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Applied Physicist Jobs in Texas (NOW HIRING)

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

An advanced degree ( PhD/MS ) or equivalent hands-on research experience in materials science, condensed matter physics, applied physics, chemistry, electrical engineering, or a closely related field.

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

... engineering, physics, finance, and computational science applications. * Conceptual Teaching ... Familiar with applied mathematics curricula and common challenges such as translating physical ...

Showing results 21-40

Applied Physicist information

See Texas salary details

$36.8K

$88.3K

$211K

How much do applied physicist jobs pay per year?

As of Aug 23, 2026, the average yearly pay for applied physicist in Texas is $88,325.00, according to ZipRecruiter salary data. Most workers in this role earn between $55,000.00 and $104,300.00 per year, depending on experience, location, and employer.

What is an applied physicist?

Applied physicists are scientists who use principles and theories of physics to solve practical problems and develop new technologies. Unlike theoretical physicists, who focus on understanding the fundamental laws of nature, applied physicists work on translating those principles into real-world applications. They may work in diverse fields such as engineering, materials science, electronics, medical technology, and energy. Their work often involves research, experimentation, and collaboration with engineers and other scientists to innovate and improve products, processes, or instruments.

What are the key skills and qualifications needed to thrive as an applied physicist?

To thrive as an Applied Physicist, you need a strong background in physics, mathematics, and problem-solving, typically supported by at least a bachelor's or master's degree in physics or a related field. Familiarity with laboratory instruments, simulation software (such as MATLAB or COMSOL), and data analysis tools is commonly required, and additional certifications in specialized areas can be advantageous. Strong analytical thinking, creativity, and clear communication are vital soft skills for collaborating with interdisciplinary teams and presenting complex findings. These skills and qualities are crucial for developing practical solutions to real-world problems and advancing innovation in scientific and technological industries.

What are some common interdisciplinary collaborations involved in an applied physicist role?

Applied Physicists frequently work alongside engineers, material scientists, computer scientists, and industry specialists to develop practical solutions based on physical principles. These collaborations often involve joint research projects, product development, and troubleshooting complex technical challenges. Teamwork is essential, as applied physics projects typically require input from multiple fields to move from theoretical concepts to real-world applications, such as developing medical devices, renewable energy technologies, or advanced manufacturing processes.

Is applied physics a good degree?

Applied physics is a valuable degree for careers such as applied physicist, as it provides a strong foundation in physics principles and practical problem-solving skills. Graduates often work in research, development, engineering, or technology sectors, where analytical skills and knowledge of experimental tools are essential.

What do applied physicists do?

Applied physicists use principles of physics to develop practical solutions in fields such as engineering, technology, and research. They design experiments, analyze data, and create new devices or materials, often working with tools like laboratory equipment and computer simulations. Their work supports innovation in industries like electronics, aerospace, and healthcare.

What jobs can you get with applied physicist?

Applied physicists can work in industries such as aerospace, defense, medical imaging, telecommunications, and research and development. They often find roles as research scientists, systems analysts, optical engineers, or technical consultants, utilizing skills in data analysis, modeling, and experimental design. Many positions require a strong understanding of physics principles and proficiency with laboratory tools and simulation software.

What cities in Texas are hiring for Applied Physicist jobs?

Cities in Texas with the most Applied Physicist job openings:

Infographic showing various Applied Physicist job openings in Texas as of August 2026, with employment types broken down into 1% As Needed, 80% Full Time, 18% Part Time, and 1% Contract. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $88,325 per year, or $42.5 per hour.

Postdoctoral Fellow - Imaging Physics - Research

MD Anderson Center

Houston, TX

$64K - $76K/yr

Full-time

Medical, Dental, Retirement, PTO

Posted 11 days ago


MD Anderson Cancer Center rating

8.5

Company rating: 8.5 out of 10

Based on 172 frontline employees who took The Breakroom Quiz

14th of 891 rated healthcare providers


Job description

A postdoctoral fellowship position is available in the Department of Imaging Physics in the laboratory of Ke Li, PhD. Dr. Li's research program focuses on the development of next-generation computed tomography (CT) and cone-beam CT technologies and their translation into cancer imaging, image-guided radiation therapy, and image-guided surgical interventions. The laboratory offers a highly collaborative and multidisciplinary research environment with access to world-class medical imaging facilities, computational resources, clinical collaborators, and large-scale imaging datasets.
The successful candidate will contribute to innovative research at the intersection of physics, medicine, and engineering.
Current research projects include, but are not limited to:
• Development of photon-counting detector CT and cone-beam CT hardware and reconstruction algorithms to improve cancer detection, characterization, and precision in cancer treatment.
• Development and validation of advanced CT image reconstruction, artifact reduction, and post-processing techniques.
• Quantitative evaluation of deep learning-based CT reconstruction and image analysis algorithms.
• Explore and validate new clinical applications of quantitative and spectral CT and cone-beam CT.
All duties and responsibilities are carried out in compliance with institutional policies, ethical research standards, and applicable federal and state regulations.
LEARNING OBJECTIVES
The postdoctoral fellow will participate in highly productive interdisciplinary research spanning diagnostic radiology, image-guided radiation therapy, and image-guided surgery. Through these projects, the fellow will gain expertise in photon-counting detector physics, CT and cone-beam CT image reconstruction and artifact reduction techniques, Spectral CT and material decomposition, quantitative image quality assessment, virtual lesion insertion and imaging simulation, Monte Carlo-based imaging and detector simulation, and 2D-3D image registration.
The successful candidate will be expected to conduct independent and collaborative research, present research findings at laboratory meetings, seminars, or conferences, publish results in peer-reviewed journals, prepare abstracts, technical reports, and research proposals, and contribute to the development of new research initiatives and collaborative projects.
ELIGIBILITY REQUIREMENTS
Applicants must have earned a Ph.D. in Physics, Applied Physics, or Medical Physics by the start date of the appointment. Candidates with experience in one or more of the following areas are preferred: CT image reconstruction, Monte Carlo simulation, medical image registration, radiation detection and instrumentation, or related fields in medical imaging physics. Strong programming and quantitative analytical skills are highly desirable. This appointment is a research position and is not part of a clinical training program.
ADDITIONAL APPLICATION INFORMATION
The initial appointment is for one year from the date of hire, with the possibility of renewal based on performance, funding availability, and mutual agreement.
POSITION INFORMATION
MD Anderson offers full-time postdoc positions with a salary ranging from $64,000 to $76,000 . depending on the number of years of postgraduate experience. The University of Texas MD Anderson Cancer Center offers excellent benefits , including medical, dental, paid time off , retirement , tuition benefits, educational opportunities, and individual and team recognition
Offsite work arrangements are subject to approval and may be modified or revoked at any time based on business needs, performance considerations, or regulatory requirements.
This position may be responsible for maintaining the security and integrity of critical infrastructure, as defined in Section 113.001(2) of the Texas Business and Commerce Code and therefore may require routine reviews and screening. The ability to satisfy and maintain all requirements necessary to ensure the continued security and integrity of such infrastructure is a condition of hire and continued employment.
It is the policy of The University of Texas MD Anderson Cancer Center to provide equal employment opportunity without regard to race, color, religion, age, national origin, sex, gender, sexual orientation, gender identity/expression, disability, protected veteran status, genetic information, or any other basis protected by institutional policy or by federal, state or local laws unless such distinction is required by law. http://www.mdanderson.org/about-us/legal-and-policy/legal-statements/eeo-affirmative-action.html


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