Answer:
Conclusion: you have accepted the hypothesis
this is because if you accept the hypothesis, then you also accept the conclusion so in order to accept the conclusion you must first accept the hypothesis
Step-by-step explanation:
[True]
or
[False]
Answer:
the answer is true
Answer:
C.
Step-by-step explanation:
In prime factored form, we write a number as a product of prime numbers that, when multiplied together, give you that number.
Also, prime number is a number which is only divisible by 1 and itself.
Here, the given number is,
Since, 27 = 3 × 3 × 3
Where, 3 is a prim number,
And, 54 = 3 × 3 × 3 × 2
Where, both 3 and 2 are prime numbers,
Option C is correct.
Answer:
Step-by-step explanation:
To find the ordered pair (j, k) that satisfies the given equations, we can solve the system of equations simultaneously.
The equations are:
5j - 42k = 1
2k - j = 3
We can solve this system of equations using various methods, such as substitution or elimination. Here, we'll use the method of substitution:
From equation 2, we can express j in terms of k:
2k - j = 3
j = 2k - 3
Now, substitute this value of j into equation 1:
5j - 42k = 1
5(2k - 3) - 42k = 1
10k - 15 - 42k = 1
-32k - 15 = 1
-32k = 16
k = -0.5
Substitute this value of k back into equation 2 to find j:
2k - j = 3
2(-0.5) - j = 3
-1 - j = 3
j = -4
Therefore, the ordered pair (j, k) that satisfies the equations 5j - 42k = 1 and 2k - j = 3 is (-4, -0.5).
, and . Subtracting this from the numerator gives a remainder of
, and . Subtracting this from the previous remainder gives a new remainder of
is not a multiple of , so we're done. Then
A.
Add 9 + 6.
B.
Add 6 + 6.
C.
Subtract 9 – 6.
D.
Subtract 6 – 6.