Examples of using Function of time in English and their translations into Thai
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Colloquial
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Ecclesiastic
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Ecclesiastic
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Computer
Function of time: HourPower.
Let's draw my position as a function of time.
So y as a function of time, it's going to be equal to the initial y position, or y of 0, which is 50.
I will say bacteria as a function of time.
So if I want to know x as a function of time-- a suitably vibrant color-- so x as a function of time is going to be what?
So let's figure out what y is as a function of time.
So we know that the bacteria as a function of time is equal to I naught, 100, times e to the kt.
So what is our velocity- or this is our velocity vector as a function of time.
The amount of whatever you have as a function of time will be this type of equation.
In transient analysis, the response is determined as a function of time.
Drift: The variation in dc output voltage as a function of time at constant line voltage, load, and ambient temperature.
So this could be, you know, I have a variable velocity, and this could be my position as a function of time.
And if I was moving at a constant velocity, my position as a function of time would just be a straight line, right?
How fast is y changing as a function of time when x is changing at a function of time at 4 meters per second, and the value of x is equal to 8 meters.
Assume that Jacob and Emily's height h above the ground is a sinusoidal function of time where t equals 0 represents the.
Bacteria as a function of time is going to be equal to the initial bacteria, or the initial of whatever we have for doing compound interest is the amount we start with, e to the kt.
So we need to write a function of h, their distance above the ground, as a function of time, and they're saying that time is given in seconds.
For example, you can learn how to use Ohm's law, how the output of a filter varies with frequency, and how the voltage of a charging capacitor varies as a function of time.
We know k and we know I naught, so we know that the equation is-- So part A, the equation is b of t, bacteria as a function of time is equal to the initial number of bacteria, 100 cells, e to the kt.
Our velocity vector as a function of time is going to be equal to the derivative of our x position as a function of time, or we could say the velocity in the x-direction times the i unit vector, plus the velocity in the y-direction times the j unit vector.
Or what if you could give genetic information to a battery so that it could actually become better as a function of time, and do so in an environmentally friendly way?
So the acceleration vector as a function of time is just going to be the second derivative of x with respect to t, or you would say the acceleration in the x-direction as a function as a function of time times i, plus the acceleration in the y-direction.
Or what if you could give genetic information to a battery so that it could actually become better as a function of time, and do so in an environmentally friendly way?
So by looking at things like clusters of galaxies, and how they-- their number density, how many there are as a function of time-- we can learn about how dark matter and dark energy compete against each other in structure forming.
That's x as a function of the parameter time.