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Full-Text Articles in Physical Sciences and Mathematics

Volume 6, Number 12 (December 1982), The Solar Ocean Energy Liaison Dec 1982

Volume 6, Number 12 (December 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 11 (November 1982), The Solar Ocean Energy Liaison Nov 1982

Volume 6, Number 11 (November 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 10 (October 1982), The Solar Ocean Energy Liaison Oct 1982

Volume 6, Number 10 (October 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 9 (September 1982), The Solar Ocean Energy Liaison Sep 1982

Volume 6, Number 9 (September 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 8 (August 1982), The Solar Ocean Energy Liaison Aug 1982

Volume 6, Number 8 (August 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 7 (July 1982), The Solar Ocean Energy Liaison Jul 1982

Volume 6, Number 7 (July 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 6 (June 1982), The Solar Ocean Energy Liaison Jun 1982

Volume 6, Number 6 (June 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 5 (May 1982), The Solar Ocean Energy Liaison May 1982

Volume 6, Number 5 (May 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


Volume 6, Number 4 (April 1982), The Solar Ocean Energy Liaison Apr 1982

Volume 6, Number 4 (April 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.


High-Temperature Battery Calorimeter, L. D. Hansen, R. H. Hart, D. M. Chen, H. F. Gibbard Apr 1982

High-Temperature Battery Calorimeter, L. D. Hansen, R. H. Hart, D. M. Chen, H. F. Gibbard

Faculty Publications

A battery calorimeter was built for the measurement of thermal energy generation of high-temperature lithium–aluminum/iron sulfide battery cells, which are under development for electric vehicle propulsion and other energy storage applications. The calorimeter was designed with a temperature range of 400˚–500˚C, a detection limit of 1 mW, and an upper limit of heat flow of 50 W. The results of measurements on 200-Ah LiAl/FeS cells were in excellent agreement with the predictions of thermodynamic calculations based on precise measurements of the total cell polarization and the temperature coefficient of the emf. Details of the construction and operation principles of this …


Volume 6, Numbers 1 & 2 (February & March 1982), The Solar Ocean Energy Liaison Feb 1982

Volume 6, Numbers 1 & 2 (February & March 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

Note that this issue should be Numbers 2 & 3, not Numbers 1 & 2.


Volume 6, Number 1 (January 1982), The Solar Ocean Energy Liaison Jan 1982

Volume 6, Number 1 (January 1982), The Solar Ocean Energy Liaison

The OTEC Liaison

No abstract provided.