Biography and Research Information
OverviewAI-generated summary
Chinmaya Joshi's research investigates the quantification and mitigation of uncertainties in thermal conductivity measurements. This work includes the development and calibration of a thermal resistance testing facility, as well as the measurement of out-of-plane thermal conductivity using steady-state heat conduction. Joshi has published research on these topics, with recent work appearing in 2025 and 2024. Collaborations include work with Stephen W. Pierson, Stephen Pierson, Clancy Milam, and C. Russ at the University of Arkansas at Fayetteville, with whom Joshi has multiple shared publications.
Metrics
- h-index: 1
- Publications: 5
- Citations: 1
Selected Publications
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Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester (2025)
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Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester (2025)
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Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education (2024)
Collaboration Network
Top Collaborators
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Development and Calibration of a Thermal Resistance Testing Facility
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Measurement of Out-of-Plane Thermal Conductivity Using Steady-State Heat Conduction
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Development and Calibration of a Thermal Resistance Testing Facility
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Development and Calibration of a Thermal Resistance Testing Facility
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Development and Calibration of a Thermal Resistance Testing Facility
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Measurement of Out-of-Plane Thermal Conductivity Using Steady-State Heat Conduction
- Measurement of Out-of-Plane Thermal Conductivity Using Steady-State Heat Conduction
- Measurement of Out-of-Plane Thermal Conductivity Using Steady-State Heat Conduction
- Development and Calibration of a Thermal Resistance Testing Facility
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