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    Facility for recovering sulfur from natural gas at night, designed by the Ralph M. Parsons Company, ca.1955

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    Photograph of a facility for recovering sulfur from natural gas at night, designed by the Ralph M. Parsons Company, ca.1955. Three large shiny tanks sit at center, connected by a maze of pipes to several tall towers behind them. A structure holding several tanks stands at right, beside what appears to be a tall vessel or stack. The background is neutral

    James M. Parsons

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    An obituary for the Iowan associate justice James M. Parsons

    James M. Parsons

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    An obituary for the Iowan associate justice James M. Parsons

    Lisa M. Parsons: Hall of Fame Inductee

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    Lisa M. Parsons: Hall of Fame Inductee Lisa M. Parsons does not have to take a back set to anyone when it comes to playing basketball at Winona State University. She was a dominating inside force for the Warriors during her collegiate career that eventually led to selections on four all-conference teams and honorable mention All-American NAIA honors. Parsons’ numbers prove her dominance in the game of basketball. She is the Warriors’ all-time leading rebounder and stands in second place in scoring. The 562 points she scored in the 1989-90 season still ranks first for single-season ranks, third all-time. There have been only nine seasons where a Warrior has grabbed 200 or more rebounds and Parsons accomplished the feat in three of those seasons. Parsons is the only WSU player to have recorded 20 rebounds in a game and four times she scored 30 or more points with a career-high 33, ranking third among all-time single-game efforts. Defensively, Parsons ranks as one of only two WSU players to have 100 or more blocked shots and her 170 career blocks is second best all-time. Since her graduation from Winona State in 1992, Parsons has gone to a basketball coaching career. She was an assistant coach for two years at Anoka, MN High School before holding the head coaching position at the University of Dubuque. Today, Parsons is the head coach at Hamline University, a position she has held since 1999.https://openriver.winona.edu/halloffameinductees/1052/thumbnail.jp

    Constrained Stochastic Climate Simulation: Computer Programs and User Manual

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    Prepared with the support of the National Oceanic and Atmospheric Administration, the National Weather Service, and the National Science Foundation.Computer programs for Constrained Stochastic Climate Simulation (CSCS) and for preliminary parameter estimation are presented. Many of the parameters required by CSCS, can be estimated by commonly available procedures. The remaining parameters can be estimated with the aid of the programs described in this report. Data input summaries and Fortran program listings are also included. This report is a supplement to: Curtis, David Carleton; and Peter S. Eagleson, Constrained Stochastic Climate Simulation, Report Number 274, Ralph M. Parsons Laboratory, Massachusetts Institute of Technology, Cambridge, Massachusetts, May 1982

    Frances M. Parsons album, 1941-1943 (AL-94)

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    Photograph album from Gallaudet University Archives, compiled by Frances M. Parsons. Includes school, family, and vacation photos from her teenage years.This Item is protected by copyright and/or related rights. You are free to use this Item in any way that is permitted by the copyright and related rights legislation that applies to your use. For other uses you need to obtain permission from the rights-holder(s)

    Prediction of Unsteady Salinity Intrusion in Estuaries: Mathematical Model and User's Manual

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    Scanning notes: Disclaimer inserted for illegible graphs and text.Prepared under the support of the Office of Sea Grant National Oceanic and Atmospheric Administration U. S. Department of Commerce through Coherent Area Project Grant GH-88 2-35150Foreword: This report is intended as a documentation of the computer program and as a user's manual for the implementation of the mathematical model for the prediction of unsteady salinity intrusion in estuaries. The details of the model development and verification are contained in the following report: "A Mathematical Model for the Prediction of Unsteady Salinity Intrusion in Estuaries" by M. Llewellyn Thatcher and Donald R. F. Harleman, Ralph M. Parsons Laboratory for Water Resources and Hydrodynamics, Technical Report No. 144, February 1972 also published by M.I.T. Sea Grant Project Office as Report No. MITSG 72-7 (index No. 72-307-Ccb)]. The unsteady salinity intrusion model is one-dimensional, although varying degrees of stratification are accounted for in the assumed longitudinal dispersion relationship. This model is a component in two additional studies, one of which is concerned with the two-dimensional aspects of salinity intrusion (i.e. vertical salinity and velocity distributions in estuaries): "Mathematical Simulation of Tidal Time-Averages of Salinity and Velocity Profiles in Estuaries" by John S. Fisher, John D. Ditmars and Arthur T. Ippen, Ralph M. Parsons Laboratory for Water Resources and Hydrodynamics, Technical Report No. 151, July 1972 [also published by M.I.T. Sea Grant Project Office as Report No. MITSG 72-11 (index No. 72-311-Ccb)] The second study is concerned with the development of a model for predicting the transient longitudinal distribution of water quality parameters in estuaries: "Numerical Model for the Prediction of Transient Water Quality in Estuary Networks" by James E. Dailey and Donald R. F. Harleman, Ralph M. Parsons Laboratory for Water Resources and Hydrodynamics, Technical Report No. 158, October 1972 [also published by M.I.T. Sea Grant Project Office as Report No. MITSG 72-15 (index No. 72-315-Ccb)] This user's manual therefore assists in the implementation of the analytical and numerical models listed above

    Solar Pond Feasibility Study for Egypt: Preliminary Report

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    Scanning notes: Disclaimer inserted for illegible graphs and text.This work was sponsored by the M.I.T. Technology Adaptation Program which is funded through a grant from the Agency for International Development, United States Department of State.The report presents a preliminary feasibility study for salt gradient solar ponds in Egypt. Chapter 1 gives a brief review of the technical and economic aspects of solar ponds. Chapter 2 includes a discussion of the ongoing analytical and experimental research at the Ralph M. Parsons Laboratory. Chapter 3 investigates the potential and technical feasibility of construction and operation of large scale solar ponds in the Qattara Depression. Performance of the proposed solar ponds has been simulated using the Solar Pond Model developed at M.I.T. Chapter 4 gives details of the construction, operation and performance of small demonstration solar ponds at Lake Qarun or Lake Maruit
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