The following topics are dealt with: development methods and CASE (computer-aided softwareengineering);artificial intelligence (AI) applications;software design;systems and software analysis;software maintenance;syst...
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ISBN:
(纸本)081862065X
The following topics are dealt with: development methods and CASE (computer-aided softwareengineering);artificial intelligence (AI) applications;software design;systems and software analysis;software maintenance;systems and software testing;and parallel program development and hypertext. Abstracts of individual papers can be found under the relevant classification codes in this or other issues.
This conference proceedings contains 26 papers. The following topics are dealt with: development environments and tools;testing, integration and metrics;development tools--new trends;systemsengineering;parallel and d...
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This conference proceedings contains 26 papers. The following topics are dealt with: development environments and tools;testing, integration and metrics;development tools--new trends;systemsengineering;parallel and distributed systems;configuration and project management;case studies;and software maintenance and paradigms.
The Proceedings contains 31 papers and panel presetation. The following topics are dealt with: real-time software development;data processing application development;visual programming tools;configuration management a...
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ISBN:
(纸本)0818689722
The Proceedings contains 31 papers and panel presetation. The following topics are dealt with: real-time software development;data processing application development;visual programming tools;configuration management and maintenance;requirements and design methods;advanced development technologies;CASE;and modeling in system development.
Foundation models(FMs) [1] have revolutionized software development and become the core components of large softwaresystems. This paradigm shift, however, demands fundamental re-imagining of softwareengineering theo...
Foundation models(FMs) [1] have revolutionized software development and become the core components of large softwaresystems. This paradigm shift, however, demands fundamental re-imagining of softwareengineering theories and methodologies [2]. Instead of replacing existing software modules implemented by symbolic logic, incorporating FMs' capabilities to build softwaresystems requires entirely new modules that leverage the unique capabilities of ***, while FMs excel at handling uncertainty, recognizing patterns, and processing unstructured data, we need new engineering theories that support the paradigm shift from explicitly programming and maintaining user-defined symbolic logic to creating rich, expressive requirements that FMs can accurately perceive and implement.
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