3

Part Time Remote Quantum Computing Jobs (NOW HIRING)

... on remote work at Penn State, seeNotice to Out of State Applicants. AND POSITION REQUIREMENTS The part-time research assistant will design and evaluate routing algorithms for quantum networks. The ...

$15.75 - $21/hr

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... Computing at the University Park campus in Pennsylvania is hiring part-time positions to assist ...

$15/hr

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... Job duties to include: * develop modeling and optimization methods for microgrids. * evelop quantum ...

Approval of remote and hybrid work is not guaranteed regardless of work location.For additional ... quantum dot fluorescent probes, optical microscopy, and aerosol science. To apply, please submit a ...

next page

Showing results 1-20

Part Time Remote Quantum Computing information

What is a part time remote quantum computing?

A part-time remote quantum computing job involves working on quantum computing projects or research from a location outside of a traditional office, typically from home, and for fewer hours than a standard full-time position. These roles can include programming quantum algorithms, contributing to research papers, or supporting the development of quantum hardware and software. Part-time remote positions offer flexibility in scheduling and often require strong knowledge in physics, mathematics, and computer science, as well as experience with quantum programming languages like Qiskit or Cirq. They are suitable for students, professionals seeking additional experience, or individuals balancing other commitments.

What are the key skills and qualifications needed to thrive as a part time remote quantum computing professional?

To thrive as a Part Time Remote Quantum Computing professional, you need a strong background in quantum mechanics, linear algebra, and computer science, typically supported by an advanced degree in physics, computer science, or a related field. Familiarity with quantum programming languages (such as Qiskit or Cirq), cloud-based quantum platforms, and version control systems is commonly required. Strong problem-solving abilities, self-motivation, and effective written communication are critical soft skills for remote collaboration and independent research. These skills are essential to contribute meaningfully to cutting-edge projects and adapt to the rapidly evolving quantum technology landscape.

What are some common challenges faced by part time remote quantum computing professionals, and how can they be addressed?

Part-time remote quantum computing professionals often face challenges such as staying updated with rapidly evolving technologies, limited access to specialized hardware, and collaborating effectively with distributed teams. To address these challenges, professionals should prioritize regular communication with team members, leverage cloud-based quantum computing platforms for hands-on experience, and allocate time for ongoing learning through online courses and community forums. Utilizing project management tools and participating in virtual meetings can also help maintain productivity and foster collaboration.

What are the most commonly searched types of Remote Quantum Computing jobs?

The most popular types of Remote Quantum Computing jobs are:

What other helpful pages are available for Part Time Remote Quantum Computing?

Other pages related to Part Time Remote Quantum Computing:

Infographic showing various Part Time Remote Quantum Computing job openings in the United States as of July 2026, with employment types broken down into 2% Locum Tenens, 88% Full Time, 9% Part Time, and 1% Contract. Highlights an 88% Physical, 2% Hybrid, and 10% Remote job distribution.

UNPAID VOLUNTEER - Technology Officer -Quantum Computing

Remote

Digital Technology Institute for Development (DTID)

Part-time

Posted 2 days ago

New


Job description

Role Title: Technology Officer - Quantum Computing
Role Type: Unpaid Volunteer
Number of Positions: 2
Location: Home-based / Remote
Reporting To: Chief Technology Officer (CTO)
THIS IS AN UNPAID VOLUNTEER ROLE.
About DTID
The Digital Technology Institute for Development (DTID) is an international non-profit institute advancing the responsible use of artificial intelligence, blockchain and emerging digital technologies to support sustainable development and policy implementation.
DTID brings together professionals, researchers, technology specialists and other stakeholders to generate research, develop practical solutions, strengthen partnerships and support informed decision-making at the intersection of technology, climate change and sustainable development.
The Role
DTID is seeking a technically capable and motivated Technology Officer - Quantum Computing to contribute specialist expertise to the development and application of quantum computing across DTID's technology and research activities.
The successful candidate will support research, technical development, Proof-of-Concept initiatives and the exploration of practical quantum-computing applications relevant to DTID's work.
The role will involve evaluating emerging quantum technologies, developing prototypes and technical solutions, contributing to research outputs and collaborating with colleagues across DTID to identify potential applications of quantum computing in areas such as climate modelling, optimisation, data analysis, sustainability and international development.
This role requires strong technical and analytical capability, independent research skills and the ability to translate complex quantum-computing concepts into practical applications.
Key Responsibilities
The Technology Officer - Quantum Computing will:
  • Research and evaluate developments, technologies and potential applications in quantum computing.
  • Support the development and implementation of DTID's quantum-computing initiatives.
  • Design, develop and test Proof-of-Concept applications and technical solutions using quantum-computing technologies.
  • Identify practical use cases for quantum computing relevant to DTID's research and programme priorities.
  • Contribute technical expertise to DTID research projects, technical papers and publications.
  • Evaluate relevant quantum platforms, frameworks, algorithms and development tools.
  • Prepare technical reports, specifications, research outputs and knowledge resources.
  • Collaborate with technology specialists, researchers and other teams across DTID.
  • Monitor emerging developments in quantum computing and related digital technologies.
  • Support knowledge-sharing and provide technical guidance to DTID colleagues where appropriate.
  • Contribute to the continuous improvement of DTID's technology capabilities and technical practices.
  • Undertake other reasonable responsibilities relevant to the role as assigned by the reporting manager or senior leadership.

Requirements
Skills and Abilities
Candidates should demonstrate:
  • Excellent written and spoken English.
  • Strong analytical, mathematical and problem-solving skills.
  • Good technical capability relevant to quantum computing.
  • Excellent organisational and time-management skills.
  • Strong attention to detail and accuracy.
  • Ability to undertake independent technical research and analysis.
  • Ability to translate complex technical concepts into clear information for technical and non-technical audiences.
  • Ability to manage assigned tasks and meet agreed deadlines.
  • Ability to work independently and take initiative.
  • Ability to collaborate effectively within technical and multidisciplinary teams.
  • Strong professional communication and presentation skills.
  • Ability to work effectively within a remote and internationally distributed organisation.
  • A methodological, proactive and solutions-focused approach to work.
  • Willingness to continuously learn and remain current with developments in quantum computing and emerging technologies.

General and Specialist Knowledge
Candidates should have knowledge or experience in one or more of the following areas:
  • Quantum computing principles and architectures.
  • Quantum algorithms and computational methods.
  • Quantum programming and software-development frameworks.
  • Quantum simulation and optimisation.
  • Quantum information science.
  • Linear algebra, probability, statistics and related mathematics.
  • Programming languages such as Python, C++, Q# or comparable languages.
  • Quantum-computing frameworks and platforms such as Qiskit, Cirq, PennyLane, Amazon Braket or Azure Quantum.
  • Classical and quantum hybrid-computing approaches.
  • Cloud-based computing platforms such as AWS, Microsoft Azure or Google Cloud Platform.
  • GitHub and other version-control or open-source development environments.
  • Technical documentation and research practices.

Knowledge or experience in quantum machine learning, optimisation, cryptography, climate modelling, data science or artificial intelligence would be advantageous.
A portfolio of technical work, open-source contributions or GitHub projects would also be advantageous.
Knowledge or interest in climate change, sustainability, international development, artificial intelligence, blockchain and other emerging digital technologies would be desirable.
Education and Training
Candidates should preferably possess:
  • A Bachelor's or Master's degree, diploma or equivalent qualification in Quantum Computing, Computer Science, Physics, Mathematics, Engineering, Information Technology or another relevant discipline.

Relevant professional qualifications, certifications or specialist training in quantum computing, quantum information science, physics, mathematics or a related technical field would be advantageous.
Equivalent technical training, professional experience or demonstrated capability may also be considered where appropriate.
  • Professional proficiency in English.

Knowledge of an additional international language would be advantageous.
Experience
Candidates should ideally demonstrate:
  • Professional, academic or practical experience in quantum computing, quantum information science or a closely related field.
  • Experience using quantum-computing frameworks, platforms or development tools.
  • Experience developing, testing or researching quantum algorithms or applications.
  • Experience contributing to technical research, Proof-of-Concepts or technology projects.
  • Experience working with relevant programming languages and technical development environments.
  • Experience preparing technical reports, documentation or research outputs.
  • Experience working independently and taking responsibility for assigned technical deliverables.
  • Experience collaborating within technical or multidisciplinary teams.

Experience contributing to open-source quantum-computing projects, research publications or a technical GitHub portfolio would be advantageous.
Experience within an international organisation, think tank, research institution, technology organisation, nonprofit organisation, climate or sustainability-focused organisation would also be advantageous.
Benefits
What Difference Will You Make?
Quantum computing is an emerging technology with the potential to transform complex optimisation, modelling, simulation and data-analysis challenges across multiple sectors.
As a Technology Officer - Quantum Computing, you will contribute technical expertise to DTID's research, innovation and emerging-technology initiatives.
Your contribution will help strengthen DTID's ability to research, evaluate and develop practical applications of quantum technologies in support of sustainable development, climate action and policy implementation.
Benefits
What Will You Gain from Volunteering with DTID?
Although this position is unpaid, volunteering with DTID provides opportunities to:
  • Gain practical experience within an international, volunteer-led organisation.
  • Apply and strengthen quantum-computing expertise.
  • Contribute to Proof-of-Concepts, technical research and emerging-technology initiatives.
  • Gain exposure to artificial intelligence, blockchain and other emerging digital technologies.
  • Develop experience applying advanced technology to climate, sustainability and international-development challenges.
  • Work within a fully remote and globally distributed team.
  • Collaborate with researchers, technology specialists and professionals from different countries and disciplines.
  • Strengthen technical research, communication and stakeholder-management skills.
  • Build international professional networks and long-term professional relationships.
  • Contribute directly to DTID's mission and institutional development.

Selection Process
DTID is committed to identifying talented individuals with both demonstrated expertise and strong potential.
As a volunteer-led organisation, DTID recognises that candidates may have acquired their skills through different professional, academic or practical pathways. Applications may therefore be considered on the basis of demonstrated capability, relevant experience, transferable skills and potential.
The selection process will normally include:
  1. Application screening
  2. Written or technical assessment
  3. Interview and/or technical discussion for shortlisted candidates
  4. Final selection and onboarding

Candidates who successfully complete the written or technical assessment will be invited to progress to the next stage of the recruitment process.
Important Notice
This is an unpaid volunteer position.