Horse-power: convert that to kilowatt. Multiply by the time in hours you have the pump on, to get kilowatt-hours. Multiply the result by the cost of each kilowatt-hour. (Look at a recent electricity bill - if it doesn't explicitly state the cost per kilowatt-hour, you can divide the total of the bill by the number of kilowatt-hours consumed.)
Amperes: You would also need the voltage. If you multiply amperes by volts, you get the power in watts. Divide the result by thousand to get kilowatts. Then continue as above.
CommentAs the horsepower quoted for a machine is always its output power, you will need to know the efficiency of the machine in order to determine the input power (in watts), before performing the above calculations. The input power is always higher than the output power. Efficiency varies according to (a) the power rating of the motor, and (2) the actual load it is supplying, and can be less than 80% for smaller motors.
To calculate the power of white noise, you can use the formula for power, which is the mean of the squared values of the signal. For a white noise signal represented as ( x(t) ), the power ( P ) can be calculated using ( P = \frac{1}{T} \int_0^T x^2(t) dt ), where ( T ) is the duration of the observation. Since white noise has a constant power spectral density, its power is generally equal to the variance of the noise signal. In discrete terms, if you have a sample of white noise, the power can be approximated as the average of the squared samples.
Using its Taylor-series.
General use of electricity in agriculture is for pumping the water, using automated water sprinklers, running the bore well pump.
To calculate the total power in a parallel circuit, first determine the voltage across the circuit, which remains constant for all components. Then, find the current flowing through each branch using Ohm's Law (I = V/R) for each resistor. Finally, sum the power consumed by each branch using the formula ( P = V \times I ) for each branch, or simply use ( P_{\text{total}} = V \times I_{\text{total}} ), where ( I_{\text{total}} ) is the sum of the currents in each branch.
void main() { int x=100,y=3; //lets calculate x to the power of y now int result=0,i,j,a=x; for(i=0;i<(y-1);i++) { for(j=0;j<x;j++) result=result+a; a=result; result=0; } printf("%d",a); }
by using a supercharger u get 30 to 40% more horse power than when compared to an engine with out a supercharger....
Horse power is a measure of the power output of engines using the pulling capacity of a draft horse as its base unit. It was originally used to compare the power of steam engines compared to horses and was later extended to included petrol and diesel engines.
Horse riding and geometry are most commonly related using Pythagorean Theorem. Which can help calculate the best take off point for show jumping
Work done is calculated using the formula: Work = Force x Distance. If you have the result in joules and the time taken, you can calculate the power using the formula: Power = Work / Time. So, you can determine the power required to do 200j of work in 20s.
colon pumping using penile equipment
Using a weigh tape can help you calculate the weight of your horse. You put it around his belly and the tip of the first edge rsts against his weight on the weigh tape. If he's on the corect feed and is normal weight, you'll know what he weighs. Thank you!
You can calculate amperage (A) using the formula A = W / V, where W is the power in watts and V is the voltage. Simply divide the power in watts by the voltage to find the amperage.
You can calculate aggregate saving by using the power of compounding. The earlier you start saving, the faster you can aggregate or compound your existing savings in the bank.
Horsepower is typically measured by using a dynamometer, which is a device that can calculate the amount of power an engine produces. It is a unit of power that was originally developed by James Watt in the 18th century to compare the output of steam engines to that of horses. Horsepower is still commonly used to quantify the power of engines in vehicles and machinery.
By pumping your thighs upward (in a fast motion) and using your flexor.
Not enough information. You can calculate the work (using the formula for potential energy), but to calculate the power, you would also need the time (how fast is this done?)
"A true clairvoyant has the power to see things without using natural senses." "To be clairvoyant is to have the power to sense what's to come before it happens." "His clairvoyant powers obviously did not extend to horse racing."