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The equation is B = {A[(1+r/n)^nt -1}/1-(1+r/n)^-n/k.
I know that finding the equation for t (all the other variables are solved for) involves using natural log (ln), but I can't figure it out for the life of me. Anybody help?
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How to find t in a compound interest equation? Different form of the original, includes k?
The equation is B = {A[(1+r/n)^nt -1}/1-(1+r/n)^-n/k.
I know that finding the equation for t (all the other variables are solved for) involves using natural log (ln), but I can't figure it out for the life of me. Anybody help?
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How to find t in a compound interest equation? Different form of the original, includes k?
The equation is B = {A[(1+r/n)^nt -1}/1-(1+r/n)^-n/k.
I know that finding the equation for t (all the other variables are solved for) involves using natural log (ln), but I can't figure it out for the life of me. Anybody help?
Your Answer: What's your source? Share the sites you referenced in your research and give credit.
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Find the x-value(s) of the relative maxima and relative minima, if any, of the function. ½x^4-48x^2+256x-6?
Lasexygang
Can someone please help me! Thanks.
Answer
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Find the x-value(s) of the relative maxima and relative minima, if any, of the function. ½x^4-48x^2+256x-6?
Can someone please help me! Thanks.
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Find the x-value(s) of the relative maxima and relative minima, if any, of the function. ½x^4-48x^2+256x-6?
Can someone please help me! Thanks.
Your Answer: What's your source? Share the sites you referenced in your research and give credit.
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