It takes the average reader 9 hours and 39 minutes to read Fractional Vibrations with Applications to Euler-Bernoulli Beams by Ming Li
Assuming a reading speed of 250 words per minute. Learn more
The book examines vibration phenomena with an emphasis on fractional vibrations using the functional form of linear vibrations with frequency-dependent mass, damping, or stiffness, covering the theoretical analysis potentially applicable to structures and, in particular, ship hulls. Covering the six classes of fractional vibrators and seven classes of fractionally damped Euler-Bernoulli beams that play a major role in hull vibrations, this book presents analytical formulas of all results with concise expressions and elementary functions that set it apart from other recondite studies. The results show that equivalent mass or damping can be negative and depends on fractional orders. Other key highlights of the book include a concise mathematical explanation of the Rayleigh damping assumption, a novel description of the nonlinearity of fractional vibrations, and a new concept of fractional motion, offering exciting additions to the field of fractional vibrations. This title will be a must-read for students, mathematicians, physicists, and engineers interested in vibration phenomena and novel vibration performances, especially fractional vibrations.
Fractional Vibrations with Applications to Euler-Bernoulli Beams by Ming Li is 559 pages long, and a total of 144,781 words.
This makes it 189% the length of the average book. It also has 177% more words than the average book.
The average oral reading speed is 183 words per minute. This means it takes 13 hours and 11 minutes to read Fractional Vibrations with Applications to Euler-Bernoulli Beams aloud.
Fractional Vibrations with Applications to Euler-Bernoulli Beams is suitable for students ages 12 and up.
Note that there may be other factors that effect this rating besides length that are not factored in on this page. This may include things like complex language or sensitive topics not suitable for students of certain ages.
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