International Peer-Reviewed JournalOpen AccessISSN 2456-8880
irejournals@gmail.com+91-7433024337

Home / Current Issue / Paper 1720110

1720110PublishedVol 10 · Issue 1

The 'Antigravity' Effect in Human-AI Collaboration: Evaluating Agentic Workflow Automation and Error Prevention in Day-To-Day Operations

Jai Singh Panwar Nishtha Maheshwari

Subject area: Science,Engineering and Technology  ·  Area of research: Agentic Workflow Automation

DOI: https://doi.org/10.64388/IREV10I1-1720110

Abstract

The paradigm of human-machine interaction is shifting from reactive tool utilization to proactive, agentic collaboration. This paper conceptualizes the "Antigravity Effect"—the systematic removal of administrative friction, cognitive load, and operational drag from human day-to-day activities through advanced AI orchestration. Focusing on Large Language Model (LLM) architectures, specifically Claude AI, we investigate how autonomous automation workflows transition from mere execution tools to preventative layers within enterprise digital ecosystems. While traditional automation relies on rigid, rule-based scripts prone to failure under minor variance, agentic workflows leverage semantic understanding to dynamically intercept and rectify procedural deviations before they manifest as systemic errors. Through a synthesis of contemporary deployment frameworks, this study maps the mechanisms by which contextual AI automation integrates into daily human workflows, minimizes human error, and optimizes task velocity. Ultimately, we propose a conceptual model for frictionless human-AI integration, outlining the technical boundaries and ethical imperatives governing invisible, preventative automation.

Keywords

Agentic Workflows, Artificial Intelligence, Workflow Automation, Frictionless Operations, Error Prevention, Human-AI Collaboration.

How to cite this paper

Jai Singh Panwar, Nishtha Maheshwari "The 'Antigravity' Effect in Human-AI Collaboration: Evaluating Agentic Workflow Automation and Error Prevention in Day-To-Day Operations" Iconic Research And Engineering Journals Volume 10 Issue 1 2026 Page 3126-3129 https://doi.org/10.64388/IREV10I1-1720110
Jai Singh Panwar, Nishtha Maheshwari "The 'Antigravity' Effect in Human-AI Collaboration: Evaluating Agentic Workflow Automation and Error Prevention in Day-To-Day Operations" Iconic Research And Engineering Journals, vol. 10, no. 1, Jul. 2026, doi: https://doi.org/10.64388/IREV10I1-1720110
Jai Singh Panwar, Nishtha Maheshwari (2026). The 'Antigravity' Effect in Human-AI Collaboration: Evaluating Agentic Workflow Automation and Error Prevention in Day-To-Day Operations. Iconic Research And Engineering Journals, 10(1). doi: https://doi.org/10.64388/IREV10I1-1720110
Jai Singh Panwar, Nishtha Maheshwari "The 'Antigravity' Effect in Human-AI Collaboration: Evaluating Agentic Workflow Automation and Error Prevention in Day-To-Day Operations" Iconic Research And Engineering Journals, vol. 10, no. 1, Jul. 2026. Crossref, https://doi.org/10.64388/IREV10I1-1720110
@article{1720110,
      author = {Jai Singh Panwar, Nishtha Maheshwari},
      title = {The 'Antigravity' Effect in Human-AI Collaboration: Evaluating Agentic Workflow Automation and Error Prevention in Day-To-Day Operations},
      journal = {Iconic Research And Engineering Journals},
      year = {2026},
      volume = {10},
      number = {1},
      pages = {3126-3129},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1720110.pdf},
      abstract = {The paradigm of human-machine interaction is shifting from reactive tool utilization to proactive, agentic collaboration. This paper conceptualizes the "Antigravity Effect"—the systematic removal of administrative friction, cognitive load, and operational drag from human day-to-day activities through advanced AI orchestration. Focusing on Large Language Model (LLM) architectures, specifically Claude AI, we investigate how autonomous automation workflows transition from mere execution tools to preventative layers within enterprise digital ecosystems. While traditional automation relies on rigid, rule-based scripts prone to failure under minor variance, agentic workflows leverage semantic understanding to dynamically intercept and rectify procedural deviations before they manifest as systemic errors. Through a synthesis of contemporary deployment frameworks, this study maps the mechanisms by which contextual AI automation integrates into daily human workflows, minimizes human error, and optimizes task velocity. Ultimately, we propose a conceptual model for frictionless human-AI integration, outlining the technical boundaries and ethical imperatives governing invisible, preventative automation.},
      keywords = {Agentic Workflows, Artificial Intelligence, Workflow Automation, Frictionless Operations, Error Prevention, Human-AI Collaboration.},
      month = {July},
      doi = {https://doi.org/10.64388/IREV10I1-1720110}
  }