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Nano Engineering Jobs in Colorado (NOW HIRING)

Spacecraft Thermal Engineer

Denver, CO ยท On-site

$120K - $160K/yr

Background in nano satellites and small satellites * Thorough understanding of mechanical engineering What do we offer? * Health insurance coverage * Matching 401k plan * Collaboration with EnduroSat ...

Spacecraft Thermal Engineer

Denver, CO ยท On-site

$120K - $160K/yr

Background in nano satellites and small satellites * Thorough understanding of mechanical engineering What do we offer? * Health insurance coverage * Matching 401k plan * Collaboration with EnduroSat ...

Showing results 41-60

Nano Engineering information

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$17

$32

$46

How much do nano engineering jobs pay per hour?

As of Sep 3, 2026, the average hourly pay for nano engineering in Colorado is $32.37, according to ZipRecruiter salary data. Most workers in this role earn between $25.00 and $37.93 per hour, depending on experience, location, and employer.

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 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 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 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 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.

Is nano engineering in demand?

Nano engineering is a growing field with increasing demand in industries such as electronics, healthcare, and materials science. Professionals with skills in nanofabrication, characterization, and related tools are sought after as technology advances and research expands.

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 nanoscale systems. Graduates can work in industries such as electronics, healthcare, energy, and materials science, often utilizing tools like electron microscopes and cleanroom environments. The degree also provides a foundation for further study or specialized certifications in nanotechnology fields.

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.
Infographic showing various Nano Engineering job openings in Colorado as of August 2026, with employment types broken down into 87% Full Time, 10% Part Time, 2% Contract, and 1% Nights. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $67,329 per year, or $32.4 per hour.

NIST PREP Quantum Transduction Scientist

Southeastern Universities Research Association

Boulder, CO โ€ข On-site

$67K - $69K/yr

Full-time

Re-posted 24 days ago


Job description

This position is part of the National Institute of Standards and Technology (NIST) Professional Research Experience Program (PREP). NIST recognizes that its research staff may want to collaborate with researchers at academic institutions on specific projects of mutual interest and, therefore, requires those institutions to be recipients of a PREP award. The PREP program involves staff from a wide range of backgrounds conducting scientific research across various fields. Individuals in this position will perform technical work supporting the collaboration's scientific research.
Research Title: Quantum Transduction Postdoctoral Fellow
The work will entail: The Quantum Nanophotonics group has recently demonstrated hybrid systems combining semiconductor optical quantum dots (QDs) and acoustic resonators as a promising platform for quantum information processing and transmission. All aspects of this work are performed 'in house' using NIST's state-of-the-art nanofabrication, molecular beam epitaxy, and low-temperature optical spectroscopy tools. The successful candidate will help lead this project, building on recent accomplishments, towards the goal of generating remote entanglement between superconducting qubits.
U.S. Citizen Preferred
Key responsibilities will include but are not limited to:
  • Design and construct GHz frequency acoustic resonators in Gallium Arsenide.
  • Precision spectroscopy of Indium Arsenide quantum dots (QDs) embedded in acoustical resonators.
  • Epitaxial growth and nanofabrication of QD hybrid quantum systems.
  • Analyze and interpret the microwave and optical characteristics of the hybrid microwave/optical system.
  • Work as a member of a collaborative, interdisciplinary team.
  • Provide technical input to research problems which have been recognized as critical obstacles to progress in areas of exceptional interest.
  • Prepare and review journal publications, contributing important advancements to quantum optics, quantum networking, optical communications, and optical measurement techniques.
  • Attend research conferences and present technical results.

Qualifications (required)
  • Doctoral degree in Physics or closely related field.
  • Expertise in spectroscopy on optical two-level systems at cryogenic temperatures, with specific emphasis on the resonance-florescence method.
  • Expertise in growth of compound semiconductors using Molecular Beam Epitaxy.
  • Experience running and maintaining state-of-the-art nanofabrication tools.
  • Experience with optical measurement techniques such as coherent detection, confocal microscopy, laser diagnostics, noise characterization, and statistical optics.
  • Experience in cryogenic measurements at liquid Helium temperatures
  • Experience in finite-element simulation of semiconductor electro-mechanical devices.
  • Strong oral and written communication skills.
  • Ability to code with code with: MATLAB or Python.
  • Experience with maintaining and running a dilution refrigerator.

Privacy Act StatementAuthority: 15 U.S.C. ยง 278g-1(e)(1) and (e)(3) and 15 U.S.C. ยง 272(b) and (c)
Purpose: The National Institute for Standards and Technology (NIST) hosts the Professional Research Experience Program (PREP) which is designed to provide valuable laboratory experience and financial assistance to undergraduates, post-bachelor's degree holders, graduate students, master's degree holders, postdocs, and faculty.
PREP is a 5-year cooperative agreement between NIST laboratories and participating PREP Universities to establish a collaborative research relationship between NIST and U.S. institutions of higher education in the following disciplines including (but may not be limited to) biochemistry, biological sciences, chemistry, computer science, engineering, electronics, materials science, mathematics, nanoscale science, neutron science, physical science, physics, and statistics. This collection of information is needed to facilitate administrative functions of the PREP Program.
Routine Uses: NIST will use the information collected to perform the requisite reviews of the applications to determine eligibility, and to meet programmatic requirements. Disclosure of this information is also subject to all the published routine uses as identified in the Privacy Act System of Records Notices: NIST-1: NIST Associates.
Disclosure: Furnishing this information is voluntary. When you submit the form, you are indicating your voluntary consent for NIST to use of the information you submit for the purpose stated.
SURA is an Equal Opportunity Employer. We believe that no one should be discriminated against because of their differences, such as age, disability, ethnicity, gender, gender identity and expression, religion, or sexual orientation. All employment decisions shall be made without regard to age, race, creed, color, religion, sex, national origin, ancestry, disability status, veteran status, sexual orientation, gender identity or expression, genetic information, marital status, citizenship status, or any other basis as protected by federal, state, or local law.
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