Qiskit Fall Fest 2026 @ MPSTME , hosted by the Mukesh Patel School of Technology Management and Engineering (MPSTME), NMIMS Mumbai , brings together students and quantum computing enthusiasts to explore, learn, and build with quantum technologies. Organised in association with IBM Quantum , Qiskit Fall Fest 2026 @ MPSTME is designed to introduce participants to the rapidly evolving world of quantum computing while giving them the opportunity to apply their knowledge to practical problems and innovative ideas. About the Event Quantum computing is no longer limited to theoretical physics and research papers. With frameworks such as Qiskit , developers and researchers can experiment with quantum circuits, algorithms, simulations, and hybrid quantum-classical systems. At Qiskit Fall Fest 2026 @ MPSTME, participants will explore different areas of the quantum computing ecosystem, including: Quantum Computing Fundamentals Quantum Algorithms Quantum Machine Learning (QML) Quantum Neural Networks (QNNs) Quantum Optimisation Quantum Simulation Hybrid Quantum-Classical Computing Applications of Quantum Computing across different domains The event is open to beginners as well as experienced quantum enthusiasts . Learning & Keynote Sessions — 24th October The event will include dedicated teaching and learning sessions , helping participants understand the fundamentals of quantum computing and get started with Qiskit. Participants will also have the opportunity to attend keynote sessions by professionals , offering insights into the quantum computing industry, current developments, research, applications, and the future of the field. Whether you're new to quantum computing or already exploring the field, these sessions will help participants build the foundation required to take their ideas further. Quantum Hackathon – Problem Statements As part of Qiskit Fall Fest 2026 @ MPSTME , organized by the Department of Information Technology, MPSTME, in collaboration with CSI @ MPSTME , participants are invited to explore quantum computing through an exciting Hybrid Quantum Hackathon . The hackathon welcomes beginners as well as experienced quantum enthusiasts . Participants can select one of the suggested problem statements below or propose their own innovative problem statement . Quantum Games Create an interactive game or application based on quantum concepts such as superposition, interference, entanglement, and measurement . Participants may develop quantum versions of coin tosses, dice, puzzles, or other games. Quantum Secure Communication Implement a simulation of any Quantum Key Distribution (QKD) protocol . Introduce an eavesdropper into the communication channel and demonstrate how interception can be detected. Quantum Maze / Search Solver Develop a quantum-based solution for a small maze, search, or constraint-solving problem. Explore how quantum search concepts can be used to identify a valid or optimal solution. Quantum Circuit Optimizer Develop a method to optimize a quantum circuit by reducing its number of gates, circuit depth, or other computational resources while maintaining the intended functionality of the circuit. Quantum Error Detective Investigate how noise affects quantum computation. Execute quantum circuits under different noise conditions, analyse the results, and explore techniques for improving the reliability of quantum computations. Build a Quantum Learning App Create an interactive application, visualization, game, or educational tool that helps users understand concepts such as qubits, superposition, measurement, interference, entanglement, quantum gates, or quantum circuits . Quantum-Enhanced Cybersecurity Develop a quantum or quantum-classical hybrid solution for a cybersecurity problem such as intrusion detection, anomaly detection, secure communication, cryptographic analysis, network security, or threat detection. Quantum Optimization for Smart Cities Identify an optimization problem related to traffic management, transportation, scheduling, resource allocation, logistics, infrastructure, or smart-city operations . Formulate the problem using an appropriate quantum optimization model and develop a quantum or hybrid solution using Qiskit. Quantum Machine Learning Challenge Develop a Quantum Machine Learning (QML) solution for a classification, clustering, anomaly-detection, or prediction problem. Participants are encouraged to compare their quantum or hybrid model with an appropriate classical machine-learning baseline. Quantum and Post-Quantum Security Develop a prototype or proof of concept demonstrating how quantum communication, Quantum Key Distribution (QKD), Post-Quantum Cryptography (PQC), or hybrid security mechanisms could contribute to next-generation secure communication systems. Quantum Finance Challenge Explore the application of quantum computing to a financial problem such as portfolio optimization, risk analysis, financial modelling, fraud detection, asset allocation, or dec