Aim & Scope of the Journal
Aim: The Journal of Advanced Materials and Computing (JAMC) welcomes original articles, reviews, perspectives, and short communications that drive progress in Engineering and Technology though synergistic advances in materials science and computational methods". CJAMC publishes high-quality, peer-reviewed research articles with emphasis on Advanced Materials and Advanced Computing within the aim and scope of the Journal defined.
Scope:The scope of the journal includes (but are not limited to):
Advanced Materials:
Contributions that integrate predictive simulations of both classical and quantum mechanical methods along with experimental validation to elucidate structure–property performance relationships. Studies include advanced materials processing strategies, which enable novel applications across electronics, energy, environment, healthcare, and other technology-driven fields,Electronic Materials, Nanomaterials, Energy Materials, Smart Materials, Biomaterials, Composite Materials, Semiconductor Materials, Quantum Materials, Optical and Photonic Materials, Functional Materials, Advanced Manufacturing Materials, Sustainable Materials, Aerospace Materials, Computational Materials Science, Advanced Materials for Electronics, Materials for AI Hardware, Emerging Materials, Defense and Space Materials, Memristive Materials for Neuromorphic Chips, 2D Materials for High-Speed Transistors, Wide-Bandgap Semiconductors (GaN/SiC), MXenes for Flexible Sensors, Terahertz Metamaterials, Spintronic Materials, Silicon Photonic Materials, Materials Informatics with AI, High-Entropy Alloys, Perovskite-Based Optoelectronics.
Advanced Computing:
Core Computing and Algorithms, Quantum computing and post-quantum algorithms, Artificial Intelligence and Machine Learning, Data Science and Big Data Analytics, Cybersecurity and Privacy, Networks and Systems, Human–Computer Interaction and Intelligent Systems, Interdisciplinary Applications such as Computing in healthcare, bioinformatics, and life sciences, Computational models in physics, chemistry, and material science, FinTech, digital governance, and smart cities, Education, e-learning, and social computing AI Hardware and Accelerators, Quantum Computing Electronics, Neuromorphic Computing, High-Performance Computing (HPC), Edge Computing, Cloud Computing Hardware, Reconfigurable Computing, Approximate Computing, In-Memory Computing, High-Speed Digital Systems, Advanced VLSI Computing, AI in Electronic Design Automation (EDA), Photonic Computing, DNA and Molecular Computing, Secure Computing, Embedded Intelligent Systems, Intelligent Signal Processing, Internet of Things (IoT) Computing, Digital Twin Computing, Green Computing.