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Rubicon Publications

Publish a Book Chapter in "Advances in Physics for Materials, Energy and Applied Technologies (Volume - 1)"

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978-1-80433-853-7

Physics Edited Book | Edited Book on Physics


This edited book on physics titled "Advances in Physics for Materials, Energy and Applied Technologies" mainly focuses on various topics such as functional materials, quantum materials, semiconductors physics etc., and the rest are given below in the Scope of the book. This physics edited book will be published with ISBN numbers after following a proper double blind peer reviewed process. All the chapters of this physics edited book will be published in a proper style, so that reader can easily understand and learn.

Author can download this physics edited book titled "Advances in Physics for Materials, Energy and Applied Technologies" authorship responsibility and copyright form: Click Here

Indexed In


Indexed in Crossref Indexed in Dimensions Indexed in Bowker
Invited Topics

  1. Hydrogen Storage Materials and Transport Phenomena
  2. Fuel Cell Physics: Electrochemistry and Materials Interfaces
  3. Nuclear Materials Under Extreme Conditions: Structure and Degradation
  4. Radiation Effects in Materials: Damage Mechanisms and Mitigation
  5. Sensor Physics for Environmental, Biomedical, and Industrial Monitoring
  6. MEMS and NEMS Devices: Fabrication Physics and Performance Trade-Offs
  7. Quantum Sensing: Principles, Materials, and Applications
  8. Imaging Physics for Non-Destructive Testing and Diagnostics
  9. Laser Technologies: Materials, Resonators, and Industrial Applications
  10. Ultrafast Spectroscopy for Probing Energy Transfer in Materials
  11. Nonlinear Optics in Advanced Materials and Photonic Devices
  12. Surface and Interface Physics in Thin-Film Energy Devices
  13. Defects, Doping, and Carrier Control in Functional Semiconductors
  14. Phonon Transport and Thermal Conductivity Engineering
  15. Thermal Management Materials for High-Power Electronics
  16. Mechanics of Materials at Micro- and Nanoscale: Testing and Modeling
  17. Soft Matter Physics for Flexible and Wearable Technologies
  18. Rheology and Flow Behavior of Complex Fluids in Processing
  19. Computational Physics for Materials Discovery and Optimization
  20. Density Functional Theory for Electronic Structure and Material Design
  21. Multiscale Modeling Bridging Atoms to Devices
  22. Data-Driven Materials Physics and Machine Learning Approaches
  23. Physics-Informed AI Models for Accelerated Materials Innovation
  24. Hardware for AI: Neuromorphic and In-Memory Computing Materials
  25. Reliability Physics: Failure Modes and Lifetime Prediction
  26. Packaging Physics and Thermal–Mechanical Stress in Devices
  27. Metrology and Standards for Nanomaterials and Energy Devices
  28. Safety and Risk Management in Materials Physics Laboratories
  29. Technology Translation: From Physics Discovery to Scalable Products
  30. Case Studies in Applied Physics for Clean Energy Solutions
  31. Topological Materials and Their Prospects for Low-Power Electronics
  32. Two-Dimensional Materials for Electronics and Energy Applications
  33. Excitons and Polarons in Semiconductors: Impacts on Device Physics
  34. Photocatalysis and Photoelectrochemistry: Physics of Light–Matter Interaction
  35. Charge Dynamics in Organic Semiconductors and Flexible Electronics
  36. Dielectric Materials for Power Electronics and Grid Applications
  37. Wide-Bandgap Semiconductors for High-Voltage Power Devices
  38. Transparent Conductors and Their Optoelectronic Trade-Offs
  39. Phase-Change Materials for Memory and Reconfigurable Photonics
  40. Thermal Barrier Coatings: Heat Transfer Physics and Materials Design
  41. Magnetic Refrigeration: Magnetocaloric Physics and Materials
  42. Batteries Beyond Lithium: Physics of Sodium, Zinc, and Multivalent Systems
  43. Interfacial Phenomena in Solid-State Batteries and Dendrite Suppression
  44. Electron Microscopy and Spectroscopy for Nanoscale Materials Physics
  45. Scattering Methods for Structural and Dynamical Material Characterization
  46. Raman and Infrared Spectroscopy for Functional Materials Assessment
  47. Quantum Dots and Nanocrystals in Photonic and Display Technologies
  48. Photonic Crystals and Bandgap Engineering for Light Control
  49. Microwave Materials and Devices for Communication Technologies
  50. Energy Storage in Supercapacitors: Physics and Materials Interfaces
  51. Mechanical Metamaterials: Design Principles and Applications
  52. Tribology and Surface Engineering for Durable Energy Systems
  53. Corrosion Physics in Energy Infrastructure and Protective Strategies
  54. Environmental Degradation of Materials and Accelerated Aging Tests
  55. Additive Manufacturing of Functional Materials: Process–Property Links
  56. Physics of Sintering and Densification in Ceramics
  57. Smart Materials for Actuators and Adaptive Structures
  58. Sensors for Smart Cities: Physics, Integration, and Reliability
  59. Quantum Computing Hardware: Superconducting and Spin Qubit Materials
  60. Magnetic Nanoparticles for Biomedicine: Heating and Imaging Physics
  61. Photothermal Materials for Energy and Medical Applications
  62. Physics of Thermomechanical Fatigue in Structural Components
  63. Finite Element Modeling for Coupled Thermal–Electrical Systems
  64. Uncertainty Quantification in Materials Simulations and Experiments
  65. Open Data and Reproducibility in Applied Physics Research
  66. Life-Cycle Considerations for Energy Materials and Devices
  67. Sustainable Materials Design Guided by Physics-Based Metrics
  68. Policy and Standards Influencing Energy Technology Adoption
  69. Ethics and Responsible Innovation in Applied Physics
  70. Cross-Disciplinary Collaboration Models for Physics-Led Technology Development
  71. Energy Systems Integration: Materials Requirements and Performance Constraints
  72. Physics of Grid-Scale Energy Storage and Power Electronics Interfaces
  73. Emerging Measurement Techniques for In-Operando Materials Studies
  74. In-Situ Characterization of Battery and Fuel Cell Interfaces
  75. Photovoltaic Module Reliability: Physics of Degradation and Testing
  76. Scale-Up Challenges in Perovskite and Thin-Film Technologies
  77. Translating Quantum Sensing from Lab to Field Applications
  78. Future Directions in Materials Physics for Clean Energy
  79. Roadmap for Applied Physics in Sustainable Technologies
  80. Grand Challenges and Research Frontiers in Physics for Energy and Materials
Book Scope

  • Functional Materials
  • Quantum Materials
  • Semiconductors Physics
  • Thin Films
  • Nanophysics
  • Spintronics
  • Photonics Devices
  • Optoelectronics
  • Plasmonics
  • Metamaterials
  • Superconductivity
  • Magnetism Studies
  • Ferroelectrics
  • Piezoelectric Materials
  • Thermoelectrics
  • Energy Harvesting
  • Solar Cell Physics
  • Perovskite Devices
  • Battery Materials Physics
  • Solid-State Electrolytes
  • Hydrogen Storage
  • Fuel Cell Physics
  • Nuclear Materials
  • Radiation Effects
  • Sensor Physics
  • MEMS Sensors
  • NEMS Devices
  • Quantum Sensing
  • Imaging Physics
  • Laser Technologies
  • Ultrafast Spectroscopy
  • Nonlinear Optics
  • Surface Physics
  • Interface Engineering
  • Defects and Doping
  • Phonon Transport
  • Thermal Management
  • Mechanics of Materials
  • Soft Matter Physics
  • Rheology Models
  • Computational Physics
  • DFT Simulations
  • Multiscale Modeling
  • Data-Driven Physics
  • Physics for AI Hardware
  • Reliability Testing
  • Device Packaging
  • Standards and Metrology
  • Tech Transfer
  • Safety in Labs


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Deadline

31 Jan 2026