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Radiation Science Jobs in Kentucky (NOW HIRING)

Radiation Oncology | Work Hours: M-F 7:00-4:30 | Weekend Requirements: N/A | 0.5 FTE Job Summary ... Associate's degree or higher in Science required upon hire OR * Associate's degree or higher in ...

Radiation Oncology | Work Hours: M-F 7:00-4:30 | Weekend Requirements: N/A | 0.5 FTE Job Summary ... Associate's degree or higher in Science required upon hire OR * Associate's degree or higher in ...

Deep knowledge of ARRT Radiography examination content covering patient care, radiation safety ... science to create personalized learning experiences. Through 1-on-1 Online Tutoring, students ...

Deep knowledge of ARRT Radiography examination content covering patient care, radiation safety ... science to create personalized learning experiences. Through 1-on-1 Online Tutoring, students ...

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Radiation Science information

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$16

$37

$62

How much do radiation science jobs pay per hour?

As of Aug 2, 2026, the average hourly pay for radiation science in Kentucky is $37.08, according to ZipRecruiter salary data. Most workers in this role earn between $24.23 and $47.16 per hour, depending on experience, location, and employer.

What does a radiation scientist do?

A radiation scientist studies the effects of radiation on matter, humans, and the environment. They often work in research laboratories or healthcare settings, using specialized tools and techniques to analyze radiation exposure, develop safety protocols, and improve radiation-based technologies. Strong knowledge of physics, biology, and safety standards is essential for this role.

What are the key skills and qualifications needed to thrive in Radiation Science, and why are they important?

To thrive in Radiation Science, a strong background in physics, mathematics, and radiological safety, often supported by a relevant degree such as a BSc or MSc in radiation science or medical physics, is essential. Familiarity with technical tools like dosimetry equipment, radiation detectors, and specialized software, along with certifications such as ARRT or equivalent, is typically required. Strong analytical thinking, attention to detail, and effective communication skills set outstanding professionals apart in this field. These skills and qualifications are crucial to ensure safe, accurate measurement and application of radiation in healthcare, research, or industry settings, protecting both people and the environment.

What can you do with a degree in radiation science?

A degree in radiation science prepares individuals for roles such as radiation therapist, medical physicist, radiologic technologist, or health physicist. These professionals work in hospitals, clinics, research facilities, or regulatory agencies, using skills in radiation safety, imaging technology, and patient care, often requiring certification or licensing. The field involves operating imaging equipment, ensuring radiation safety protocols, and supporting diagnostic or therapeutic procedures.

What is radiation science?

Radiation science is a multidisciplinary field that studies the properties, effects, and applications of radiation, including both ionizing and non-ionizing forms. Professionals in this field often work in medical, industrial, research, or environmental settings to understand how radiation interacts with matter, ensure safe usage, and develop new technologies. The work can involve radiation safety, medical imaging, cancer treatment (radiation therapy), nuclear power, and environmental protection. Radiation scientists play a crucial role in protecting people and the environment from harmful effects while harnessing the benefits of radiation.

What is the difference between Radiation Science vs Radiation Therapy?

AspectRadiation ScienceRadiation Therapy
CredentialsTypically requires a bachelor's degree in radiation science or related fieldRequires a bachelor's degree and certification as a radiation therapist
Work EnvironmentResearch labs, hospitals, imaging centersHospitals, cancer treatment centers, clinics
Job FocusStudying radiation principles, safety, and applicationsAdministering radiation treatments to patients

Radiation Science involves understanding radiation principles and safety, often in research or diagnostic settings, while Radiation Therapy focuses on providing treatment to cancer patients using radiation. Both roles require knowledge of radiation safety but differ in their primary objectives and work environments.

What are some common challenges faced by professionals in radiation science, and how can they be addressed?

Professionals in radiation science often encounter challenges such as maintaining strict safety standards, staying current with evolving technologies, and effectively communicating complex information to non-specialists. To address these, radiation scientists must prioritize continuous education, adhere to rigorous safety protocols, and collaborate closely with interdisciplinary teams. Regular training, staying updated through professional organizations, and developing strong communication skills are key strategies for overcoming these challenges and ensuring both personal safety and accurate results.

How much do radiation scientists make?

Radiation scientists typically earn a median annual salary of around $80,000 to $100,000, depending on experience, education, and location. They often work in research, healthcare, or government settings, utilizing specialized knowledge of radiation and safety protocols.
What job categories do people searching Radiation Science jobs in Kentucky look for? The top searched job categories for Radiation Science jobs in Kentucky are:
Infographic showing various Radiation Science job openings in Kentucky as of July 2026, with employment types broken down into 3% As Needed, 75% Full Time, 15% Part Time, and 7% Contract. Highlights an 99% Physical, and 1% Remote job distribution, with an average salary of $77,129 per year, or $37.1 per hour.

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Re-posted 14 days ago


Job description

Job Summary

Provides therapeutic and patient care services for the purpose of delivering radiation therapy as prescribed by a Radiation Oncologist.
 
Job Responsibilities
  • Delivers patient treatment plan in collaboration with physician and dosimetrist/physicist.
  • Evaluates patients for appropriate response to treatment and reports any adverse reactions.
  • Positions patients and selects anatomic/technical parameters accurately; maintains a high degree of accuracy in positioning and treatment techniques while utilizing radiation protection procedures.
  • Reviews patient charts for completeness and accuracy according to established policies and procedures. Verifies completion of prescription, appropriate signatures, and patient consents.
  • Responsible for effective and safe operation of equipment in the Linac treatment room. This includes the Linear accelerator, OBI, portal imager, Protura couch, and HDR unit.
  • Fabricates individualized immobilization, custom blocks, and other beam-modifying devices.
  • Applies as low as reasonably achievable (ALARA) principle to minimize exposure to patient, self, and others.
  • Primary liaison between patients and other members of the radiation oncology team.
Qualifications
  • Associate's degree or higher in Science required upon hire OR
  • Associate's degree or higher in related field required upon hire
  • A combination of education, training and experience may be considered in lieu of degree.
  • No experience required
  • RT(T) - Registered as a Radiological Technologist in Radiation Therapy required upon hire AND
  • ROC - Radiation Operator Certification in the state of Kentucky required upon hire AND
  • BLS - Certified as a Basic Life Support Healthcare Provider required within 90 days of employment in this position
Skills and Attributes
  • Requires critical thinking skills and decisive judgment.
  • Works under minimal supervision.
  • Must be able to work in a stressful environment and take appropriate action.
Physical Demands
  • Lifting 0-25 lbs: Rarely
  • Lifting 25-75 lbs: Rarely
  • Lifting over 75 lbs: Rarely
  • Carrying 0-25 lbs: Rarely
  • Carrying 25-75 lbs: Rarely
  • Carrying over 75 lbs: Rarely
  • Pushing/Pulling 0-25 lbs: Frequently
  • Pushing/Pulling 25-75 lbs: Occasionally
  • Pushing/Pulling over 75 lbs: Occasionally
  • Climbing: Occasionally
  • Bending/Stooping: Frequently
  • Kneeling: Occasionally
  • Crouching/Crawling: Occasionally
  • Reaching: Frequently
  • Talking: Frequently
  • Hearing: Frequently
  • Repetitive Foot/Leg Movements: Rarely
  • Repetitive Hand/Arm Movements: Frequently
  • Keyboard Data Entry: Frequently
  • Running: Rarely
  • Vision: Depth Perception: Frequently
  • Vision: Distinguish Color: Frequently
  • Vision: Seeing Far: Frequently
  • Vision: Seeing Near: Frequently
Owensboro Health Core Commitments

INTEGRITY - We conduct ourselves with a high level of responsibility, reliability and honesty because we take seriously the trust of our patients and coworkers.
RESPECT - We value and accept the unique talents and contributions of every patient, customer and team member in the Owensboro Health community.
TEAMWORK - We build a spirit of connectivity and fellowship by striving together to overcome obstacles, surpass goals, celebrate accomplishments and plan the future.
INNOVATION - We foster original ideas and creative solutions that improve our daily work and promote the mission of Owensboro Health.
SERVICE - We focus on service to patients, customers and team members by anticipating their needs, thoughtfully meeting those needs and continually improving the quality of everything we do.
EXCELLENCE - We reach beyond basic expectations to expand our knowledge and awareness, produce exceptional work and provide outstanding service.