1

Applied Physics Jobs in Arizona (NOW HIRING)

PhD degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics / Applied Physics, or a related field; OR * Master's degree in mechanical engineering, Materials Science ...

Minimum Qualifications: • Master's degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics/Applied Physics, or a related field with 3+ years of experience or PhD in ...

Minimum Qualifications: • Master's degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics/Applied Physics, or a related field with 3+ years of experience or PhD in ...

Minimum Qualifications: • Master's degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics/Applied Physics, or a related field with 3+ years of experience or PhD in ...

Minimum Qualifications: • Master's degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics/Applied Physics, or a related field with 3+ years of experience or PhD in ...

Minimum Qualifications: • Master's degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics/Applied Physics, or a related field with 3+ years of experience or PhD in ...

PhD degree in Mechanical Engineering, Materials Science, Electrical Engineering, Physics / Applied Physics, or a related field; OR * Master's degree in mechanical engineering, Materials Science ...

D. in Electrical Engineering, Applied Physics, Photonics, or a related field. * At least 3 years of hands-on experience testing photonic integrated circuits involving fiber optics and/or free-space ...

D. in Electrical Engineering, Applied Physics, Photonics, or a related field. * At least 3 years of hands-on experience testing photonic integrated circuits involving fiber optics and/or free-space ...

... Applied Physics, or a related field. Minimum cumulative GPA of 3.5. Must have the required degree prior to your start date. Experience in programming/script (e.g., Python, MATLAB) development with ...

A. in Science, Engineering, or a related field such as Computer Science, Physics, Statistics, Applied Mathematics, Mechanical Engineering, Electrical Engineering, Applied Physics, Chemistry ...

Research Assistant

Phoenix, AZ · On-site

$18.25 - $25/hr

A. in Science, Engineering, or a related field such as Computer Science, Physics, Statistics, Applied Mathematics, Mechanical Engineering, Electrical Engineering, Applied Physics, Chemistry ...

A. in Science, Engineering, or a related field such as Computer Science, Physics, Statistics, Applied Mathematics, Mechanical Engineering, Electrical Engineering, Applied Physics, Chemistry ...

Research Assistant

Phoenix, AZ · On-site

$18.25 - $25/hr

A. in Science, Engineering, or a related field such as Computer Science, Physics, Statistics, Applied Mathematics, Mechanical Engineering, Electrical Engineering, Applied Physics, Chemistry ...

next page

Showing results 1-20

Applied Physics information

See Arizona salary details

$4

$18

$23

How much do applied physics jobs pay per hour?

As of Aug 14, 2026, the average hourly pay for applied physics in Arizona is $18.70, according to ZipRecruiter salary data. Most workers in this role earn between $11.63 and $23.75 per hour, depending on experience, location, and employer.

What is the difference between Applied Physics vs Mechanical Engineer?

AspectApplied PhysicsMechanical Engineer
Required CredentialsBachelor's or Master's in Physics or Applied PhysicsBachelor's or Master's in Mechanical Engineering
Work EnvironmentResearch labs, tech companies, academiaManufacturing, design firms, industrial settings
Industry UsageTechnology development, research, product innovationProduct design, systems, machinery
Common Search IntentUnderstanding physics applications in techDesigning mechanical systems

Applied Physics and Mechanical Engineering share overlapping skills in problem-solving and technical knowledge. However, Applied Physics focuses more on fundamental research and developing new technologies, while Mechanical Engineering emphasizes designing and manufacturing mechanical systems. Both careers are vital in tech and industry sectors, but they serve different roles based on their core focus and educational background.

What are common interdisciplinary collaborations for applied physicists?

Professionals in applied physics often collaborate with experts from engineering, computer science, and materials science to solve complex, real-world problems. These collaborations might involve working with electrical engineers to develop new semiconductor devices, or with biologists to design cutting-edge medical imaging technologies. Such interdisciplinary teamwork broadens the scope of projects and fosters innovation, making communication and adaptability key skills for applied physicists. Team dynamics often center around project-based structures, offering exposure to various fields and a dynamic work environment.

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 simulation software, programming languages (such as Python or MATLAB), and laboratory instrumentation is often required. Strong analytical thinking, creativity, and effective communication skills help you design experiments, interpret results, and collaborate across multidisciplinary teams. These competencies ensure you can develop innovative solutions, advance technology, and translate scientific discoveries into practical applications.

What does an applied physicist do?

Applied physicists use principles of physics to solve practical problems in technology, engineering, and industry. They often work on developing new devices, improving existing technologies, or conducting research that leads to innovative applications. Their work spans fields such as electronics, materials science, energy, optics, and medical technology. Applied physicists may collaborate with engineers, chemists, and other scientists to bring theoretical concepts into real-world use.

What jobs can applied physics get you?

Applied physics graduates can pursue careers as research scientists, engineers, data analysts, or technical consultants in industries such as aerospace, electronics, renewable energy, and telecommunications. These roles often require strong problem-solving skills, proficiency with laboratory equipment or simulation software, and sometimes security clearances or advanced degrees.

What are popular job titles related to Applied Physics jobs in Arizona?

For Applied Physics jobs in Arizona, the most frequently searched job titles are:

What cities in Arizona are hiring for Applied Physics jobs?

Cities in Arizona with the most Applied Physics job openings:

Infographic showing various Applied Physics job openings in Arizona as of August 2026, with employment types broken down into 1% As Needed, 76% Full Time, 21% Part Time, and 2% Contract. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $38,888 per year, or $18.7 per hour.

Sr. Principal Engineer, Systems (Plasma & Multi-Scale Simulation Scientist)

ASM

Phoenix, AZ • Hybrid

Full-time

Re-posted 24 days ago


Job description

Sr. Principal Engineer, Systems (Plasma & Multi-Scale Simulation Scientist)

Simulation and Modeling Hub 

Role Summary 

We are seeking a Senior Plasma & Multi-Scale Simulation Scientist to strengthen and expand plasma modeling capabilities within the Simulation and Modeling Hub (S&M-Hub). This role focuses on bridging plasma physics, surface chemistry, and feature-scale behavior to enable predictive, physics-based simulation workflows supporting advanced semiconductor process development (PEALD, PECVD, ALE, RIE). 

Key Responsibilities 

  • Develop and apply plasma simulation models (fluid and hybrid CCP/ICP) 
  • Bridge multiple scales including plasma-surface interactions, molecular/first-principles insights, and feature-scale behavior 
  • Integrate plasma modeling with CFD, thermal, and multi-physics simulations 
  • Collaborate with experimental teams to validate models using in-situ and ex-situ diagnostics 
  • Translate modeling insights into actionable process and equipment guidance 
  • Contribute to S&M-Hub roadmap development, best practices, and advanced modeling workflows 

Required Qualifications 

  • Ph.D. in Applied Physics, Plasma Physics, Materials Science, Chemical Engineering, or related field 
  • Strong background in plasma-assisted semiconductor processes (PEALD, PECVD, ALE, RIE) 
  • Demonstrated experience in computational plasma modeling 
  • Ability to connect fundamental modeling with experimental validation and manufacturing relevance 

Preferred Qualifications 

  • Experience with first-principles, molecular dynamics, or surface reaction modeling 
  • Exposure to feature-scale or device-relevant plasma simulations 
  • Familiarity with multi-physics coupling and reduced-order (ROM) or hybrid modeling approaches 
  • Experience in industrial R&D or advanced technology development environments