A web-based platform that lets students design quantum circuits using drag-and-drop or code, run them on simulators, and receive AI-based tutoring.
Egreen Quanta · Software
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Decomposed from what the description asks for. Nothing added.
Learning Modules
Provide structured theoretical content covering quantum computing fundamentals and algorithms.
Circuit Designer
Allow users to construct quantum circuits using a graphical drag-and-drop interface or a code editor.
Simulator Backends
Execute quantum circuits using major software development kits like Qiskit Aer, PennyLane, Cirq, and qBraid.
AI Assistant
Provide real-time explanations, error detection, code generation, and personalized learning paths.
State Visualizer
Display quantum states, Bloch spheres, measurement probabilities, and execution results.
Both columns are read off the brief's own wording. Nothing here is inferred from the ministry's name.
The jury will check whether the platform integrates multiple simulation backends, supports both drag-and-drop and code-based circuit design, and includes working AI-assisted tutoring and quantum state visualization.
A jury can still ask about these. Decide them deliberately rather than by accident.
Generated from the brief's own wording and the competition's published rules — never from a guess about what this ministry prefers.
Which specific AI model or API should be used for tutoring?
The brief never answers this, so a panel will. Whatever you decide, say it the same way twice.
The exact storage and scaling requirements for user progress tracking?
The brief never answers this, so a panel will. Whatever you decide, say it the same way twice.
Has any part of this been shown at a previous event, hackathon or college project?
The guidelines are explicit: your solution must not have appeared in any previous event or programme, of any sort. A recycled project is what a team under time pressure reaches for.
The brief asks for learning modules. How would you build that?
Decoded from SIH26140 itself — Provide structured theoretical content covering quantum computing fundamentals and algorithms. The brief asks for it by name.
Each one is quoted from a gap in the brief, not a guess about your team.
No measurable target
The description lists functional features like simulators and AI assistance, but provides no quantitative accuracy or performance targets for the AI tutor or simulator execution.
What the organisers attached, and what the brief assumes you can get.
Same organisation, same year. Reading two of theirs tells you more about what they care about than reading one.
Pick what you are about to do and copy the prompt. It carries the organisers' own wording, the constraints they never spell out, and an instruction not to invent requirements they never set.
Who has this problem, what already exists, and what you would have to find out.
Assessment Tools
Include coding challenges, progress tracking, and instructor dashboards.
The brief asks for circuit designer. How would you build that?
Decoded from SIH26140 itself — Allow users to construct quantum circuits using a graphical drag-and-drop interface or a code editor. The brief asks for it by name.
The brief asks for simulator backends. How would you build that?
Decoded from SIH26140 itself — Execute quantum circuits using major software development kits like Qiskit Aer, PennyLane, Cirq, and qBraid. The brief asks for it by name.
The brief asks for ai assistant. How would you build that?
Decoded from SIH26140 itself — Provide real-time explanations, error detection, code generation, and personalized learning paths. The brief asks for it by name.
The brief asks for state visualizer. How would you build that?
Decoded from SIH26140 itself — Display quantum states, Bloch spheres, measurement probabilities, and execution results. The brief asks for it by name.
The brief asks for assessment tools. How would you build that?
Decoded from SIH26140 itself — Include coding challenges, progress tracking, and instructor dashboards. The brief asks for it by name.
Why not use what already exists? Name the closest thing to this that is already running.
A team that has not named the alternative themselves is answering this for the first time in the room.
Which single thing will you demonstrate end to end, start to finish, with nothing skipped?
Ours, not a rule: a narrow thing that fully works survives questioning better than a broad thing that half works. If nobody on the team can name it, that is the finding.
Show me this working: the jury will check whether the platform integrates multiple simulation backends, supports both drag-and-drop and code-based circuit design, and includes working AI-assisted tutoring and quantum state visualization.
This is the evaluator read for your problem statement, decoded from the brief's own wording.