The answer is I=p r t
I = P x r x t/100 where I = Simple Interest P= principal r= rate t=time The formula is I=PRT P=principal,the money deposited or taken out. R=rate,the percent intrest T=time,the time elapsed or the daily basis
I = prt where I = interest, p = principal, r = rate. and t = time in years.
I= Prt I=interest P=principal r=rate t=time
To substitute values into the simple interest formula, use the formula (I = P \times r \times t), where (I) is the interest, (P) is the principal amount, (r) is the annual interest rate (in decimal form), and (t) is the time in years. For example, if (P = 1000), (r = 0.05), and (t = 3), you would substitute these values in to get (I = 1000 \times 0.05 \times 3). This simplifies to (I = 150). Thus, the interest earned over three years would be $150.
The answer is I=p r t
I=p*r*t
I = P X R X T
Logarithmic growth is inverse of exponential growth... r = growth rate P = initial population value Y = result t = time Formula: Y = P * log r(t) While exponential growth is as follows: Y = P * (1 + r) ^ t Y = P * EXP(1) ^ t (if growth "r" is contigous over time "t") also linear growth formula is: Y = P * r * t finaly here is polynomial growth: Y = P * t ^ r ~codekiddy.
I = P x r x t/100 where I = Simple Interest P= principal r= rate t=time The formula is I=PRT P=principal,the money deposited or taken out. R=rate,the percent intrest T=time,the time elapsed or the daily basis
Program Evaluation & Review Technique.
I = prt where I = interest, p = principal, r = rate. and t = time in years.
I= Prt I=interest P=principal r=rate t=time
6.5%Formula for finding Simple InterestSI [Interest] = (P×R×T)/100P [sum] = (SI×100)/(R×T)R [Rate/year] = (SI×100)/(P×T)T [Time] = (SI×100)/(P×R)whereS.I. = Simple Interest,P = Principal or Sum of amount,R = % Rate per annum,T = Time Span
Screw Jack torque formula: T=9550*P/R T: torque , N.m P: power , KW R: rpm Screw Jack Can be operated by electrically or manually.
Exponential form is when math is explained in steps. The formula for this would be A=P(1+R)to the power of T.
T= Temperature P= Pulse R= Respiration