Examples of using Variable can in English and their translations into Greek
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Colloquial
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Official
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Medicine
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Ecclesiastic
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Financial
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Official/political
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Computer
One variable can throw off an entire forecast.
Each possible value of the variable can control a single branch.
Variable can be accessed inside blocks of code.
A small change in one variable can abruptly change the output.
This variable can be set to a default image custom-designed by the site owner, overriding the“Mystery Man” or Gravatar logo.
This example uses the IsNumeric function to determine if a variable can be evaluated as a number.
The address of the variable can be taken by using the& operator.
In his Göttingen inaugural lecture, Riemann described the set of all possible values of a variable with certain constraints as a Mannigfaltigkeit, because the variable can have many values.
The variable can then be treated like any other variable in C.
The important thing to take away from here, is that a variable can take on different values, depending on the context of the problem.
Each variable can contain a single number or an array of numbers.
The population variance for a non-negative random variable can be expressed in terms of the cumulative distribution function F using.
This variable can range between three and six days(or more) depending on your average daily electrical consumption, the output of the RE charging sources and their seasonal availability, and your willingness to use a backup engine generator.
If a variable's growth or decay rate is proportional to its size-as is the case in unlimited population growth(see Malthusian catastrophe), continuously compounded interest, orradioactive decay-then the variable can be written as a constant times an exponential function of time.
A discrete random variable can assume only a finite or countably infinite number of values.
If a variable's growth or decay rate is proportional to its size- as is the case in unlimited population growth(see Malthusian catastrophe), continuously compounded interest, orradioactive decay- then the variable can be written as a constant times an exponential function of time.
This variable can range between three and six days(or more) depending on your average daily electrical consumption, the output of the RE charging sources and their seasonal availability, and your willingness to use a backup engine generator.
It's possible to forgo the introduction of function variables in the definition given above(and some authors do this) because an''n''-ary function variable can be represented by a relation variable of arity''n''+1 and an appropriate formula for the uniqueness of the"result" in the''n''+1 argument of the relation.
It's possible to forgo the introduction of function variables in the definition given above(and some authors do this)because an n-ary function variable can be represented by a relation variable of arity n+1 and an appropriate formula for the uniqueness of the"result" in the n+1 argument of the relation. or, where is a first-order formula., or even as∃SO.
All variables can influence the product's lifetime.
A variety of variables can be used in various control and regulation processes.
Variables can be changed while a program runs.
Alternatively, these variables can also be set as part of your environment.
Variables can represent numeric values, characters, character strings, or memory addresses.
Numerical variables can be either continuous or discrete.
All these variables can influence the quality of the laser cut.
Only local variables can be used within a custom function.
Variables can be quantified over.
Many variables can affect premiums.
A single quadratic polynomial inequality in n- 1 variables can be written as.