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ABSTRACT
Software quality measurements play a crucial role in evaluating and ensuring the overall performance, reliability, and efficiency of software systems. This abstract provides a concise overview of the key aspects and significance of software quality measurements. It begins by defining the concept of software quality and its multifaceted nature, encompassing factors such as functionality, maintainability, usability, security, and performance. The abstract highlights the primary objectives of software quality measurements, and supporting data-driven decision-making during the software development lifecycle. It emphasizes the importance of quantifying software quality using various metrics and indicators, allowing for objective comparisons and trend analysis. Furthermore, the abstract explores different categories of software quality measurements, such as code quality metrics. The ISO/IEC model was adopted in this study; it provides a comprehensive framework for defining and evaluating software product quality. It comprises several standards that cover different aspects of software quality, such as quality characteristics, measurement, and evaluation processes. The metrics were collected from ISO/IEE, and were and reused to develop this system. The identification of factors and as well as the metrics and measures was done on the basis of the literature survey by studying and analyzing various research papers, such as ISO/IEEE. Python was the programming language adopted in developing this software and the tool used is the visual studio. The software was tested using a software project called Qataloog admin as case study and the dataset were collected and evaluated explained with images as shown in Chapter four. Adjustments, as needed, are needed with the condition of the software object being measured.