Human Factors
Human Factors
Human Factors
Human Factors
This project explores how ergonomics can improve the way people interact with tools and machines in their daily work and activities. Through field research and usability testing, the study examined both the physical challenges faced by FRP murti makers and the cognitive challenges users experience while operating treadmill interfaces. The project focused on understanding real user behavior, identifying risks and usability issues, and developing design solutions that improve comfort, safety, and ease of use in real-world environments.
This project explores how ergonomics can improve the way people interact with tools and machines in their daily work and activities. Through field research and usability testing, the study examined both the physical challenges faced by FRP murti makers and the cognitive challenges users experience while operating treadmill interfaces. The project focused on understanding real user behavior, identifying risks and usability issues, and developing design solutions that improve comfort, safety, and ease of use in real-world environments.
This project explores how ergonomics can improve the way people interact with tools and machines in their daily work and activities. Through field research and usability testing, the study examined both the physical challenges faced by FRP murti makers and the cognitive challenges users experience while operating treadmill interfaces. The project focused on understanding real user behavior, identifying risks and usability issues, and developing design solutions that improve comfort, safety, and ease of use in real-world environments.
This project explores how ergonomics can improve the way people interact with tools and machines in their daily work and activities. Through field research and usability testing, the study examined both the physical challenges faced by FRP murti makers and the cognitive challenges users experience while operating treadmill interfaces. The project focused on understanding real user behavior, identifying risks and usability issues, and developing design solutions that improve comfort, safety, and ease of use in real-world environments.
00

problem
Workers and users often interact with systems that are not designed around their physical and mental needs. Murti makers work long hours using tools that cause strain, poor posture, and frequent injuries, while treadmill users face confusion due to unclear buttons, labels, and feedback. These issues increase fatigue, reduce efficiency, and create safety risks. In both cases, the existing designs ignored human limitations, leading to discomfort, errors, and unsafe working or usage conditions.
Workers and users often interact with systems that are not designed around their physical and mental needs. Murti makers work long hours using tools that cause strain, poor posture, and frequent injuries, while treadmill users face confusion due to unclear buttons, labels, and feedback. These issues increase fatigue, reduce efficiency, and create safety risks. In both cases, the existing designs ignored human limitations, leading to discomfort, errors, and unsafe working or usage conditions.
Workers and users often interact with systems that are not designed around their physical and mental needs. Murti makers work long hours using tools that cause strain, poor posture, and frequent injuries, while treadmill users face confusion due to unclear buttons, labels, and feedback. These issues increase fatigue, reduce efficiency, and create safety risks. In both cases, the existing designs ignored human limitations, leading to discomfort, errors, and unsafe working or usage conditions.
solution
Ergonomic design solutions were developed to make these systems safer, more comfortable, and easier to use. For the murti-making process, a redesigned brush tool was created with an improved grip and form that supports a natural wrist position and reduces repetitive strain. For the treadmill interface, a simplified control layout with clear labels, icons, and feedback was designed to help users understand and operate the machine confidently. These solutions demonstrate how user-centered design can reduce risk, improve usability, and enhance overall user experience.
Ergonomic design solutions were developed to make these systems safer, more comfortable, and easier to use. For the murti-making process, a redesigned brush tool was created with an improved grip and form that supports a natural wrist position and reduces repetitive strain. For the treadmill interface, a simplified control layout with clear labels, icons, and feedback was designed to help users understand and operate the machine confidently. These solutions demonstrate how user-centered design can reduce risk, improve usability, and enhance overall user experience.
Ergonomic design solutions were developed to make these systems safer, more comfortable, and easier to use. For the murti-making process, a redesigned brush tool was created with an improved grip and form that supports a natural wrist position and reduces repetitive strain. For the treadmill interface, a simplified control layout with clear labels, icons, and feedback was designed to help users understand and operate the machine confidently. These solutions demonstrate how user-centered design can reduce risk, improve usability, and enhance overall user experience.

see also
.say hello
i'm open for projects, feel free to email me at-
aditipmodi@gmail.com
.say hello



