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  2. Effective interest rate - Wikipedia

    en.wikipedia.org/wiki/Effective_interest_rate

    The effective interest rate (EIR), effective annual interest rate, annual equivalent rate (AER) or simply effective rate is the percentage of interest on a loan or financial product if compound interest accumulates in periods different than a year. [1] It is the compound interest payable annually in arrears, based on the nominal interest rate ...

  3. Actuarial notation - Wikipedia

    en.wikipedia.org/wiki/Actuarial_notation

    is the annual effective interest rate, which is the "true" rate of interest over a year.Thus if the annual interest rate is 12% then =. (pronounced "i upper m") is the nominal interest rate convertible times a year, and is numerically equal to times the effective rate of interest over one th of a year.

  4. Compound interest - Wikipedia

    en.wikipedia.org/wiki/Compound_interest

    The force of interest is less than the annual effective interest rate, but more than the annual effective discount rate. It is the reciprocal of the e -folding time. A way of modeling the force of inflation is with Stoodley's formula: δ t = p + s 1 + r s e s t {\displaystyle \delta _{t}=p+{s \over {1+rse^{st}}}} where p , r and s are estimated.

  5. Annual effective discount rate - Wikipedia

    en.wikipedia.org/wiki/Annual_effective_discount_rate

    The annual effective discount rate expresses the amount of interest paid or earned as a percentage of the balance at the end of the annual period. It is related to but slightly smaller than the effective rate of interest, which expresses the amount of interest as a percentage of the balance at the start of the period.

  6. What Is the Marginal vs. Effective Tax Rate? - AOL

    www.aol.com/finance/marginal-vs-effective-tax...

    To calculate your effective tax rate, just divide your annual tax bill by your gross annual income. Then, multiply the quotient by 100. Effective Tax Rate Example.

  7. Accumulation function - Wikipedia

    en.wikipedia.org/wiki/Accumulation_function

    The logarithmic or continuously compounded return, sometimes called force of interest, is a function of time defined as follows: = ′ () which is the rate of change with time of the natural logarithm of the accumulation function. Conversely:

  8. Rule of 72 - Wikipedia

    en.wikipedia.org/wiki/Rule_of_72

    For continuous compounding, 69 gives accurate results for any rate, since ln(2) is about 69.3%; see derivation below. Since daily compounding is close enough to continuous compounding, for most purposes 69, 69.3 or 70 are better than 72 for daily compounding. For lower annual rates than those above, 69.3 would also be more accurate than 72. [3]

  9. Talk:Effective interest rate - Wikipedia

    en.wikipedia.org/wiki/Talk:Effective_interest_rate

    2 Problem with the formula. 1 comment. 3 Problem with i as a symbol. 4 equation for calculating effective interest rate. 2 comments. 5 Effective interest rate, APR ...