Complete the function table.
-S
0
1
4
5
X
0
0
0
0
0
5
The given functionrule is:
f(x) = 2x - 5. Therefore, the finished function table will end at 5.
We must assess the function f(x) for each value of x given in order to finish the function table:
For x = -3:
f(-3) = 2(-3) - 5 = -6 - 5 = -11
For x = 0:
f(0) = 2(0) - 5 = -5
For x = 1:
f(1) = 2(1) - 5 = -3
For x = 4:
f(4) = 2(4) - 5 = 3
For x = 5:
f(5) = 2(5) - 5 = 5
The finished function table is as follows:
x f(x)
-3 -11
0 -5
1 -3
4 3
5 5
ending at variable 5.
The function rule that is provided is:
f(x) = 2x - 5
To know more about Function Table visit:
#SPJ1
B. 2.8 centimeters
C. 2.9 centimeters
D. 3 centimeters
I think it is D. but I am not sure. .........
800 different sets of 4 digit PIN could be made.
So, ways of choosing 1 out of 4 digits = 4 P 1 = 4
So, ways of choosing 1 out of 10 digits = 10 P 1 = 10
So, ways of choosing 1 out of 10 digits = 10 P 1 = 10
So, ways of choosing 1 out of 2 digits = 2 P 1 = 2
Hence, total number of ways = 4 x 10 x 10 x 2 = 800 ways
To learn more, refer brainly.com/question/1216161?referrer=searchResults
Answer:
800 different sets of digits.
Step-by-step explanation:
Since the first digit is a factor of 20, the factors of 20 are 1,2,4,5,10,20. We only need the single digit factors which are 1,2,4 and 5. These 4 numbers can be permuted in 1 way for the first digit, so we have ⁴P₁.
For the second digit, we have 10 digits permuted in 1 way, ¹⁰P₁ and also for the third digit, we have 10 digits permuted in 1 way, ¹⁰P₁ and for the last digit, which is divisible by 5, it is either a 0 or 5, so we have two digits permuted in 1 way, ²P₁.
So, the number of different 4 digit number that Zara'2 4-digit PIN code could be is ⁴P₁ × ¹⁰P₁ × ¹⁰P₁ × ²P₁ = 4 × 10 × 10 × 2 = 800 different sets of digits