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JOURNAL INFORMATION

Aim & Scope

The American Journal of Engineering and Technology

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Aim & Scope

The American Journal of Engineering and Technology (TAJET)
ISSN: 2689-0984

Aim of the Journal

The American Journal of Engineering and Technology is an international, peer-reviewed, open-access journal dedicated to advancing engineering knowledge and technological development.

The journal provides a platform for researchers, engineers, academicians, and industry professionals to share original findings, evaluate emerging technologies, and develop solutions to practical engineering challenges.

TAJET encourages research that connects theoretical principles with experimental evidence, computational analysis, design, and implementation. It welcomes interdisciplinary contributions that demonstrate a clear technical contribution and explain the significance and limitations of their findings.

The journal aims to:

  • Publish rigorous research that advances engineering and technology.

  • Encourage innovation in engineering design, systems, processes, and applications.

  • Promote collaboration across engineering disciplines and between academia and industry.

  • Support transparent methods, reproducibility, and responsible research.

  • Advance technologies that improve efficiency, reliability, safety, and sustainability.

  • Make scholarly research freely accessible to a global readership.

Scope of the Journal

The journal considers research in the following areas and related interdisciplinary fields.

1. Mechanical Engineering

  • Applied mechanics and machine design.

  • Thermodynamics, heat transfer, and fluid mechanics.

  • Computational mechanics and numerical modelling.

  • Mechatronics and mechanical systems.

  • Vibration, acoustics, and condition monitoring.

  • Maintenance, reliability, and performance evaluation.

2. Civil and Structural Engineering

  • Structural analysis and design.

  • Construction materials and technologies.

  • Geotechnical and foundation engineering.

  • Transportation systems and infrastructure.

  • Water resources and hydraulic engineering.

  • Construction management and sustainable infrastructure.

  • Structural health monitoring and resilience.

3. Electrical and Electronic Engineering

  • Electrical machines, drives, and power systems.

  • Power electronics and energy conversion.

  • Electronic circuits and semiconductor devices.

  • Embedded systems and hardware design.

  • Instrumentation, sensors, and measurement.

  • Signal processing and electronic control.

4. Communication and Network Technologies

  • Wireless and mobile communication.

  • Communication systems and information transmission.

  • Antennas, microwave systems, and radio-frequency engineering.

  • Optical communication.

  • Network architecture and performance.

  • Internet of Things and connected systems.

5. Computer Engineering and Information Technology

  • Computer architecture and computing systems.

  • Software engineering and system development.

  • Distributed, cloud, and edge computing.

  • Cybersecurity and dependable systems.

  • Database systems and data engineering.

  • High-performance and scientific computing.

  • Hardware–software integration.

6. Artificial Intelligence, Automation, and Robotics

  • Machine learning with engineering applications.

  • Computer vision and intelligent sensing.

  • Robotics and autonomous systems.

  • Industrial automation and process control.

  • Optimization and intelligent decision systems.

  • Human–machine interaction.

  • Validation and reliability of intelligent systems.

7. Materials and Manufacturing Engineering

  • Engineering materials and composites.

  • Materials characterization and performance.

  • Advanced and additive manufacturing.

  • Machining, forming, joining, and production processes.

  • Surface engineering and coatings.

  • Nanotechnology with engineering applications.

  • Manufacturing quality and process optimization.

8. Energy Engineering

  • Renewable energy technologies.

  • Energy storage and conversion.

  • Solar, wind, bioenergy, and hybrid systems.

  • Batteries, fuel cells, and thermal energy systems.

  • Energy efficiency and management.

  • Smart grids and distributed energy resources.

  • Modelling and evaluation of energy systems.

9. Environmental Engineering and Sustainability

  • Water and wastewater treatment.

  • Air pollution control and environmental monitoring.

  • Waste management and resource recovery.

  • Cleaner production and sustainable technologies.

  • Environmental systems modelling.

  • Life-cycle assessment and resource efficiency.

  • Engineering approaches to climate adaptation.

10. Industrial and Systems Engineering

  • Operations research and optimization.

  • Production planning and logistics.

  • Quality engineering and reliability.

  • Systems modelling and simulation.

  • Human factors and ergonomics.

  • Engineering management and decision analysis.

  • Supply-chain technologies and industrial digitalization.

11. Emerging and Interdisciplinary Technologies

  • Biomedical engineering and medical devices.

  • Aerospace and automotive technologies.

  • Agricultural and food-process engineering.

  • Digital twins and cyber-physical systems.

  • Smart infrastructure and intelligent transportation.

  • Technologies integrating multiple engineering disciplines.

Types of Articles Considered

TAJET welcomes:

  • Original Research Articles: Experimental, analytical, computational, and field studies presenting new engineering findings.

  • Review Articles: Critical reviews, systematic reviews, and meta-analyses that evaluate existing technologies and identify research gaps.

  • Short Communications: Concise reports of focused findings or technical advances.

Suitability for Publication

Submissions must address a clearly defined engineering or technological problem, use appropriate methods, and present conclusions supported by evidence.

Authors should explain the contribution of their work, compare it with relevant existing approaches, and discuss validation, uncertainty, limitations, and practical applicability. Simulated results must be clearly distinguished from experimental findings and demonstrated real-world performance.

Interdisciplinary studies are welcome when they have a direct connection to engineering or technology. Promotional content, unsupported claims, and routine descriptions without a substantive technical contribution are outside the journal’s scope.

Authors should consult the Author Guidelines, Peer Review Process, and Publication Ethics pages before submitting a manuscript.