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Multiplying exponents with negative powers follows the same set of rules as multiplying exponents with positive powers. The only difference here is that we should be careful with the addition and subtraction of integers for it. For example, 2-3× 2-9= 2-(3+9)= 2-12= 1/212= 1/4096 ≈...
The transfer function of this circuit shows that both negative and positive output voltages are created as the input data (D) is incremented from zero scale (VOUT= −VREF) to midscale(VOUT= 0 V ) to full scale (VOUT= +VREF). Positive Voltage Input/Positive Voltage Output To generate a...
you can use the Product Raised to a Power Rule to multiply and simplify. Look at the two examples that follow. In both problems, the Product Raised to a Power Rule is used right away and then the expression is simplified. Note that we specify that the variable is non-negative,x≥0x≥...
A square root will be both the positive and corresponding negative number. With 16, both 4 and -4 are the square roots: {eq}4\times 4=16 {/eq} {eq}-4\times -4=16 {/eq} The square root functions are stated as: {eq}5^{2}=25 {/eq} Five squared is twenty-five {eq}\...
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