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  1. 1 ημέρα πριν · A stronger rule states that the normal approximation is appropriate only if everything within 3 standard deviations of its mean is within the range of possible values; that is, only if μ ± 3 σ = n p ± 3 n p ( 1 − p ) ∈ ( 0 , n ) . {\displaystyle \mu \pm 3\sigma =np\pm 3{\sqrt {np(1-p)}}\in (0,n).}

  2. 3 ημέρες πριν · In frequentist statistics, the likelihood function is itself a statistic that summarizes a single sample from a population, whose calculated value depends on a choice of several parameters θ 1... θ p , where p is the count of parameters in some already-selected statistical model .

  3. www.omnicalculator.com › math › moduloModulo Calculator

    5 ημέρες πριν · Our modulo calculator will return to you your result – the remainder! And that's not a surprise; it's equal to 10 – the same number as we calculated before. Below, you'll find some typical queries concerning the modulo: 1 mod 1 = 0 (as mod 1 is always 0) 1 mod 2 = 1; 1 mod 3 = 1; 5 mod 2 = 1; 5 mod 3 = 2; 6 mod 3 = 0; 7 mod 3 = 1; 10 mod 3 ...

  4. 2 ημέρες πριν · 1/3 divided by 3. This fraction calculator performs all fraction operations - addition, subtraction, multiplication, division and evaluates expressions with fractions. It also shows detailed step-by-step informations. The result: ( 1 / 3) : 3 = 1 9 ≅ 0.1111111. The spelled result in words is one ninth. How do we solve fractions step by step?

  5. 5 ημέρες πριν · 1/3+1/3. This calculator adds two fractions. When fractions have the same denominators calculator simply adds the numerators and place the result over the common denominator. Then simplify the result to the lowest terms or a mixed number.

  6. 5 ημέρες πριν · Every rational number is either a terminating or repeating decimal. For any given divisor, only finitely many different remainders can occur. In the example above, the 74 possible remainders are 0, 1, 2, ..., 73. If at any point in the division the remainder is 0, the expansion terminates at that point.

  7. 4 ημέρες πριν · The box contains the values \([1, 3, 3, 9]\). Step 2/12 Determine the minimum and maximum values that can be drawn. The minimum value is 1 and the maximum value is 9. Step 3/12 Calculate the smallest possible sum of 100 draws. This occurs when all 100 draws are the minimum value (1): \[ \text{Smallest sum} = 1 \times 100 = 100 \] Step 4/12

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