Input: "3+2" --- Output: "5" Input: "song.mp3" ---- Output: the music you listen to
The relationship between the input and output values is typically defined by a function. In this case, if the input is 6 and the output is 4, the function could be represented as f(x) = x - 2. This function subtracts 2 from the input value to get the output value.
The output can be expressed mathematically as ( \text{Output} = 2 \times (\text{Input} + 3) ). This means you first add 3 to the input value and then multiply the result by 2. For example, if the input is 5, the output would be ( 2 \times (5 + 3) = 2 \times 8 = 16 ).
The rule appears to be a linear relationship between the input and output values. When the input increases by 4 (from 1 to 5), the output decreases by 4 (from 5 to 1). Similarly, when the input increases by another 4 (from 5 to 9), the output decreases by 4 again (from 1 to -3). Therefore, the rule seems to be that for every increase of 4 in the input, the output decreases by 4.
An iPod has both input and output components; the controls are inputs, the headphone is an output, the connection to the computer (and wi-fi for the touch) are input/output components.
is an omr and input or output device?
the output is divided by 3.
the output is divided by 3.
25
L293D is having 20 pin IC and also 16 pin IC. description of 20 pin is: 1-enable 1 2- input 1 3- output 1 4,5,6,7,14,15,16,17- ground 8- output 2 9- input 2 10,20-vs 11-enable 2 12- input 3 13-output 3 18-output 4 19-input 4 description for 18 pin: 1-enable 1 2- input 1 3- output 1 4,5,12,13- ground 6-output 2 7- input 2 8,18-vs 9-enable 2 10-input 3 11-output 3 14-output 4 15-input 4
3
both input r output