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Internship Observational Astronomy Jobs (NOW HIRING)

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How much do internship observational astronomy jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for internship observational astronomy in the United States is $15.54, according to ZipRecruiter salary data. Most workers in this role earn between $12.50 and $17.55 per hour, depending on experience, location, and employer.

What is the difference between Internship Observational Astronomy vs Astronomy Research Assistant?

AspectInternship Observational AstronomyAstronomy Research Assistant
Required CredentialsTypically undergraduate or early graduate level, basic knowledge of astronomyAdvanced degree often required, specialized knowledge in astronomy or astrophysics
Work EnvironmentObserving sessions, data collection, assisting with telescope operationsData analysis, research project support, laboratory or office setting
Employer & Industry UsageUniversities, research institutes, observatoriesUniversities, research labs, government agencies

Internship Observational Astronomy focuses on hands-on experience with telescopes and data collection, often for students early in their careers. Astronomy Research Assistants typically hold higher qualifications and engage in detailed data analysis and research support. Both roles are vital in the astronomy field but differ in responsibilities and experience levels.

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Infographic showing various Internship Observational Astronomy job openings in the United States as of August 2026, with employment types broken down into 12% Internship, 58% Full Time, 27% Part Time, 1% Temporary, and 2% Contract. Highlights an 85% Physical, 2% Hybrid, and 13% Remote job distribution, with an average salary of $32,333 per year, or $15.5 per hour.

Far Horizons Undergraduate Intern

Adler Planetarium

Chicago, IL • On-site

$18.02/hr

Temporary

Retirement, PTO

This job post has expired today. Applications are no longer accepted.


Key responsibilities

  • Design, build, and test a prototype star tracker, including hardware and software components.

  • Assemble the prototype and integrate software for image acquisition, star identification, and data communication.

  • Conduct tests to evaluate the star tracker's performance and analyze test data to make design improvements.


Job description

Far Horizons Undergraduate Intern

Part-Time Temporary

Non-Exempt




About the Adler Planetarium

The Adler Planetarium connects people to the universe and each other. Whether introducing a guest to the Ring Nebula, a neighborhood school to a community partner, a research team to a network of citizen scientists, or one staff member to another, the Adler's focus on meaningful connections dates back nearly a century.


Today, the museum typically hosts close to 400,000 visitors annually and reaches millions more through youth STEAM programs, neighborhood skywatching events, online citizen science, and other outreach efforts. With the Adler's support, people of all ages, backgrounds, and abilities gain the confidence to learn more about science and space discovery, and to explore their universe together under the sky we all share.



The Position

The Adler Planetarium is seeking three Far Horizons Undergraduate Interns to join our dynamic team on Chicago's Museum Campus. The interns will work with the Far Horizons team to design, build, and test a prototype star tracker for the Adler's Rapid Deployment Stratospheric UV Observatory. A star tracker is a camera-based navigation instrument that images the sky, identifies stars in its field of view, and uses their positions to determine the instrument's pointing direction.


The project combines astronomy, optical instrumentation, electronics, embedded computing, software, data analysis, and hands-on engineering. The interns will assemble a working prototype, develop and integrate software for image acquisition and astrometric solving, characterize its performance under realistic conditions, and use test results to improve the design. The prototype will be tested both on the ground and aboard a high-altitude balloon launched and recovered with the Far Horizons team.


This individual (as part of the team) will also be responsible for:


  • Developing the hardware and software design of a prototype star tracker, including camera, optics, computer, sensors, mechanical mounting, power, thermal considerations, and system interfaces.

  • Assembling and configuring the prototype and integrating software for image acquisition, star identification, astrometric solutions, inertial-sensor data, data logging, and communication of pointing information to a flight computer.

  • Conducting laboratory and night-sky tests to measure sensitivity, pointing accuracy, solution rate, optical performance, motion effects, thermal behavior, and reliability; analyzing test data and making design improvements.

  • Participating in preparation, launch, tracking, and recovery of a high-altitude balloon flight used to test the star tracker, and documenting the design, test procedures, results, and recommendations for future development.


The internship is expected to run through the 2026-27 academic year. Work will primarily take place at the Adler Planetarium for approximately six hours on Saturdays, with approximately two additional hours of remote or independent work during the week. The internship is designed as a sustained engineering project of approximately 240 hours per Intern. Some night-sky testing will be required, and at least one high-altitude balloon mission will take place from a field location in the Chicago region during the internship.



The Work Schedule

The typical work schedule for this position is 8 hours per week, from 10 AM to 4 PM, with a flextime and telecommuting option—1 day a week telecommuting and 1 day onsite at the museum.


The Compensation & Benefits (Part-Time)

Base Pay Range: $18.02/hr

Work-Life Balance

  • 7 to 25-hour workweek

  • Eligible to accrue up to 6 vacation days per year

  • 3 sick days as of date of hire (can accrue up to 6.5 days per year)

  • Eligible to earn time and a half for working on any of the 7 Adler-observed holidays

  • Flexible work arrangements

  • Paid Family Bereavement Leave & Jury Duty

  • Paid Parental Leave

Commuter flexible spending account

Retirement Savings Plan

  • 403B plan with Adler match

  • Adler match is 100% vested immediately

  • Eligible to enroll as of the date of hire  

 Network of Support through our EAP programs

  • Resources to help address emotional, legal, and financial issues

  • Face-to-face, telephonic, and web-based services

  • Free subscription to the Calm Premium app

 Employee Loan Program

 Discounted Onsite Parking Program

 Free Entrance to Chicago area museums and cultural institutions



The Person

The ideal Far Horizons Undergraduate Intern is curious about how scientific instruments work and interested in applying science, programming, and engineering to a real research problem. This may include interest or experience in engineering, computer science, physics, astronomy, robotics, or related STEM fields. They are eager to build and test hardware, work with data, troubleshoot problems systematically, and learn new technical skills along the way. The Intern should be detail-oriented, resourceful, open to feedback, and able to work collaboratively as part of a small project team.


Required Qualifications:

  • High school diploma or equivalent

  • Active enrollment in an undergraduate program in Illinois, or an Illinois resident enrolled in an undergraduate program in engineering, computer science, physics, astronomy, or a related STEM field.

  • Basic quantitative and computer skills appropriate to an undergraduate STEM student

  • Demonstrated interest in hands-on technical, scientific, or engineering work through coursework, projects, clubs, hobbies, employment, or other activities.

  • Ability and willingness to learn programming, electronics, optical instrumentation, data analysis, and scientific testing; prior experience with star trackers or astronomical instrumentation is not required


Preferred Qualifications: 

  • Some experience with Python or another programming language

  • Experience with Raspberry Pi, Arduino, or similar computers or microcontrollers

  • Experience with electronics, sensors, mechanical assembly, prototyping, or instrumentation

  • Famil