At a Glance
- Tasks: Solve advanced physics problems and contribute to AI training projects.
- Company: Join a cutting-edge company focused on innovative scientific solutions.
- Benefits: Earn $100β$200/hour with flexible remote work hours.
- Other info: Engage in a dynamic, fully remote role with flexible scheduling.
- Why this job: Make a real impact in AI while utilising your physics expertise.
- Qualifications: PhD in Physics or advanced-stage PhD candidacy required.
The predicted salary is between 200 - 200 Β£ per hour.
Physics Expert (Ph D / Postdoc)
Position
Physics Expert (Ph D / Postdoc)
Type
Contractor
Compensation
Location
- Remote β Worldwide
- About the Opportunity micro1 is engaging
Physics Experts at the Ph D and Postdoctoral level to contribute advanced scientific knowledge and rigorous problem-solving skills to a high-impact customer project focused on training next-generation AI systems.
In this role, you will solve challenging physics problems within your area of specialization, produce technically rigorous solutions, and help improve how AI systems learn and reason about advanced scientific concepts.
No prior AI experience is required
β your physics expertise is the primary qualification.
Responsibilities
- Solve advanced physics problems within your research specialization, providing rigorous derivations and detailed analyses.
- Produce technically precise and clearly structured solutions using
La Te X mathematical notation .
- Clearly document assumptions, approximations, intermediate reasoning, and final results.
- Use
Sym Py, Python, and Jupyter for symbolic or numerical verification and reproducible computational workflows where appropriate.
- Identify important subtleties in problem statements, including special cases, boundary conditions, limiting cases, and dimensional consistency.
- Identify ambiguities or potential issues in project materials and propose well-reasoned interpretations or clarifications.
- Review and revise submitted solutions based on feedback from project reviewers.
- Integrate corrections accurately while maintaining consistency and clarity.
- Follow rigorous documentation and reproducibility standards consistent with professional scientific research.
- Required Qualifications
- Ph D in
Physics or advanced-stage Ph D candidacy with active research experience in a relevant field.
- Demonstrated research expertise in at least one advanced physics subfield.
- Strong analytical and mathematical problem-solving abilities.
- Excellent technical writing skills and the ability to communicate complex scientific concepts precisely.
- Proficiency with
La Te X for mathematical and scientific writing.
- Working proficiency with
Python, Sym Py, and Jupyter for computational or numerical work.
- Ability to independently analyze complex physics problems and produce well-supported solutions.
- Strong attention to mathematical and physical consistency.
- Preferred Qualifications
- Active or recent research experience in one or more of the following areas:
- High Energy Physics
- Mathematical Physics
- Biophysics
- Statistical Physics
- Condensed Matter Physics
- MoirΓ© Systems
- Magnetism
- PXP / Rydberg Systems
- AMO / Quantum Optics
- Gravitation
- Cosmology
- Astrophysics
- Quantum Information
- Optical Properties of Materials
2β5 recent representative publications from approximately the past five years, with accessible ar Xiv or DOI records.
- Experience producing rigorous scientific publications, technical reports, or research documentation.
- Ability to identify nuanced physical principles and distinguish between valid and invalid solution approaches.
- Willingness to indicate areas where additional computational or technical support may be useful.
- Key Areas of Expertise
- Advanced Physics
- Mathematical Physics
- Theoretical & Computational Physics
- Scientific Problem Solving
- Mathematical Derivations
- La Te X
- Python
- Sym Py
- Jupyter
- Numerical & Symbolic Computation
- Scientific Modeling
- Technical Research Communication
- Scientific Documentation
- Research Reproducibility
- Engagement Details
Compensation
Commitment
10β15+ hours per week
Project Duration
Approximately 8β10 weeks
Work Arrangement
Fully remote
Schedule
Fully flexible, including the ability to work after hours or on weekends
Start
- Immediate project engagement expected
- Eligibility
Candidates should have advanced academic or research expertise in physics, strong mathematical and computational fluency, and the ability to consistently deliver rigorous, well-documented scientific solutions throughout the engagement.
- Application Process
- Submit your resume and complete the application form.
- Highlight your physics specialization, research experience, publications, and computational expertise.
- Participate in any required screening or technical evaluation.
- Receive further instructions regarding onboarding and project participation.
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