Keyboard.
Mouse.
Scanner.
Touch screen.
For a computer system, the only components you need are: The Store The processor Input Output That's it really. Even very early computers (such as Babbages mechanical difference engine from 1840) had these four components. In a modern computer, the store is the RAM and disk drive (as well as the network in certain situations), The processor is mainly the CPU, but also many of the smaller chips on the mother board, input is the keyboard and mouse and finally the output is the screen, sound and printer ect. There are peripherals that are several of these components simultaniously, such as if you plug a cell phone into a computer it would be input,output and store all at the same time.
keyboard .. mouse . microphone ... USB port
A binary flip flop is a collection of 4 NAND gates arranged in specific circuit to allow it preserve state. The first two NAND gates use an external voltage as their first input and themselves as their second input; where as the second set of NAND gates use the first pair of gates output as their first input, and themselves as their second input.
4000 yrs
This error message in Python programming indicates that you are trying to access an index that is outside the range of the array or list you are working with. In this case, you are trying to access index 4 in an array or list that only has a size of 4, causing the error.
i dont know just joking it is 4
10.2:4
To provide an accurate output for the input of 4, I would need more context about the function or process being applied to this input. For example, if it’s a mathematical operation, the output could vary widely (e.g., doubling it would yield 8). Please specify the context or function for a precise answer.
we'll get 4 input mux cuz 2^4=16.... therefore the first 4 input mux has 16 o/p.. hence four-4 i/p mux are required to fill all 16 leads.
Document scanner Printer Mouse Graphics Pad
A 4-input decoder can produce (2^n) outputs, where (n) is the number of inputs. For a 4-input decoder, (n = 4), so the number of possible outputs is (2^4 = 16). Therefore, a 4-input decoder can generate 16 distinct output lines based on the 4 input combinations.
3n + 4
what is name for input devices?
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.
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 relationship between the input of 4 and the output of 32 suggests a multiplicative rule. Specifically, it appears that the output is 8 times the input (4 × 8 = 32). Therefore, the rule can be expressed as: output = input × 8.
There are infinitely many possible answers. Rule 1: Add 9 to Input Rule 2: Add 5 to 2*Input Rule 3: Add 1 to 3*Input Rule 4: Subtract -3 from 4*Input or, moving away from whole numbers, Add 3.8 to 2.3 times Input.