| Research topics and future trends | p. 1 |
| Testing variabilities in use case models | p. 6 |
| Exploring the context of product line adoption | p. 19 |
| A quantitative model of the value of architecture in product line adoption | p. 32 |
| Multi-view variation modeling for scenario analysis | p. 44 |
| A meta-model for representing variability in product family development | p. 66 |
| Variability dependencies in product family engineering | p. 81 |
| Managing component variability within embedded software product lines via transformational code generation | p. 98 |
| Evolving a product family in a changing context | p. 111 |
| Towards a UML profile for software product lines | p. 129 |
| Applying system families concepts to requirements engineering process definition | p. 140 |
| Elicitation of use cases for product lines | p. 152 |
| RequiLine : a requirements engineering tool for software product lines | p. 168 |
| PLUTO : a test methodology for product families | p. 181 |
| A requirement-based approach to test product families | p. 198 |
| Theorem proving for product line model verification | p. 211 |
| A Koala-based approach for modelling and deploying configurable software product families | p. 225 |
| Feature binding analysis for product line component development | p. 250 |
| Patterns in product family architecture design | p. 261 |
| Differencing and merging within an evolving product line architecture | p. 269 |
| A relational architecture description language for software families | p. 287 |
| Planning and managing product line evolution | p. 290 |
| A cost model for software product lines | p. 310 |
| Salion's experience with a reactive software product line approach | p. 317 |
| Towards a taxonomy for software product lines | p. 323 |
| Architecture recovery for product families | p. 332 |
| Software product family evaluation | p. 352 |
| Design for quality | p. 370 |
| Economics of software product lines | p. 381 |
| A case study of two configurable software product families | p. 403 |
| Software architecture helpdesk | p. 422 |
| Different aspects of product family adoption | p. 429 |
| Dynamic software reconfiguration in software product families | p. 435 |
| Architecture true prototyping of product lines using personal computer networks | p. 445 |
| Making variability decisions during architecture design | p. 454 |
| Decision model and flexible component definition based on XML technology | p. 466 |
| A product derivation framework for software product families | p. 473 |
| Table of Contents provided by Blackwell. All Rights Reserved. |