Wednesday, March 18, 2020

Free Essays on Game Day

My senses are elevated as the front door opens. The mob waiting outside begins pouring in. The sounds of laughter and inquiries of, â€Å"Is anyone home,† began to fill the hollow house. I have no difficulty determining what the mob desires. Hugs, kisses, and, â€Å"How are yous,† are expressed between myself, and the mob. That’s right, the Posey’s have arrived unexpectedly to surprise my two brothers and me for a day of food and football. Nephews and nieces jump down from the arms that hold then to run through the house looking for the horse size dogs, Diesel and Vegas, which are now at the top of the basement steps, just waiting for one of the little ones to open the door and set them free. Free to knock down as many little people as possible and greet them with snorts and slobber. Diesel and Vegas are my two boxers that are well behaved after they have the chance to run and greet every new comer in the house, which could take awhile. After all the love and affection subside, it is time to prepare the great feast that mom and granny have brought with them. The rest of the cooking will take place in the kitchen were only granny is allowed. No one is to bother granny while she cooks, it’s the law were she comes from. Meanwhile, the rest of the family heads downstairs into the twelve hundred square foot basement. There we have set up a game room with a pool table, ping-pong, and air hockey. The room would not be complete without a selection of TV’s for sporting events. The basement itself looks like a traditional basement, lined with cylinder blocks, and an unfinished ceiling, that has exposed pipes and wiring. As the TV’s are turned on and many games commence for a Saturday of college football, games begin between competitive siblings as well. Many different discussions that lead to arguments, which are resolved by a firm tome from my dad, â€Å"If you don’t play nice, you won’t play at all!† The basemen... Free Essays on Game Day Free Essays on Game Day My senses are elevated as the front door opens. The mob waiting outside begins pouring in. The sounds of laughter and inquiries of, â€Å"Is anyone home,† began to fill the hollow house. I have no difficulty determining what the mob desires. Hugs, kisses, and, â€Å"How are yous,† are expressed between myself, and the mob. That’s right, the Posey’s have arrived unexpectedly to surprise my two brothers and me for a day of food and football. Nephews and nieces jump down from the arms that hold then to run through the house looking for the horse size dogs, Diesel and Vegas, which are now at the top of the basement steps, just waiting for one of the little ones to open the door and set them free. Free to knock down as many little people as possible and greet them with snorts and slobber. Diesel and Vegas are my two boxers that are well behaved after they have the chance to run and greet every new comer in the house, which could take awhile. After all the love and affection subside, it is time to prepare the great feast that mom and granny have brought with them. The rest of the cooking will take place in the kitchen were only granny is allowed. No one is to bother granny while she cooks, it’s the law were she comes from. Meanwhile, the rest of the family heads downstairs into the twelve hundred square foot basement. There we have set up a game room with a pool table, ping-pong, and air hockey. The room would not be complete without a selection of TV’s for sporting events. The basement itself looks like a traditional basement, lined with cylinder blocks, and an unfinished ceiling, that has exposed pipes and wiring. As the TV’s are turned on and many games commence for a Saturday of college football, games begin between competitive siblings as well. Many different discussions that lead to arguments, which are resolved by a firm tome from my dad, â€Å"If you don’t play nice, you won’t play at all!† The basemen...

Monday, March 2, 2020

Profile of Stanley Woodard, NASA Aerospace Engineer

Profile of Stanley Woodard, NASA Aerospace Engineer Dr. Stanley E Woodard, is an aerospace engineer at NASA Langley Research Center. Stanley Woodard received his doctorate in mechanical engineering from Duke University in 1995. Woodard also has bachelors and masters degrees in engineering from Purdue and Howard University, respectively. Since coming to work at NASA Langley in 1987, Stanley Woodard has earned many NASA awards, including three Outstanding Performance Awards and a Patent Award. In 1996, Stanley Woodard won the Black Engineer of the Year Award for Outstanding Technical Contributions. In 2006, he was one of four researchers at NASA Langley recognized by the 44th Annual RD 100 Awards in the electronic equipment category. He was a 2008 NASA Honor Award Winner for exceptional service in the research and development of advanced dynamics technologies for NASA missions. Magnetic Field Response Measurement Acquisition System Imagine a wireless system thats truly wireless. It doesnt need a battery or a receiver, unlike most wireless sensors that must be electrically connected to a power source, so it can safely be put almost anywhere. The cool thing about this system is that we can make sensors that dont need any connections to anything, said Dr. Stanley E. Woodard, senior scientist at NASA Langley. And we can completely encapsulate them in any electrically nonconductive material, so they can be put in lots of different locations and protected from the environment around them. Plus we can measure different properties using the same sensor. NASA Langley scientists initially came up with the idea of the measurement acquisition system to improve aviation safety. They say airplanes could use this technology in a number of locations. One would be fuel tanks where a wireless sensor would virtually eliminate the possibility of fires and explosions from faulty wires arcing or sparking. Another would be landing gear. That was where the system was tested in partnership with landing gear manufacturer, Messier-Dowty, Ontario, Canada. A prototype was installed in a landing gear shock strut to measure hydraulic fluid levels. The technology allowed the company to easily measure levels while the gear was moving for the first time ever and cut the time to check the fluid level from five hours to one second. Traditional sensors use electrical signals to measure characteristics, such as weight, temperature, and others. NASAs new technology is a small hand-held unit that uses magnetic fields to power sensors and gather measurements from them. That eliminates wires and the need for direct contact between the sensor and the data acquisition system. Measurements that were difficult to do before because of implementation logistics and environment are now easy with our technology, said Woodard. He is one of four researchers at NASA Langley recognized by the 44th Annual RD 100 Awards in the electronic equipment category for this invention. List of Issued Patents #7255004, August 14, 2007, Wireless fluid level measuring systemA level-sensing probe positioned in a tank is divided into sections with each section including (i) a fluid-level capacitive sensor disposed along the length thereof, (ii) an inductor electrically coupled to the capacitive sensor, (iii) a sensor antenna positioned for inductive coupl7231832, June 19, 2007, System and method for detecting cracks and their location.A system and method are provided for detecting cracks and their location in a structure. A circuit coupled to a structure has capacitive strain sensors coupled sequentially and in parallel to one another. When excited by a variable magnetic field, the circuit has a resonant frequency tha#7159774, January 9, 2007, Magnetic field response measurement acquisition systemMagnetic field response sensors designed as passive inductor-capacitor circuits produce magnetic field responses whose harmonic frequencies correspond to states of physical properties for which the s ensors measure. Power to the sensing element is acquired using Faraday induction. #7086593, August 8, 2006, Magnetic field response measurement acquisition systemMagnetic field response sensors designed as passive inductor-capacitor circuits produce magnetic field responses whose harmonic frequencies correspond to states of physical properties for which the sensors measure. Power to the sensing element is acquired using Faraday induction.#7075295, July 11, 2006, Magnetic field response sensor for conductive mediaA magnetic field response sensor comprises an inductor placed at a fixed separation distance from a conductive surface to address the low RF transmissivity of conductive surfaces. The minimum distance for separation is determined by the sensor response. The inductor should be separat#7047807, May 23, 2006, Flexible framework for capacitive sensingA flexible framework supports electrically-conductive elements in a capacitive sensing arrangement. Identical frames are arranged end-to-end with adjacent frames being capable of rotational movement therebetween. Each frame has first and second passages extending therethrough and par #7019621, March 28, 2006, Methods and apparatus to increase sound quality of piezoelectric devicesA piezoelectric transducer comprises a piezoelectric component, an acoustic member attached to one of the surfaces of the piezoelectric component and a dampening material of low elastic modulus attached to one or both surfaces of the piezoelectric transducer.#6879893, April 12, 2005, Tributary analysis monitoring systemA monitoring system for a fleet of vehicles includes at least one data acquisition and analysis module (DAAM) mounted on each vehicle in the fleet, a control module on each vehicle in communication with each DAAM, and terminal module located remotely with respect to the vehicles in the#6259188, July 10, 2001, Piezoelectric vibrational and acoustic alert for a personal communication deviceAn alert apparatus for a personal communication device includes a mechanically prestressed piezoelectric wafer positioned within the personal communication device and an alternating voltag e input line coupled at two points of the wafer where polarity is recognized.