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Extreme-Scale, Nano & Fundamental Engineering

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Learn at the frontier

Quantum Gravity Research Intern

A literature-grounded comparison of how two quantum-gravity programmes treat the same limiting case.

Intern Internship On-site / Hybrid — Kolkata, West Bengal, India 6 Months

Engagement

Internship

Structured, hands-on mentorship for a fixed term. This internship is on site at Kolkata, with hybrid days available by prior arrangement. It is not a remote position.

Scope of role

Contribute to live projects. Shadow senior practitioners. Build a portfolio that matters.

Please note this is an unpaid internship — the offer is real work, mentorship and experience at the frontier, not a stipend.

Research classification

Mathematical Speculative frontier research Level 1 · Research and Engineering Intern Ultra-Fundamental & Mathematical Physics →

Proving results and building the mathematical structures other work is expressed in. Theorems and proofs, well-posedness and convergence results, formal statements of method.

Speculative frontier research. An open question that no current experiment can decide. Nothing in this area should be described, by us or by you, as a validated or available technology.

Scale range 10^-100 m to 10^-35 m

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10-100 m 100 m 10100 m
Experiments reach here 3 bands no experiment reaches This role

Nothing in this division is experimentally accessible. The Planck length is roughly 10^-35 m; the smallest distance any experiment has probed is around 10^-19 m, sixteen orders of magnitude larger. The frameworks worked on here are mathematically serious and experimentally undecided, and no result produced here should be described, by us or by you, as a demonstrated physical fact or an available technology. Scientific integrity is a condition of every role in this department. Assumptions are stated separately from conclusions. Uncertainty is reported. Negative and inconclusive results are written up, not discarded. Speculative work is labelled speculative, including when that makes it less impressive. Fabrication, falsification, and presenting a simulation as a measurement end an engagement here.

Scale bands are a research classification, not a claim of experimental reach. Most of this span cannot be probed by any apparatus that exists: nothing below about 10^-19 m has been measured directly, and anything at 10^26 m or beyond is inferred from observation rather than engineered. Every opportunity states the kind of work it actually is.

01 — The role

Why this role exists at EduRankAI

Department of Extreme-Scale, Nano & Fundamental Engineering, Division D01: Ultra-Fundamental & Mathematical Physics. This division asks what a physical theory would have to look like at scales no instrument reaches. It produces derivations, consistency results and reproducible computations, and it states in every result which parts are established, which are inferred, and which are conjecture. It builds no apparatus and it makes no engineering claim. This position: A literature-grounded comparison of how two quantum-gravity programmes treat the same limiting case. Scale range for this work: 10^-100 m to 10^-35 m. Research classification: Mathematical. Proving results and building the mathematical structures other work is expressed in. Evidential standing: Speculative frontier research. An open question that no current experiment can decide. Nothing in this area should be described, by us or by you, as a validated or available technology. Nothing in this division is experimentally accessible. The Planck length is roughly 10^-35 m; the smallest distance any experiment has probed is around 10^-19 m, sixteen orders of magnitude larger. The frameworks worked on here are mathematically serious and experimentally undecided, and no result produced here should be described, by us or by you, as a demonstrated physical fact or an available technology. Scale bands are a research classification, not a claim of experimental reach. Most of this span cannot be probed by any apparatus that exists: nothing below about 10^-19 m has been measured directly, and anything at 10^26 m or beyond is inferred from observation rather than engineered. Every opportunity states the kind of work it actually is. Level 1 (Research and Engineering Intern). One well-defined problem, delivered with a reproducible artefact and a short written report.

02 — The work

What you will own

  • 01 Formulate rigorous mathematical models of the systems the division studies, with assumptions stated explicitly.
  • 02 Investigate the internal consistency of theoretical frameworks and record precisely where each one breaks.
  • 03 Develop numerical calculations and simulations where a closed-form result is unavailable.
  • 04 Derive analytic results and check them against limiting cases that are already known.
  • 05 Quantify what a result depends on, and identify what would falsify it.
  • 06 Build reproducible research software that another person can run and obtain the same numbers from.
  • 07 Classify every claim as established, inferred, or speculative, in writing, before it is published anywhere.
  • 08 Work on one clearly scoped problem for the duration, with a written result at the end rather than a status update.
  • 09 Meet a named supervisor weekly and come to that meeting with what did not work as well as what did.

03 — The expertise

What we look for

Can derive the Euler-Lagrange equations for a field theory from its action and state the symmetries that follow.Fluent with tensor calculus in index and index-free notation, including covariant differentiation and curvature.Has taken a graduate course in general relativity or quantum field theory and can reproduce its central derivations.Can implement a numerical calculation in Python, Julia or C++ and state its convergence behaviour.Writes results with assumptions listed separately from conclusions.PythonJuliaC++Symbolic mathematics

04 — The bar

Who thrives here

  • Education: Final years of an undergraduate degree, or a postgraduate student, in a relevant discipline.
  • Experience: No professional experience required. Must be able to show at least one completed project with code or a written result somebody else can read.
  • Scope of the role: One well-defined problem, delivered with a reproducible artefact and a short written report.
  • Must have: Can derive the Euler-Lagrange equations for a field theory from its action and state the symmetries that follow. Also: Fluent with tensor calculus in index and index-free notation, including covariant differentiation and curvature.
  • Portfolio: at least one piece of work — code, a written result, a thesis chapter, a preprint — that somebody outside your institution can read and assess. It does not need to be published.
  • Available for a full-time internship for the stated duration, working the hours set out under Terms of Engagement.

Terms of Engagement

How this internship is structured

6 days a week, about 40 hours of total engagement — 5 hours a day of project work and departmental responsibilities, plus 1 hour 40 minutes a day of holistic well-being and personal development.

Type

Full-Time

Working days

6 per week

Rest days

1 per week

Total engagement

~40 hrs/week

Project work

5h per day

Well-being

1h 40m per day

Duration

12 weeks

Project work and departmental responsibilities and holistic well-being and personal development together make up the total engagement above — the total is not all task output. Well-being time covers physical fitness, mindfulness, reading, reflective learning, leadership development and community engagement. About 480 hours of total engagement over 12 weeks — 360 hours of project work and 120 hours of well-being and personal development.

Measured by

Weekly mentor review against a published rubric, plus the completion of the recorded hours. Working materially over the commitment is treated the same as working under it.

Where this stands legally

Offered under the applicable AICTE internship framework, where one academic credit corresponds to a minimum of 45 hours of work — which is why these hours are counted and certified. The engagement sits well inside the 9-hour day and 48-hour week ceiling of the applicable state Shops and Establishments Act, and the seventh day is a full rest day.

At a minimum of 45 hours of work per academic credit, this engagement is equivalent to roughly 10.7 credits. Your institution decides what it awards; EduRankAI records the hours and the work.

The full per-level model is published at Working Hours by Level.

05 — Hiring process

What to expect after you apply

  1. 01

    Application review

    Every application is read personally within five business days. We respond either way.

  2. 02

    Take-home or live exercise

    Role-specific. Time-boxed. Real problems we are actually working on, not invented puzzles.

  3. 03

    Conversations

    Deep technical and values conversations with the team you would join. No trick questions. No panel ambushes.

  4. 04

    Offer or honest no

    If yes: digital offer letter, signed in-portal, transparent terms. If no: written feedback if you want it.

The standard

What you deliver, and how it is judged

Deliverables

  • Written derivations with assumptions, limits of validity and known failure modes stated.
  • Reproducible computational notebooks or codes with a fixed environment and seeded runs.
  • Internal notes that a colleague in another division can act on without a conversation.
  • A statement, for each result, of what observation or calculation would contradict it.

Evaluation criteria

  • Correctness of derivation, checked against known limits.
  • Reproducibility: does the code produce the reported number on another machine.
  • Clarity about what is assumed versus what is concluded.
  • Honesty about negative and inconclusive results, which are reported rather than discarded.

Preferred, not required

Nothing in this list is a bar to applying.

Working knowledge of differential geometry: manifolds, connections, fibre bundles.Familiarity with at least one quantum-gravity programme in enough depth to state its open problems.Experience with a computer algebra system for tensor manipulation.Has read and reconstructed a research paper end to end, including the steps it skipped.Topology or algebraic geometry beyond a first course.Experience with lattice or Monte Carlo methods applied to a field theory.A preprint, thesis chapter or public write-up somebody else can read.

Tools you would work in

SymPy or MathematicaxAct or an equivalent tensor packageNumPy and SciPyLaTeXGitJupyter

Reports to: Ultra-Fundamental & Mathematical Physics Lead

Works with: D02, D09, D15

Before you start

What we will collect. What it costs. What we will not do with it.

We will collect

  • Name, email, phone — Account + application updates. No marketing.
  • Resume / portfolio link — Human review of your work.
  • Date + place of birth — Identity verification only.
  • Your written responses — Selection rubric. Read by humans.
  • Government ID (later) — Anti-fraud at offer / interview stage. Not at signup.

We will never

  • Sell your data
  • Share with third-party recruiters
  • Use for advertising
  • Train models on it
  • Send marketing email

Our situation

EduRankAI is a small, independent organization building long-term capabilities in educational intelligence, advanced AI systems, and research infrastructure. We take no advertiser money, no donations with strings attached, and no investor pressure on hiring decisions. Applying is free, and every application is read by a human — recruitment, technical, academic and leadership teams. It buys us the right to be honest.

Full transparency policy Questions? Email us

Ready to apply?

We read every application personally. If you are the right person for this role — regardless of pedigree, background, or where you are based — you will hear back from us within five business days.

Apply through this page. You will be asked for your education, your experience, and links to work we can actually read — a repository, a write-up, a thesis chapter, a preprint. Send the piece of work you would defend, not the one with the best title. If a result in it turned out to be wrong, say so; we would rather read that than not know. Every application is read by a person. We assess applications on evidence of the work. We do not filter on institution, on age, on gender, on caste, on religion, on disability, or on where you are from. If any part of this process is inaccessible to you, tell us and we will change it for you.

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Quantum Gravity Research Intern

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