Analyzing Strategic Health Care Cases

 

Complete a detailed case study analysis of the given case, using the process described in Analyzing Strategic Health Care Cases in your course textbook Strategic Management of Health Care Organizations.

 

https://myclasses.southuniversity.edu/content/enforced/86365-17101369/media/ca_fallrivermills_final_2012.pdf?_&d2lSessionVal=aCmxet3LqrCPZUIU687Y16f4t

 

Your completed case study analysis report will include the following sections:

**Executive summary
**Key issues
**Situational analysis
**Strategy formulation
**Recommendation
**Implementation strategies
**Benchmarks for success and contingency plans

Sample Solution

Despite the numerous ways and technologies available to support strategic management, the ability of health executives in the twenty-first century to access and evaluate data from multiple and complex communication networks will be a difficulty. Integrated digital networks and satellite systems will broaden the extent and convenience with which business divisions may share information, and networked systems will make virtual case discussions more accessible across universities. While the internet is commonly utilized in the healthcare industry to support clinical choices, few executives use it for strategic analyses. Despite the fact that electronic technologies can rapidly synthesize data from many sources, research and technical challenges may prevent its use in strategic analysis.

Silica aerogels were first discovered by Professor Samuel Kistler who was a known educator and also very active in the research field. He has authored many scientific articles and technical books within his years of teaching at the University of Utah. Before retiring Dr. Kistler self-published his nonscientific Memorabilia in the University of Utah Library, which include his life story pertaining to his research and teaching history at the university. Dr. Kistler always had an interest in supercritical fluids. He completed his master thesis at Stanford in 1922, which advocated the crystallization of amino acids from supercritical fluids. The lack of publications of research makes it hard to distinguish when Kistler’s work on aerogels was actually done but it is noted that Kistler did research with Professor McBain publishing a paper on the first wet gels. Kistler started working on the production of aerogel during his summers at Stanford since they were a better equipped University. Kistler premiered his work on aerogel while teaching at the College of the Pacific in Stockton, California. The first publication on aerogel was issued in Nature year 1931.
The first large scale production unit for silica aerogel operations plant is located in Monsanto Chemical Company in Boston, Massachusetts. The first product is a light solid that contains more than 95% air volume. “Silica aerogels are highly porous 3D nanostructures and have exhibited excellent physio-chemical properties. The silica aerogel has a low thermal conductivity, high surface area, and good chemical stability,” says Simulation and Analysis of Mechanical Properties of Silica Aerogels: From Rationalization to Prediction.
2.2 Design Process
Silica aerogels have a density of 1.8 pounds per cubic foot. Silica aerogels consist of a solution of sodium silicate to sulphuric acid. According to Monsanto aerogel plant appeared in Chemical and Metallurgical Engineering February 1943 p.144, “Concentrations are controlled to yield a gel having 8 percent silica. After aging several hours to allow the gel to strengthen, due to syneresis phenomena, it is removed from the tank and passed through the roll crusher into one of four wash tanks. Water is passed up through this tank over the gel to remove the sodium sulfate formed in the gel preparation reaction. When the gel has been sufficiently washed, all excess water is removed by draining and the g

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