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tech: the power the Z machine reaches in 1 billionth of a second when it is fired [citation needed] 3 × 10 14: weather: Hurricane Katrina's rate of release of latent heat energy into the air. [48] 3 × 10 14: tech: power reached by the extremely high-power Hercules laser from the University of Michigan. [citation needed] 4.6 × 10 14
This is a list of personal titles arranged in a sortable table. They can be sorted: Alphabetically; By language, nation, or tradition of origin; By function. See Separation of duties for a description of the Executive, Judicial, and Legislative functions as they are generally understood today.
2 Power series. Toggle Power series subsection. 2.1 Low-order polylogarithms. 2.2 Exponential function. ... Toggle the table of contents. List of mathematical series.
The 48 Laws of Power has sold over 1.3 million copies in the United States and has been translated into 24 languages. [6] Fast Company called the book a "mega cult classic", and the Los Angeles Times noted that The 48 Laws of Power turned Greene into a "cult hero with the hip-hop set, Hollywood elite and prison inmates alike".
In mathematics, exponentiation, denoted b n, is an operation involving two numbers: the base, b, and the exponent or power, n. [1] When n is a positive integer, exponentiation corresponds to repeated multiplication of the base: that is, b n is the product of multiplying n bases: [1] = ⏟.
Electromagnetic – standard AC mains power (European AC, Tokyo AC), refresh rate of PAL and SECAM CRT televisions: 60 Hz: Electromagnetic – standard AC mains power (American AC, Osaka AC), refresh rate of NTSC CRT televisions and standard refresh rate of computer monitors: 10 2: 100 Hz 100 Hz
Two to the power of n, written as 2 n, is the number of values in which the bits in a binary word of length n can be set, where each bit is either of two values. A word, interpreted as representing an integer in a range starting at zero, referred to as an "unsigned integer", can represent values from 0 (000...000 2) to 2 n − 1 (111...111 2) inclusively.
Power in mechanical systems is the combination of forces and movement. In particular, power is the product of a force on an object and the object's velocity, or the product of a torque on a shaft and the shaft's angular velocity. Mechanical power is also described as the time derivative of work.