ROME 12th International Conference on Science, Engineering, Technology & Natural Resources: RSETNR-27

Topics

All Abstracts, Reviews, short articles, Full articles, Posters are welcomed related with any of the following research fields:

Part 1: Independent Core Domains & Subtopics

1. Fundamental & Applied Science

  • Physical Sciences

    • Physics: Mechanics, Thermodynamics, Quantum Mechanics, Electromagnetism, Optics, Relativity, Particle Physics, Condensed Matter Physics.

    • Chemistry: Organic, Inorganic, Physical, Analytical, Biochemistry, Polymer Chemistry, Surface Chemistry.

    • Earth & Planetary Sciences: Geology, Geophysics, Volcanology, Seismology, Atmospheric Science, Meteorology, Paleontology.

    • Space Sciences: Astronomy, Astrophysics, Cosmology, Planetary Geology, Astrobiology.

  • Life & Biological Sciences

    • Cellular & Molecular Biology: Genetics, Genomics, Epigenetics, Molecular Genetics, Structural Biology, Microbiology.

    • Organismal Biology: Botany, Zoology, Human Anatomy & Physiology, Immunology, Neuroscience.

    • Ecology & Evolutionary Science: Evolutionary Biology, Macroecology, Conservation Biology, Behavioral Ecology.

2. Engineering Disciplines

  • Traditional Core Engineering

    • Mechanical Engineering: Kinematics, Solid Mechanics, Fluid Dynamics, Heat Transfer, Machine Design, Acoustics.

    • Civil Engineering: Structural Engineering, Geotechnical Engineering, Transportation Engineering, Hydraulics, Urban Engineering.

    • Electrical & Electronics Engineering: Power Systems, Control Systems, Signal Processing, Telecommunications, Microelectronics, Circuit Design.

    • Chemical Engineering: Transport Phenomena, Chemical Reaction Engineering, Process Design, Separation Processes.

  • Specialized & Interdisciplinary Engineering

    • Aerospace Engineering: Aerodynamics, Propulsion, Avionics, Orbital Mechanics, Flight Dynamics.

    • Biomedical Engineering: Biomechanics, Biomaterials, Tissue Engineering, Medical Instrumentation, Rehabilitation Engineering.

    • Materials Science & Engineering: Metallurgy, Ceramics, Composite Materials, Electronic Materials, Biomaterials.

    • Nuclear Engineering: Fission Reactor Physics, Nuclear Fusion, Radiation Protection, Isotope Technology, Radioactive Waste Management.

3. Technology Systems & Applied Computing

  • Computer Science & Software Systems

    • Theoretical Computer Science: Algorithms, Complexity Theory, Automata, Information Theory.

    • Software Engineering: Architecture, Distributed Systems, Operating Systems, Database Systems, Cloud Computing.

    • Cybersecurity & Infrastructure: Cryptography, Network Security, Forensics, System Architecture.

  • Intelligent Systems & Automation

    • Artificial Intelligence: Machine Learning, Deep Learning, Natural Language Processing, Computer Vision, Knowledge Representation.

    • Robotics & Automation: Mechatronics, Robotic Perception, Autonomous Navigation, Human-Robot Interaction, Industrial Controls.

  • Emerging Technological Paradigms

    • Quantum Computing: Quantum Algorithms, Quantum Information Theory, Quantum Hardware.

    • Nanotechnology: Nanoelectronics, Nanomaterials Fabrication, Nanofuidics, Molecular Nanotechnology.

4. Natural Resources & Environmental Systems

  • Renewable & Non-Renewable Energy Resources

    • Fossil & Nuclear Energy: Hydrocarbon Exploration, Coal Technology, Uranium Mining, Nuclear Fuel Cycles.

    • Renewable Energy Sources: Solar Power (Photovoltaic/Thermal), Wind Energy, Hydroelectric Power, Geothermal Energy, Tidal/Wave Energy, Bioenergy.

  • Terrestrial & Oceanic Resources

    • Water Resources: Hydrology, Watershed Management, Desalination, Groundwater Depletion, Aquifer Recharge.

    • Mineral & Mining Resources: Geological Exploration, Extraction Technology, Ore Processing, Mine Reclamation.

    • Forestry & Land Resources: Timber Harvest Management, Agroforestry, Soil Science, Deforestation Control, Soil Conservation.

  • Environmental & Atmospheric Stewardship

    • Environmental Quality: Air Quality Management, Solid Waste Management, Ecotoxicology, Water Quality & Wastewater Treatment.

    • Climate Systems: Carbon Cycle Studies, Climate Modeling, Climate Adaptation, Greenhouse Gas Mitigation.

Part 2: Interrelated & Cross-Disciplinary Domains

These fields exist specifically at the intersection of two or more primary domains, driving modern technological and scientific progress.

Science + Engineering

  • Nanomedicine: Merging molecular biology, chemical engineering, and materials science to target drug delivery.

  • Geotechnical & Earthquake Engineering: Applying geophysics and structural engineering to design resilient infrastructure.

  • Bio-inspired Engineering (Bimimicry): Translating biological structures and mechanisms into mechanical and architectural designs.

Technology + Natural Resources

  • Precision Agriculture (AgTech): Combining IoT sensors, AI, satellite imaging, and soil science to optimize resource usage in farming.

  • Smart Grid & Energy Storage Management: Integrating electrical engineering, software systems, and renewable energy to stabilize power grids.

  • Geographic Information Systems (GIS) & Remote Sensing: Using satellite tech, data science, and geology to monitor natural resource depletion and climate changes.

Science + Technology + Natural Resources

  • Carbon Capture, Utilization, and Storage (CCUS): Combining chemical science, separation engineering, computational fluid dynamics, and geological injection techniques to isolate atmospheric carbon.

  • Desalination & Advanced Water Purification: Using membrane chemistry, thermal engineering, and IoT filtration monitoring to generate freshwater from seawater.

  • Biotechnology & Circular Economy Systems: Integrating synthetic biology, biochemical processing, and environmental management to convert industrial waste streams into usable bioplastics and biofuels.

Gallery

Supported By: