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Nano Engineering Jobs in Florida (NOW HIRING)

D. in physics, electrical engineering or related field with demonstrated skills in the following ... Department Office of Research - Nanoscience Technology Center (NTC) - Operations CG Work Schedule ...

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Nano Engineering information

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$12

$23

$33

How much do nano engineering jobs pay per hour?

As of Aug 8, 2026, the average hourly pay for nano engineering in Florida is $23.00, according to ZipRecruiter salary data. Most workers in this role earn between $17.79 and $26.92 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a nano engineer, and why are they important?

To thrive as a Nano Engineer, you need a strong background in physics, chemistry, materials science, and nanotechnology, typically supported by a relevant engineering degree. Familiarity with tools like scanning electron microscopes (SEM), atomic force microscopes (AFM), and nanofabrication software, as well as certifications in cleanroom safety, are often required. Attention to detail, problem-solving, and effective collaboration are essential soft skills for success in interdisciplinary teams. These competencies are crucial for developing innovative nanoscale solutions, ensuring precision, and advancing technology in fields such as electronics, medicine, and materials science.

What does a nano engineering do?

A nano engineer designs, develops, and applies materials and devices at the nanoscale, typically between 1 and 100 nanometers. They work with advanced tools like electron microscopes and focus on fields such as electronics, medicine, and materials science to create innovative solutions. Strong knowledge of physics, chemistry, and engineering principles is essential for this role.

What is the difference between nano engineering and nanotechnology?

People often use the terms nanoengineering and nanotechnology interchangeably. However, they are slightly different. As the name implies, nanoengineering focuses more on the engineering and product development side of the field. Nanotechnology is more of an umbrella term that covers the entire scientific field. In a nanotechnology role, you may focus entirely on the pure science of the field. In short, nanotechnology is simply the field of study that focuses on the nanoscale, while nanoengineering focuses on the actual engineering. The fields are closely related, and often, those who focus on one have the skills to work in both.

What are some common challenges faced by nano engineers when working on interdisciplinary teams?

Nano engineers often collaborate with professionals from diverse backgrounds such as materials science, chemistry, biology, and electrical engineering. One common challenge is effectively communicating complex nanoscale concepts to team members who may not have specialized knowledge in nanotechnology. Additionally, aligning project goals and timelines across disciplines can require flexibility and strong organizational skills. Overcoming these challenges not only enhances project outcomes but also helps nano engineers build valuable cross-functional experience for career growth.

What can you do with a nano engineering degree?

A nano engineering degree prepares individuals for careers in research, development, and manufacturing involving nanomaterials, nanodevices, and nanosystems. Graduates can work in industries such as electronics, healthcare, energy, and materials science, often utilizing skills in microscopy, characterization tools, and programming. The field requires strong problem-solving abilities and knowledge of physics, chemistry, and engineering principles.

What is nano engineering?

Nano engineering is a branch of engineering that focuses on designing, creating, and utilizing materials and devices at the nanometer scale, typically less than 100 nanometers. It combines principles from physics, chemistry, biology, and engineering to manipulate matter at the atomic and molecular level for various applications. These applications can include electronics, medicine, energy, and materials science, among others. Nano engineers work to develop innovative solutions like stronger materials, targeted drug delivery systems, and advanced sensors. This field requires a strong foundation in science and mathematics, as well as knowledge of nanotechnology tools and techniques.

What is the difference between Nano Engineering vs Materials Science?

AspectNano EngineeringMaterials Science
Required CredentialsBachelor's or higher in Nano Engineering, Materials Science, or related fieldsBachelor's or higher in Materials Science, Chemistry, or Physics
Work EnvironmentResearch labs, manufacturing facilities, R&D departmentsResearch labs, manufacturing, academia, industry
Industry UsageElectronics, healthcare, energy, nanotechnology startupsAutomotive, aerospace, electronics, academia

Nano Engineering and Materials Science share overlapping skills and work environments, but Nano Engineering focuses specifically on manipulating materials at the nanoscale for innovative applications, while Materials Science covers broader material properties and applications across various industries.

Infographic showing various Nano Engineering job openings in Florida as of August 2026, with employment types broken down into 90% Full Time, 5% Part Time, 4% Contract, and 1% Nights. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $47,849 per year, or $23 per hour.

Postdoctoral Research Associate in the Applied Superconductivity Center (NHMFL, OPS)

Florida State University

Tallahassee, FL • On-site

Full-time

Re-posted 10 days ago


Florida State University rating

7.7

Company rating: 7.7 out of 10

Based on 44 frontline employees who took The Breakroom Quiz

257th of 616 rated colleges and universities


Job description

Department
Applied Superconductivity Center - National High Magnetic Field Laboratory
Responsibilities
The Applied Superconductivity Center at Florida State University (FSU) and the National High Magnetic Field Laboratory (NHMFL) invite applications for a post-doctoral research associate position to perform nanostructural characterization using a variety of electron microscopy techniques. The position will focus on improving our understanding of the micro-, meso-, nano- and atomic-scale structural origins of the superconducting properties of high field superconductor tapes, wires, thin film and bulks with the aid of our advanced electron microscopes. Available equipment includes an aberration-corrected atomic resolution (scanning) transmission electron microscope (S/TEM), a focused ion beam (FIB) equipped FESEM and supporting sample preparation tools. The successful candidate would be a microscopist who focuses on materials science and problem solving. This position requires expertise in a TEM/STEM operation and FIB nano-fabrication so that the applicant can quickly begin actively participating in research. The successful applicant will become a member of a highly interactive and collaborative group that has along tradition of helping post-docs build a successful career in scientific research. The post doc will also be part of the strong post doc program at the MagLab.
Qualifications
Ph.D. in materials science, physics, engineering, chemistry, or related field completed within the last three years
  • Extensive prior experience in TEM/STEM operation and making TEM samples
  • Extensive prior experience preparing TEM specimens using FIB
  • Effective written and verbal communication skills as evinced by publications, presentations, cover letter, and references

Preferred Qualifications
  • Experience operating Cs-corrected STEMs
  • Experience in EELS or EDS in STEM

Other Information
Application package we request:
CV (Please list names and contact information of 2 possible references)
Cover letter addressing the qualifications outlined above.
One notable published paper or pre-print (co-)authored by the candidate (.pdf format)
Application package can be sent to:
Fumitake Kametani
  • Associate Professor
  • Department of Mechanical Engineering, Florida State University,
  • and Applied Superconductivity Center, National High Magnetic Field Laboratory
  • 2031 E. Paul Dirac Dr., Tallahassee, FL 32310
  • Tel: (850) 645-7491
  • E-mail: kametani@asc.magnet.fsu.edu

Helpful
Where You Will Work
The candidate will be working as a full member of the Applied Superconductivity Center (ASC) located in Tallahassee FL. As a part of National High Magnetic Field Laboratory (NHMFL), we are a 50-person center dedicated to understanding and advancing superconducting materials for superconducting magnet and RF applications. At present there are 13 graduate students, 3 postdocs and 23 scientific and support staff. 10-15 undergraduates also participate in research at the ASC in any given semester. ASC has multiple research programs and collaborators from all over the world. We offer students and postdocs the opportunity to work in a very interdisciplinary and interactive environment that has a track record of impactful scientific discoveries.
Major microscope-related instruments at FSU and NHMFL
  • JEOL ARM200cF Cs-corrected S/TEM with Electron Energy Loss Spectroscopy (EELS) and Energy-dispersive X-ray Spectroscopy (EDS), and now the MerlinEM 4D STEM detector from Quantum Detectors Inc is being installed.
  • FEI Helios G4 UC field emission scanning electron microscope and FIB equipped with Gas Injection System (GIS), in-situ lift-out tool and Leica cold stage, EBSD and EDS
  • JEOL IT-710HR Field emission SEM with EDS
  • Gatan PIPS ion mill
  • Micro Support Axis Pro SS ex-situ lift-out tool
  • JEOL IB-19500 CP ion cross section polisher

Contact Info
Interested candidates can contact Fumitake Kametani .
University Information
One of the nation's elite research universities, Florida State University preserves, expands, and disseminates knowledge in the sciences, technology, arts, humanities, and professions, while embracing a philosophy of learning strongly rooted in the traditions of the liberal arts and critical thinking. Founded in 1851, Florida State University is the oldest continuous site of higher education in Florida. FSU is a community steeped in tradition that fosters research and encourages creativity. At FSU, there's the excitement of being part of a vibrant academic and professional community, surrounded by people whose ideas are shaping tomorrow's news!
Learn more about our university and campuses.
How To Apply
If qualified and interested in a specific job opening as advertised, apply to Florida State University at https://jobs.fsu.edu. If you are a current FSU employee, apply via myFSU > Self Service.
Applicants are required to complete the online application with all applicable information. Applications must include all work history up to ten years, and education details even if attaching a resume.
Considerations
This is an OPS/temporary job.
Based on the duties, this position may require completion of a criminal history background check .
The position is full-time and includes health benefits.
This position is being re-advertised. Previous applicants need not reapply.
Equal Employment Opportunity
FSU is an Equal Employment Opportunity Employer.

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About Florida State University

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One of the nation's elite research universities, Florida State University preserves, expands, and disseminates knowledge in the sciences, technology, arts, humanities, and professions, while embracing a philosophy of learning strongly rooted in the traditions of the liberal arts and critical thinking. Founded in 1851, Florida State University is the oldest continuous site of higher education in Florida. FSU is a community steeped in tradition that fosters research, encourages creativity, and embraces diversity. At FSU, there's the excitement of being part of a vibrant academic and professional community, surrounded by people whose ideas are shaping tomorrow's news!

Industry

Colleges, universities, and professional schools

Company size

10,000+ Employees

Headquarters location

Tallahassee, FL, US

Year founded

1851