SEBoK
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- Part 1: SEBoK Introduction
- Part 2: Foundations of Systems Engineering
- Systems Engineering Fundamentals
- The Nature of Systems
- Types of Systems
- Cycles and the Cyclic Nature of Systems
- Natural Systems
- Principles and Attributes of Natural Systems
- Value Proposition for Systems Engineering
- Identity and Togetherness of Systems
- Behavior and Dynamics of Systems
- Purpose and the Capability of Systems
- Value and the Quality of Systems
- Consciousness and the Experience of Systems
- Systems Science
- Systems Thinking
- Representing Systems with Models
- Systems Approach Applied to Engineered Systems
- Overview of the Systems Approach
- Engineered System Context
- Identifying and Understanding Problems and Opportunities
- Synthesizing Possible Solutions
- Analysis and Selection between Alternative Solutions
- Implementing and Proving a Solution
- Deploying, Using, and Sustaining Systems to Solve Problems
- Applying the Systems Approach
- Part 3: Systems Engineering and Management
- Systems Engineering STEM Overview
- Model-Based Systems Engineering (MBSE)
- Life Cycle Terms and Concepts
- Development Approaches
- Agile Systems Engineering
- Life Cycle Model Selection and Adaptation
- Systems Engineering Management
- System Concept Definition
- System Requirements Definition
- System Architecture Design Definition
- System Detailed Design Definition
- System Analysis
- System Realization
- System Implementation
- System Integration
- System Verification
- System Transition
- System Validation
- System Operation
- System Maintenance
- Systems Engineering Standards
- Part 4: Applications of Systems Engineering
- Part 5: Enabling Systems Engineering
- Enabling Businesses and Enterprises
- Systems Engineering Organizational Strategy
- Determining Needed Systems Engineering Capabilities in Businesses and Enterprises
- Organizing Business and Enterprises to Perform Systems Engineering
- Assessing Systems Engineering Performance of Business and Enterprises
- Developing Systems Engineering Capabilities within Businesses and Enterprises
- Barriers to Successful Embedding of Systems Engineering into Organizations
- Culture
- Enabling Teams
- Enabling Individuals
- Enabling Businesses and Enterprises
- Part 6: Related Disciplines
- Systems Engineering and Environmental Engineering
- Systems Engineering and Geospatial/Geodetic Engineering
- Systems Engineering and Industrial Engineering
- Systems Engineering and Project Management
- The Nature of Project Management
- An Overview of the PMBOK® Guide
- Relationships between Systems Engineering and Project Management
- Portfolio Management
- The Influence of Project Structure and Governance on Systems Engineering and Project Management Relationships
- Cost Estimating and Analysis in Systems Engineering
- Procurement and Acquisition
- Systems Engineering and Software Engineering
- Systems Engineering and Mechanical Engineering
- Systems Engineering and Enterprise IT
- Systems Engineering and Quality Attributes
- A Framework for Viewing Quality Attributes from the Lens of Loss
- Human Systems Integration
- Manufacturability and Producibility
- System Adaptability
- System Affordability
- System Hardware Assurance
- System Reliability, Availability, and Maintainability
- System Resilience
- Resilience Modeling
- System Resistance to Electromagnetic Interference
- System Safety
- System Security
- Part 7: Systems Engineering Implementation Examples
- Matrix of Implementation Examples
- Implementation Examples
- Defense System Examples
- Information System Examples
- Management System Examples
- Medical System Examples
- Space System Examples
- Global Positioning System
- Global Positioning System II
- Russian Space Agency Project Management Systems
- How Lack of Information Sharing Jeopardized the NASA/ESA Cassini/Huygens Mission to Saturn
- Hubble Space Telescope
- Applying a Model-Based Approach to Support Requirements Analysis on the Thirty-Meter Telescope
- Miniature Seeker Technology Integration Spacecraft
- Apollo 1 Disaster
- Transportation System Examples
- Denver Airport Baggage Handling System
- Federal Aviation Administration (FAA) Advanced Automation System (AAS)
- Federal Aviation Administration (FAA) Next Generation Air Transportation System
- Reverse Engineering a UAV Prototype using Agile Practices
- UK West Coast Route Modernisation Project
- Standard Korean Light Transit System
- Utilities Examples
- Part 8: Emerging Knowledge