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Best Selling Books by Michael Rex

Michael Rex is the author of WHEN THE ANSWER IS NO!!! (2023), The Queen Elizabeth II Waterlow 'castle' High Values 1955-1958 (1989), An Experimental Investigation of Wall Effects on Supercavitating Hydrofoils of Finite Span (1977), Experiments on the Indentation and Strength of Diamond (1989), Equilibrim Stability and Strength (1982).

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WHEN THE ANSWER IS NO!!!

release date: Mar 31, 2023
WHEN THE ANSWER IS NO!!!
WHEN THE ANSWER IS NO is a book that primarily focuses on when God''s response to our prayer request is simply no! It is written from the first-hand perspective of a grieving widower Mickey, working his way through his journey of grief both prior to and after the death of his wife Mary. He, along with his family and literally thousands of people prayed for Mary to be healed from duodenal cancer, but it was not to be! WHEN THE ANSWER IS NO is a book about hope when we experience those "when the rubber hits the road" moments or seasons in life. That we can and should be rejoicing and proclaiming God''s sovereignty in those moments or seasons as often or even more so than when on the mountaintop. Even in the moment of losing a loved one to death! Even though through Christ we are capable of rejoicing regardless of the circumstance; this does not remove the pain that we endure especially when we lose a loved one to death. It is okay to grieve! It is suggested that grieving is necessary for God to heal and restore you for the plans that He has prepared for you. It is the hope and prayer that whoever is inspired by the Holy Spirit to read this book will receive a fresh breath of life from our Creator! To fulfill the desires of your heart that he has planned for you. Remember, there is life after the death of a loved one and that more abundantly because of our victory in Jesus, even WHEN THE ANSWER IS NO!!!

The Queen Elizabeth II Waterlow 'castle' High Values 1955-1958

An Experimental Investigation of Wall Effects on Supercavitating Hydrofoils of Finite Span

An Experimental Investigation of Wall Effects on Supercavitating Hydrofoils of Finite Span
A geometrically similar family of three supercavitating hydrofoils was tested in a variable pressure water tunnel. The half-span foils were of elliptical planform; the ratio of foil half-span to tunnel height was 1/4 for the small foil, 1/2 for the medium foil, and 3/4 for the largest foil. The tunnel was of square cross section. Lift, drag, moment, tunnel speed, ambient pressure, and cavity pressure were measured for attack angles from 8 to 21 degrees and a variety of ambient pressure settings; cavity length measurements were obtained from photographs. For the small and medium foils, it was sufficient to correct only for the effect on downwash of the images of the trailing vortices. The large foil data, however, required further correction; upon application of the same corrections which were applied to the data for the two smaller foils, the force and moment data for the large foil plotted slightly lower than did the data for the two smaller foils, while the cavity length data for the large foil indicated cavity lengths significantly larger than for either of the theoretical predictions or the cavity length data for the two smaller foils.

Experiments on the Indentation and Strength of Diamond

release date: Jan 01, 1989

Tooth Fairy

release date: Jan 01, 2002

Strength of Axially Loaded Stiffened Panels

The Influence of Stiffener Spacing and Weld/gap Ratio on the Ultimate Capacity of Axially Loaded Stiffened Plates

Elastic-plastic Design of Rigid Jointed Sway Frames by Computer, by M.R. Horne and K.I. Majid

Vortex Element Analysis of Selected Time-dependent Flows

release date: Jan 01, 1994
Vortex Element Analysis of Selected Time-dependent Flows
Previous investigations of oscillating (harmonic) flow past circular cylinders via the discrete vortex method have met with limited success due to a variety of reasons. These assumptions have proven to be too severe, and cannot allow the prediction of the kinematics and dynamics of the oscillating flow about bluff bodies in general and about a circular cylinder in particular. In the current analysis, the ambient velocity was given by U = Um sin wt, and the velocity distribution and the boundary layer were calculated about the cylinder at suitable time intervals. Several methods were implemented to predict separation, all of which required a minimum of arbitrary assumptions. Nascent vortices were placed at the separation points in such a manner that the Kutta condition was satisfied. Several functional forms of dissipation were investigated, but it was found not to be of overriding influence in the flow kinematics. Counter vortices were found to be a necessary aspect of the analysis, providing continuity from one half cycle to the next. Flow visualization experiments were conducted for a Keulegan-Carpenter number of 10 as a basis for comparison. The kinematics obtained from the numerical model produced a vortex shedding pattern which was typical of those observed experimentally for higher Keulegan-Carpenter numbers. Significant problems were encountered in the prediction of boundary layer separation. At this point, it was obvious that the interaction of a vortex with a boundary layer warranted analysis in a much simpler flow situation; the blade-vortex interaction (BVI) problem proved to be ideal.

The Glitch

release date: Jan 01, 2025
The Glitch
When Fred, a kindhearted robot, discovers a hidden post-apocalyptic paradise whose leader refuses to share its resources, a shocking glitch turns him mean, forcing him to confront his own nature before he undoes all the good he has built.

An Investigation of the Mitigation of Gas Cloud Explosions by Water Sprays

release date: Jan 01, 1990

Your Pal Fred

release date: Jan 01, 2022
Your Pal Fred
Accidentally activated in a future world where only the savage survive, a life-size toy named Fred is programmed to be a friend and spread kindness and good will wherever he goes, but in this world that is going to be difficult--so Fred decides that his first task is to get Lord Bonkers and Papa Mayhem, two warlords, to make peace and become friends.

The Candidate Tumor Suppressor Genes Gelsolin and P140mRhoGAP in Mouse Mammary Gland Development and Neoplasia

release date: Jan 01, 2000
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