Примери коришћења Imaginary unit на Енглеском и њихови преводи на Српски
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Where is imaginary unit.
J{\displaystyle j} represents the imaginary unit.
J is the imaginary unit.
And j is the imaginary unit.
The imaginary unit is often loosely referred to as the"square root of negative one" or the"square root of minus one", but see below for difficulties that may arise from a naive use of this idea.
Where j is an imaginary unit.
All these ambiguities can be solved by adopting a more rigorous definition of complex number, andexplicitly choosing one of the solutions to the equation to be the imaginary unit.
Where j is the imaginary unit.
Multiplication of√3 by the imaginary unit gives a square root of -3, an imaginary number.
Some texts use the Greek letter iota( ι)to write the imaginary unit to avoid confusion.
Where i{\displaystyle i} is the imaginary unit and horizontal bars indicate complex conjugation.
Comparing with the general case, we see Z1= R and Z2 is the impedance of the capacitor, given by Z 2=- j X C= 1 j ω C,{\displaystyle Z_{2}=-\mathrm{j} X_{\mathrm{C}}={\frac{1}{\mathrm{j}\omega C}}\,} where XC is the reactance of the capacitor, C is the capacitance of the capacitor,j is the imaginary unit, and ω(omega) is the radian frequency of the input voltage.
And j is the imaginary unit.
In mathematics, physics, and engineering, the imaginary unit is denoted by i{\displaystyle i\,} or the Latin j{\displaystyle j\,} or the Greek iota(see alternative notations below).
It can even contain differences TeX does not normally catch, e.g.{{math|''i''}}for the imaginary unit and{{math|i}} for an arbitrary index variable.
In electrical engineering andrelated fields, the imaginary unit is often written as j{\displaystyle j\,} to avoid confusion with electrical current as a function of time, traditionally denoted by i( t){\displaystyle i(t)\,} or just i.
J represents the imaginary unit.
Displaystyle i.\,} The Python programming language also uses j to denote the imaginary unit, while in Matlab, both notations i andj are associated with the imaginary unit.
Where XC is the reactance of the capacitor, C is the capacitance of the capacitor,j is the imaginary unit, and ω(omega) is the radian frequency of the input voltage.
It can even contain differences TeX does not normally catch, e.g.{{math|''i''}}for the imaginary unit and{{ math|< VAR> i</ VAR>}} for an arbitrary index variable.
And then if I have 2 of something and from that I subtract 7 of that something andin this case the something is the imaginary unit, the number i, if I have 2 i'sand I take away 7 i's then I have -5 i's.