Make the strange visible.
Qubits, measurement, interference and gates become easier to reason about when students can change them and see what happens.
These are browser simulations, not access to real quantum hardware.
Build intuition, one idea at a time.
Explore a concept, then try it as a live lab below.
A qubit can be in a mix of |0⟩ and |1⟩
Before it is measured, a qubit's state is described by amplitudes on |0⟩ and |1⟩ — not a single definite value.
Quantum literacy is not about turning every student into a quantum physicist.
Reason about outcomes rather than deterministic intuition.
Understand state, operations, noise and measurement as one system.
Distinguish demonstrated capability from research-stage and speculative claims.
What it is
- A different way of processing information using qubits, superposition and entanglement
- Expected to complement classical computing for specific, narrow problems
- An active, evolving area of research with real but early-stage hardware
What it is not
- A replacement for classical computers
- A way to send messages faster than light
- A method that "teleports" people or objects
- A guarantee of exponential speedup for every problem
Seven stages, one continuous rail.
Foundations
Coin-Flip Qubit · Double-Slit Experiment · Schrödinger's Cat · Entangled Pair — qubits, measurement, superposition, interference and correlation
Quantum Discovery Workshop
A conceptual, simulation-led session introducing bits and qubits, measurement, superposition, interference, entanglement, gates and one or two application areas — with a "reality check" separating present capability from future possibility.
Quantum Explorer
From classical bits to qubits, through superposition, entanglement, gates, algorithms, noise/error-correction, applications and India's quantum ecosystem — a parallel pathway to AI Builder, not a harder sequel to it. Curriculum, facilitator guide and assessment are still being finalised.
The India's Quantum Mission lab introduces India's national quantum ambitions using dated, sourced material as a study prompt — not as an implication that WhizzStep is affiliated with any government mission or programme.
Established → Emerging → Research-stage → Speculative
Demonstrated, reproducible, in real use
Pilot or early deployment, limited scale
Active study, unresolved questions
Plausible but unproven or far off
What these labs are
Local browser simulations that make a concept visible.
What they are not
Connections to real Quantum hardware, or proof that a technology is commercially mature.
Do the labs use a real quantum computer?
No — every lab is a local browser simulation designed to make a concept visible, not a connection to quantum hardware.
Does the workshop require physics, advanced maths or coding?
No. The Quantum Discovery Workshop is conceptual and simulation-led — no prior quantum physics, advanced mathematics or coding is required.
What can students realistically learn from a browser simulation?
Conceptual literacy — how to reason about qubits, measurement, superposition, entanglement, gates and noise, and how to judge claims about quantum applications by their evidence and maturity.
Is the Quantum Explorer programme available now?
Not yet — it's planned. Schools can register interest; the Quantum Discovery Workshop is the current entry point.
