student Outcomes
Related Programs

Programs related to this one

No related programs.

Skills & Competencies

Skills developed through this program

Auto-populated·from O*NET via SOC 25-1032.00

Skills

SpeakingReading ComprehensionWritingCritical ThinkingActive ListeningComplex Problem SolvingMathematicsJudgment and Decision MakingInstructingLearning StrategiesScienceOperations AnalysisSystems AnalysisSystems Evaluation

Knowledge

Engineering and TechnologyMathematicsDesignEnglish LanguageComputers and ElectronicsPhysicsChemistryProduction and ProcessingAdministration and Management

Abilities

Oral ExpressionWritten ComprehensionOral ComprehensionWritten ExpressionDeductive ReasoningInductive ReasoningInformation OrderingMathematical ReasoningProblem SensitivitySpeech ClarityCategory FlexibilityNear VisionOriginalityFluency of Ideas

Tasks

  • Conduct research in a particular field of knowledge and publish findings in professional journals, b
  • Prepare course materials, such as syllabi, homework assignments, and handouts.
  • Evaluate and grade students' class work, laboratory work, assignments, and papers.
  • Formulate mathematical models or other methods of computer analysis to develop, evaluate, or modify
  • Plan or conduct experimental, environmental, operational, or stress tests on models or prototypes of
  • Formulate conceptual design of aeronautical or aerospace products or systems to meet customer requir
  • Develop and test autonomous systems for uncrewed aerospace vehicles.
  • Develop software for aerospace systems.
  • Design or conduct applied biodiesel or biofuels research projects on topics, such as transport, ther
  • Analyze data from biofuels studies, such as fluid dynamics, water treatments, or solvent extraction
  • Prepare, or oversee the preparation of, experimental plans for biofuels research or development.
  • Manage the coordination and overall integration of technical activities in architecture or engineeri
  • Direct, review, or approve project design changes.
  • Consult or negotiate with clients to prepare project specifications.

Technology

Computer aided design CAD softwareObject or component oriented development softwareComputer aided manufacturing CAM softwareAnalytical or scientific softwareEnterprise resource planning ERP softwareComputer based training softwareCalendar and scheduling softwareWord processing softwareDevelopment environment softwareGraphics or photo imaging softwareDocument management softwareData base management system softwareData base user interface and query softwareExpert system software

Tools

Carousel slide projectorsCompact digital camerasCompact disk CD playersComputer data input scannersComputer laser printersComputer numerical control CNC lathesComputer numerical control CNC millsComputer projectorsConference telephonesDesktop computersDigital calculatorsDigital video camerasDigital video disk DVD playersHandheld microphonesInteractive whiteboard controllersAcoustic emissions systemsAnechoic chambersArgon-ion lasersAtomic force microscopesAxial flow compressor facilitiesAxial flow research fansAxial flow turbinesCenterless grindersCluster computersComputer numerical controlled CNC milling machinesDigital oscilloscopesDigital pressure gaugesDigital voltmeters DVMElectronic flight instrument systems EFISElectronic pressure scanners

Work Values

AchievementRecognitionIndependenceWorking ConditionsRelationshipsSupport
Career Pathways

Occupations this program prepares you for

  • Engineering Teachers, Postsecondary25-1032.00
  • Aerospace Engineers17-2011.00
  • Biofuels/Biodiesel Technology and Product Development Managers11-9041.01
  • Architectural and Engineering Managers11-9041.00
What You'll Learn

Key competencies developed through this program

Auto-populated·from NSX Competency Framework

Mastery: proficient (Level 3)(based on Bachelor's Degree)

  • Graduate-level curricula in advanced engineering topics — design, continuously refine, and deliver autonomously across a sustained portfolio of courses at a doctoral-granting institution.
  • Doctoral student research programs — supervise end-to-end, from dissertation proposal through defense, within a university engineering department.
  • Original research investigations — lead independently, producing peer-reviewed publications and presentations that advance knowledge in a defined engineering subdiscipline.
  • Competitive federal and industry grant proposals — author and submit as principal investigator, securing multi-year external funding for laboratory operations and graduate support.
  • Complex, non-routine engineering problems — diagnose and resolve by applying deductive and inductive reasoning across intersecting domains including physics, mathematics, and systems analysis.
  • Undergraduate and graduate course learning outcomes — evaluate through systematic assessment data, revising instructional methods to demonstrably improve student achievement.
  • Interdisciplinary engineering systems — analyze and critically evaluate using computational modeling tools, integrating findings into both research and classroom instruction.
  • Emerging technologies and engineering standards — monitor continuously through literature review and professional engagement, translating advances directly into updated course content.
  • Collaborative research partnerships — establish and manage with industry or government laboratories, coordinating student involvement and ensuring regulatory compliance.
  • Engineering design and manufacturing software ecosystems — leverage at an expert level to support research workflows and authentic project-based learning experiences.

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