Siddharth Unnithan Kumar
Biographic Data
| ID | 5152102 |
|---|---|
| NAME | Siddharth Unnithan Kumar |
| GIVEN NAMES | Siddharth Unnithan |
| FAMILY NAME | Kumar |
| SIGNATURE | KUMAR S U |
| AFFILIATIONS | University of Exeter |
| ORCID | 0000-0002-4747-3820 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 4 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Topology beyond application: Drawing social and mathematical worlds into rhythm
For more than sixty years, topology has provided geographers with tools for lifting the veils of Euclideanism and showing how spaces are relational, agential, embodied, and ontologically multiple. A field of mathematics since the nineteenth century, topology has been reworked and mobilised by geographers in diverse ways: from spatial science, through networks and assemblages, to the influences of Law and Mol, Deleuze and Guattari, Agamben, Barad,…
Auditory perception and the ecology of human–nature interactions: Effects of hearing loss on listening to birdsong
The human sensory systems are a primary means through which people experience and connect with nature. Understanding and improving people's personalised ecologies—their embodied, sensory interactions with other organisms—is key to addressing the causes and consequences of the extinction of experience and ecological grief prevalent in industrialised society. Despite this importance, to date there has been little quantitative research into how vary…
Towards an ecological mathematics
Mathematics plays a fundamental role in ecological research, yet its uses remain strikingly separate from advances in the environmental social sciences and humanities. In this paper, I work to address this impasse and outline the motivation and scope for an ‘ecological mathematics’, an approach to doing mathematics in environmental research which foregrounds relationship, embodiment and human difference. I begin by tracing the historical emergenc…
Pathwalker: A New Individual-Based Movement Model for Conservation Science and Connectivity Modelling
Understanding organism movement is at the heart of many ecological disciplines. The study of landscape connectivity—the extent to which a landscape facilitates organism movement—has grown to become a central focus of spatial ecology and conservation science. Several computational algorithms have been developed to model connectivity; however, the major models in use today are limited by their lack of flexibility and simplistic assumptions of movem…
Towards an ecological mathematics
Mathematics plays a fundamental role in ecological research, yet its uses remain strikingly separate from advances in the environmental social sciences and humanities. In this paper, I work to address this impasse and outline the motivation and scope for an ‘ecological mathematics’, an approach to doing mathematics in environmental research which foregrounds relationship, embodiment and human difference. I begin by tracing the historical emergenc…
Topology beyond application: Drawing social and mathematical worlds into rhythm
For more than sixty years, topology has provided geographers with tools for lifting the veils of Euclideanism and showing how spaces are relational, agential, embodied, and ontologically multiple. A field of mathematics since the nineteenth century, topology has been reworked and mobilised by geographers in diverse ways: from spatial science, through networks and assemblages, to the influences of Law and Mol, Deleuze and Guattari, Agamben, Barad,…
Pathwalker: A New Individual-Based Movement Model for Conservation Science and Connectivity Modelling
Understanding organism movement is at the heart of many ecological disciplines. The study of landscape connectivity—the extent to which a landscape facilitates organism movement—has grown to become a central focus of spatial ecology and conservation science. Several computational algorithms have been developed to model connectivity; however, the major models in use today are limited by their lack of flexibility and simplistic assumptions of movem…
Towards an ecological mathematics
Mathematics plays a fundamental role in ecological research, yet its uses remain strikingly separate from advances in the environmental social sciences and humanities. In this paper, I work to address this impasse and outline the motivation and scope for an ‘ecological mathematics’, an approach to doing mathematics in environmental research which foregrounds relationship, embodiment and human difference. I begin by tracing the historical emergenc…
Auditory perception and the ecology of human–nature interactions: Effects of hearing loss on listening to birdsong
The human sensory systems are a primary means through which people experience and connect with nature. Understanding and improving people's personalised ecologies—their embodied, sensory interactions with other organisms—is key to addressing the causes and consequences of the extinction of experience and ecological grief prevalent in industrialised society. Despite this importance, to date there has been little quantitative research into how vary…
Topology beyond application: Drawing social and mathematical worlds into rhythm
For more than sixty years, topology has provided geographers with tools for lifting the veils of Euclideanism and showing how spaces are relational, agential, embodied, and ontologically multiple. A field of mathematics since the nineteenth century, topology has been reworked and mobilised by geographers in diverse ways: from spatial science, through networks and assemblages, to the influences of Law and Mol, Deleuze and Guattari, Agamben, Barad,…
Ecology (2 works) · Geography (2 works) · Land Use and Ecosystem Services (2 works) · Mathematics (2 works) · Active listening (1 works) · Alarm signal (1 works) · Animal Vocal Communication and Behavior (1 works) · Auditory perception (1 works) · Biology (1 works) · Computer Science (1 works)