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Increase Creativity, Memory, and Intelligence!You are awesome! You are an engineer and you are large and in charge! You probably don't need any help, but imagine if you could find an additional spark of inspiration? An added boost of creativity? A bit more organization in your life? Notebooks are a quick and easy way to achieve this and more. If belief in being the best you can be, imagine how much more you can achieve with the Trust Me, I'm An Engineer notebook!Increase CreativityWriting by hand has been associated with boosting creativity. Whether you're searching for the next big business idea or for creative ways to express your thoughts, writing in a notebook can give your creative juices more punch. This means coming up with better ideas more quickly and easier than before. Imagine how a boost in creativity will make you feel at work, home or at school. Your next great idea may be written at the tips of your fingers waiting to be found on the pages of the Trust Me, I'm An Engineer notebook.Improve Your MemoryWriting by hand has been shown to improve memory. It has an advantage over digital notes. The Association for Psychological Science proclaimed "taking notes by hand is better than taking notes on a laptop". How will you take advantage of this knowledge to gain an edge on your competition at school, work, or business? How will better understanding make things better for you? Technology is designed to speed up tasks, not for user improvement. Remember, you're not taking notes to refer to later, you're writing it down to remember it now! Because you desire comprehension and understanding rather than simple transcription, the Trust Me, I'm An Engineer notebook is a must.Achieve Your Goals and Organize Your LifeWrite down accomplishments with your hobbies, weight loss, and other life goals. Look back feel good about yourself and all you've done. Besides capturing goals and dreams, capture important tasks, notes, and phone numbers. Use the Trust Me, I'm An Engineer notebook to organize your life.Increase Your IQ Through JournalingA report by the University of Victoria indicated that writing related to language has a positive correlation with intelligence. Journaling is also a way to process and manage emotions, improve self-awareness, and to develop empathy. This translates to a better understanding of others and higher levels of emotional intelligence.Evoke MindfulnessJournaling tends to evoke a state of mindfulness in the writer. A greater state of mindfulness means a greater sense of wellbeing, improved physical health, and improved mental health. This correlates to relief from depression, anxiety, and stress. How will you benefit from a greater state of mindfulness you achieve from journaling in the Trust Me, I'm An Engineer notebook?What Really Matters?Think about the importance of your birth certificate, marriage certificate, property deeds, or even the laws that govern our society...the stuff that really matters goes onto paper! Stop limiting yourself and start generating better ideas, more creativity, and greater organization now with the Trust Me, I'm An Engineer notebook.
Readers will love exploring a career as an aerospace engineer, a job where the sky is never the limit. This book explores both sides of aerospace engineering—aeronautical and astronautical. Readers will learn the different jobs and tasks that make up this important career, as well as the different technologies aerospace engineers use and design. This book provides all the tools readers need to start working towards a career in this exciting field, as well as inspiration through introductions to notable aerospace engineers. Engaging text and vivid photographs provide a dynamic reading experience, while sidebars and a graphic organizer present additional information in an accessible way. This book is a perfect addition to STEM and career-based instruction, and it is sure to be a hit with young engineers everywhere.
Orbital Mechanics for Engineering Students, Second Edition, provides an introduction to the basic concepts of space mechanics. These include vector kinematics in three dimensions; Newton's laws of motion and gravitation; relative motion; the vector-based solution of the classical two-body problem; derivation of Kepler's equations; orbits in three dimensions; preliminary orbit determination; and orbital maneuvers. The book also covers relative motion and the two-impulse rendezvous problem; interplanetary mission design using patched conics; rigid-body dynamics used to characterize the attitude of a space vehicle; satellite attitude dynamics; and the characteristics and design of multi-stage launch vehicles. Each chapter begins with an outline of key concepts and concludes with problems that are based on the material covered. This text is written for undergraduates who are studying orbital mechanics for the first time and have completed courses in physics, dynamics, and mathematics, including differential equations and applied linear algebra. Graduate students, researchers, and experienced practitioners will also find useful review materials in the book. - NEW: Reorganized and improved discusions of coordinate systems, new discussion on perturbations and quarternions - NEW: Increased coverage of attitude dynamics, including new Matlab algorithms and examples in chapter 10 - New examples and homework problems
Rarely is a reader exposed to such an extraordinary, multifaceted presentation of aerospace technology as Bob Brulle narrates in this book. After returning from duty as a combat fighter pilot in World War II, this Belgian immigrant developed a multitalented and innovative aerospace career path that addressed many of the aerospace professions. Along the way he forged a career in the aviation and space field that resulted in his participating in several of the most momentous aerospace achievements of the past century. He also expanded his education through hard work to a level at which he was qualified to teach graduate-level aerospace engineering courses. It is interesting to follow how the analysis and design techniques of aerospace vehicles progressed over the years, which incidentally reveals the large role that the computer played in making that possible. The story on the early Cape Canaveral operations was amusing and showed that enterprising innovations played a large role in a successful undertaking. Some of the projects described were a surprise, as I had never heard of them, like reading how a pencil-shaped missile was built that could fly and maneuver over an intercontinental distance at a high hypersonic velocity. He also described how American engineers and scientists fought the Cold War battle for technological supremacy on their desks and in their laboratories. The initiatives by which this enterprising engineer develops his technical approach to a project are very informative and offer the reader an insight into the workings of successful operations. He achieves an interesting behind-the-scenes look at how aerospace history is made by weaving in the historical significance of these projects as they are developed. As a former aeronautical engineer at the rapidly growing Mc- Donnell Aircraft Corporation, Bob gives us an interesting exposure to the importance of top management's relationship with the workforce in a successful company. "Mr. Mac" made it a point to make all his employees team members by frequent communication and friendly association. From my experience in the aviation field, I find that this unique aviation and space history book provides a very realisFOREWORD tic view on the use of technology in the aviation and space business as it was conquered during the past half century.
It seems that we can divide the world-history of football-related deaths into three periods. The early period, 1900-1959, contains from 0 to 3 tragedies per decade. Deaths were very rare - but were tremendously tragic when they happened. Take for instance the very first incident occurring on the 5th of April in 1902 at Ibrox Stadium in Glasgow, where Scotland played England in the British Home Championship. At the time it was considered to be the most prestigious international tournament in the world and would therefore draw a large audience. While the game was being played the newly built wooden West Stand broke under the weight of the excited crowd. People fell several meters down and on top of each other - resulting in 26 people dying and 517 being injured. Blame was put on the rain that had fallen the night before the game, causing the wooden construction to become unstable. Arena architects abandoned wood as material for higher audience facilities after this episode. But what caused the other disasters?