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. Health Physics

Health Physics

Colorado State University-Fort Collins

Bachelor's DegreeCIP: 51.2205

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

  • Fort Collins, Colorado

    102 Administration Building, Fort Collins, Colorado, 80523-0100

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 25-1071.00

Skills

Reading ComprehensionSpeakingActive ListeningCritical ThinkingWritingInstructingLearning StrategiesActive LearningScienceMathematics

Knowledge

English LanguageEducation and TrainingMathematicsPhysicsComputers and ElectronicsBiologyMedicine and DentistryPsychologyEngineering and Technology

Abilities

Oral ExpressionWritten ComprehensionOral ComprehensionWritten ExpressionDeductive ReasoningInductive ReasoningSpeech ClarityNear VisionProblem SensitivityMathematical ReasoningSpeech RecognitionNumber FacilityFluency of IdeasOriginality

Tasks

  • Prepare course materials, such as syllabi, homework assignments, and handouts.
  • Keep abreast of developments in the field by reading current literature, talking with colleagues, an
  • Evaluate and grade students' class work, assignments, and papers.
  • Evaluate and grade students' class work, laboratory work, assignments, and papers.
  • Compile, administer, and grade examinations, or assign this work to others.
  • Review articles to determine their suitability for publication.
  • Perform complex calculations as part of the analysis and evaluation of data, using computers.
  • Analyze data from research conducted to detect and measure physical phenomena.
  • Describe and express observations and conclusions in mathematical terms.
  • Perform peer reviews of scientific papers.

Technology

Computer based training softwareData base user interface and query softwareCalendar and scheduling softwareWord processing softwareMedical softwareComputer aided design CAD softwareDevelopment environment softwareObject or component oriented development softwareMusic or sound editing softwareGraphics or photo imaging softwareExpert system softwareAnalytical or scientific software

Tools

3D movement analysis systemsAgar slidesAutomated ESR analyzersBack support bracesBalance boardsBiohazard containersBlood culture incubatorsCardiac monitorsCarousel slide projectorsCasting ovensCell washing equipmentCervical traction unitsCoagulation testing equipmentColorimetric devicesCompact digital camerasAnalytical ultracentrifugesCircular dichroism CD spectrometersCompact disk CD playersComputer data input scannersComputer laser printersConcave mirrorsConference telephonesConvex mirrorsDesktop computersDigital calculatorsDigital video camerasDigital video disk DVD playersFar infrared FIR lasersAccelerometersAnalog frequency analyzers

Work Values

Working ConditionsAchievementRecognitionIndependenceRelationshipsSupport
Career Pathways

Occupations this program prepares you for

  • Health Specialties Teachers, Postsecondary25-1071.00
  • Physics Teachers, Postsecondary25-1054.00
  • Physicists19-2012.00
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)

  • Full-course instructional materials including syllabi, multimedia content, and assessments — design autonomously to reflect current evidence-based practice for advanced health specialties students at a doctoral or professional degree level.
  • Developments across multiple health specialties subfields — synthesize independently by engaging with literature, collegial networks, and national conferences, then translate findings directly into curriculum updates.
  • Complex student work including research papers and clinical case analyses — assess and grade with nuanced feedback that advances individual student professional development in a rigorous health sciences program.
  • Advanced laboratory and simulation sessions — supervise across multiple concurrent sections, troubleshooting non-routine procedural or safety issues in a postsecondary health professions training environment.
  • Examination blueprints and assessment programs — design, validate, and continuously improve using psychometric principles and accreditation benchmarks for a health specialties degree program.
  • Program-level academic records, outcome metrics, and accreditation data — compile and analyze to ensure compliance with institutional and professional accreditation standards in a health sciences department.
  • High-level seminars and case-based discussions — lead for graduate and professional students on non-routine clinical, ethical, and research challenges within a health specialties academic setting.
  • Curriculum frameworks for health specialties programs — evaluate, redesign, and implement comprehensively using learning theory and competency-based education models in alignment with professional licensing requirements.
  • Medical software, geographic information systems, and scientific analytical tools — integrate into coursework to enhance student competency with health informatics and data-driven clinical reasoning.
  • Interprofessional education initiatives — lead by coordinating with faculty from medicine, nursing, pharmacy, and allied health disciplines to develop integrated learning experiences for health specialties students.

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

Auto-populated·from Scorecard + DOL
Completion Rate
33%
Placement Rate
28%