Negus, K., & Yovanovich, M. (1984). Constriction Resistance of Circular Flux Tubes with Mixed Boundary Conditions by Linear Superposition of Neumann Solutions ASME Paper 84-HT-84.
Reference author: K.J. Negus
First name
K.J.
Last name
Negus
Yovanovich, M., Negus, K., & Thompson, J. (1984). Transient Temperature Rise of Arbitrary Contacts with Uniform Flux by Surface Element Methods In AIAA 22nd Aerospace Sciences Meeting (pp. 1-7). AIAA Paper.
Yovanovich, M., Thompson, J., & Negus, K. (1983). Thermal Resistance of Arbitrarily Shaped Contacts In Numerical Methods in Thermal Problems (pp. 1072-1082). Seattle, WA: Proceedings of the Third International Conference.
Negus, K., Yovanovich, M., & Beck, J. (1989). On the Non-Dimensionalization of Constriction Resistance for Semi-Infinite Heat Flux Tubes In Journal of Heat Transfer - Technical Notes (Vol. 11, pp. 804-807). Technical Notes.
Negus, K., Franklin, R., & Yovanovich, M. (1989). Thermal Modeling and Experimental Techniques for Microwave Bipolar Devices In IEEE Transactions on Components Hybrids and Manufacturing Technology (Vol. 12, pp. 63-72). N/A.
Negus, K., & Yovanovich, M. (1989). Transient Temperature Rise at Surface Due to Arbitrary Contacts on Half-Spaces In Transactions of the CSME (Vol. 13, pp. 1-9). N/A.
Negus, K., Yovanovich, M., & Thompson, J. (1988). Constriction Resistance of Circular Contacts on Coated Surfaces: Effect of Boundary Conditions In Journal of Thermophysics and Heat Transfer (Vol. 2, pp. 158-164). N/A.
Negus, K., & Yovanovich, M. (1988). Correlation of the Gap Conductance Integral for Conforming Rough Surfaces In Journal of Thermophysics and Heat Transfer (Vol. 2, pp. 279-281). N/A.
Negus, K., Yovanovich, M., & Roulston, D. (1987). An Introduction to Thermal Electrical Coupling in Bipolar Transistors In ASME/JSME Thermal Engineering Joint Conference (Vol. 3, pp. 395-401). Honolulu, HI: N/A.
Negus, K., Yovanovich, M., & Thompson, J. (1985). Thermal Constriction Resistance of Circular Contacts on Coated Surfaces: Effect of Contact Boundary Conditions In AIAA 20th Thermophysics Conference (pp. 1-8). Williamsburg, VA: AIAA Paper.
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