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| def calc_derivative(principal, apr, gas, t=days_between_compounds): | |
| return (principal*((-gas/principal) + ((apr/100)/365) * t + 1)(365/t)) * ( ((apr/100)/( t( (-gas/principal) + t(apr/100)/365 + 1) )) - (365np.log( (-gas/principal) + t(apr/100)/365 + 1))/t2 ) | |
| def calc_final_value(principal, apr, gas, num_days): | |
| return principal(1+(num_days(apr/100)/365 - gas/principal))**(365/num_days) | |
| def find_ideal_compound_rate(principal, apr, gas): | |
| der = 99999999999999999 |
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| aaaa |
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| function poisson(k, landa) { | |
| exponentialPower = Math.exp(-landa); // negative power k | |
| landaPowerK = Math.pow(landa, k); // Landa elevated k | |
| numerator = exponentialPower * landaPowerK; | |
| denominator = fact(k); // factorial of k. | |
| return (numerator / denominator); | |
| } | |
| function fact(x) { |