Teach a whole semester of quantum on one platform.
Lessons your students read, labs they build, circuits that actually run on simulators and real QPUs, checks the server grades, and a certificate anyone can verify. You get the roster, the assignments, the score grid and the export.
100 free credits per account no card works in a browser
| Student | Unit 1 | Unit 2 | Exam | Runs |
|---|---|---|---|---|
| A. Yılmaz | 100% | 92% | 88 | 14 |
| M. Haddad | 100% | in progress | — | 9 |
| S. Demir | 96% | 100% | 94 | 22 |
| K. Öztürk | late | not started | — | 3 |
From roster to transcript, in four moves.
Nothing to install, nothing to host. A class is created in the browser, and every student works in the same place they run their circuits.
Create the class
Name, term and course code. Invite students by email or CSV, or share a join code. Roles: teacher, assistant, student.
Teacher · 2 minutesAssign the syllabus
Assign a lesson, a whole unit, a program or an exam — with a due date. Or write your own homework and ask for a run id as the answer.
TeacherStudents learn by running
Read, build the circuit, predict the outcome, then run it for real. The server grades the checks; the credits come out of the budget you set.
StudentGrades and credentials
A score grid per class, an activity feed of what everyone did, CSV export for your own records — and a signed certificate for those who finish.
Teacher · RegistrarLearn it by running it.
- A lesson is theory → lab → a real run → a graded check, not a video wall. Every lesson says how long it takes and what it costs.
- Predict before you run. The learner locks a prediction, runs the circuit, then sees predicted vs observed — the part that teaches.
- A circuit builder and a Python notebook in the browser; the same code works from the SDK.
- RoRo Copilot explains a lesson in writing or reads it out loud — priced per use, never required.
- A personal profile: lessons, hours, average score, real runs, certificates. Private by default, public if they choose.
See everything, spend nothing you didn't plan.
- Score grid: per student, per assignment — completed, score, attempts, submissions, last active.
- Activity feed: lessons finished, runs submitted, homework handed in, exams graded — filterable by kind and period.
- Your own homework: instructions in markdown, a due date, points, and a run id as proof of work. Grade it with feedback.
- Exam windows: an exam assigned to the class only opens inside the window you set.
- Budgets: every student's spend is visible, and org budgets cap it. CSV export whenever the registrar asks.
Six tracks, from first gate to real hardware.
Assign a whole track, a single unit, or build your own order — the platform tracks progress either way. English and Turkish throughout; Arabic on the interface and on a growing set of lessons.
The Circuit Builder
No math required. Gates, wires, measurement and shots — ending with a Bell state the student runs for real.
Qubits to algorithms
Superposition, entanglement, rotations, Deutsch–Jozsa and Grover, teleportation, measurement, noise, error correction, the Fourier transform, and a capstone.
Working on real machines
Measure what noise does to a result, take some of it back with readout mitigation and zero-noise extrapolation, then meet real error correction — and see exactly where a simulator stops and hardware has to begin.
Mathematics & algorithms
Complex numbers, linear algebra, operators and Dirac notation; then Deutsch, Grover, QFT, VQE/QAOA and Shor at university depth.
Encoding, optimization, machine learning
Turn classical data into a quantum state and read the bill for it; turn a decision problem into a cost function and into QAOA; and build QML by hand, limits included.
Quantum for decision-makers
What quantum computing can and cannot do for an organisation today — use cases, timelines, and how to judge a claim, including one of ours.
Also on the platform: a guided program (11 lessons, sections and a timed final exam that issues a certificate), a QML playground, and a lab with a Python notebook. Course content is authored by us and reviewed before it ships; you can assign it in any order.
A grade you can defend.
Everything that counts toward a score is decided on the server. The browser never holds the answer key.
Server-side grading
Quiz, exam and typed answers are graded by the API; the public lesson JSON carries no answers. Every attempt is logged, with a rate cap against brute force.
Computed variants
Exam questions are sampled per session with computed parameters, so two students rarely see the same paper — and a retake is not the same paper either.
Work proven by runs
A lab counts when the run exists, belongs to that student and its measured distribution satisfies the challenge — not when a button was clicked.
Timed, windowed, logged
Timers, attempt limits and cooldowns; class exams only open inside the teacher's window; anomalies are flagged for review.
Two kinds of certificate
Every certificate states its basis: completion or exam-verified. New program certificates are issued only after a passed exam.
Publicly verifiable
Each certificate is Ed25519-signed and carries a verification URL anyone — a registrar, an employer — can open without an account.
Content is free. You pay for the machines.
Lessons, exams and certificates cost nothing. Credits pay for what actually consumes hardware: circuit runs and Copilot. Every rate is public.
- Every account starts with 100 free credits — enough for a term of simulator labs.
- A run costs shots × the machine's per-shot rate. The cheapest simulator is 0.005 cr/shot; a 1,000-shot lab is 5 credits.
- The institution buys credits once and allocates budgets per student; spend is visible per class.
- Real QPU time is priced per shot too — a class usually shares one submitted job rather than 50.
- One lab run — 1,000 shots on RoRo Sim 1,000 × 0.005 = 5 cr
- One student — 4 runs a week 4 × 5 = 20 cr
- One semester — 15 weeks 15 × 20 = 300 cr
- The whole class — 50 students 50 × 300 = 15,000 cr
- Three 5,000-credit packages 3 × $47.50 = $142.50
A full semester of weekly quantum labs for fifty students: $142.50 — under $3 per student, before their own free credits.
The things you'll ask first.
Can I use my own syllabus and my own assignments?
Yes. Assign our lessons and units in any order, add your own homework with instructions and a due date, and require a run id as the answer so the work is verifiable. Authoring your own lessons inside the platform is an operator-assisted step today — send us the material and we load it for you.
How do students sign in? Do you support SSO or an LMS?
Today: email one-time codes, plus class invitations by email or CSV and a join code. Google and Microsoft sign-in are next; LTI for Moodle/Canvas is on request as part of a pilot — tell us which LMS and we'll scope it.
Do the students really run on quantum hardware?
Yes — the same API serves simulators and real QPUs from seven makers. Coursework runs on simulators (instant, cheap); hardware runs are a deliberate, priced step, usually once per unit and often submitted once for the whole class to analyse.
Is the certificate worth anything?
It is a signed, verifiable record of what the student did — issued by us, not an accreditation body. It states whether it was earned by completion or by a passed exam, and its verification page shows the same. Institutions can have their own branding on it.
Where is our data, and can we get it out?
Data lives in the EU (Germany). CSV export of grades is one click; run records and certificates are exportable too. We sign a DPA — ask and we'll send the template with the pilot documents.
What does a pilot look like?
One course, one term: we set up the institution and the class, grant the credit budget, and walk the instructor through the first two weeks. You keep everything the students produced. Talk to us and we'll size it for your cohort.
Bring one course. Keep the whole platform.
Meet us at the Quantum Innovation Summit — Grand Hyatt Dubai, 28–30 September — or start today.