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Virtual robots module: an effective visualization tool for robotics toolbox.

, , , and . AIR, page 26:1-26:6. ACM, (2015)

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Design Analysis of an Industrial Robot under Development., , , , and . AIR, page 18:1-18:6. ACM, (2019)Virtual robots module: an effective visualization tool for robotics toolbox., , , and . AIR, page 26:1-26:6. ACM, (2015)Effective Teaching and Learning of Homogenous Transformation Matrix using RoboAnalyzer Software., , , and . AIR, page 17:1-17:5. ACM, (2019)An analytical method to detect collision between cylinders using dual number algebra., and . IROS, page 5353-5358. IEEE, (2013)Development of A Technology Education Programme based on Self-Driven, Self-Learning and Self-Evaluating Approach., , , , and . AIR, page 55:1-55:5. ACM, (2021)Intuitive Control of Virtual Robots using Transformed Objects as Multiple Viewports., , and . ROBIO, page 822-827. IEEE, (2019)Kinematic analysis of MTAB robots and its integration with RoboAnalyzer software., , , , , and . AIR, page 25:1-25:6. ACM, (2015)Robot kinematics made easy using RoboAnalyzer software., , , and . Comput. Appl. Eng. Educ., 25 (5): 669-680 (2017)Modular Serial-Chain Robot with Plug-and-Play Architecture for Effective Teaching and Learning: A methodology to assemble a physical prototype of a serial-chain robot using modular components is presented in this paper. This helps in the effective learning and teaching of concepts related to kinematics of serial-chain robots., , , and . AIR, page 83:1-83:8. ACM, (2023)Control of an Omnidirectional Walking Simulator., , , and . ISER, volume 79 of Springer Tracts in Advanced Robotics, page 811-822. Springer, (2010)