The ordered triple (2, -5, 4) is located in the same octant as the ordered triple (3, -4, 7) as they both share a positive, negative, positive pattern in their coordinates, indicating that they are both situated in the second octant of the Cartesian coordinate system.
The question requires the identification of the octant in which the ordered triple (3, -4, 7) is located and then determining which other given ordered triple shares the same octant. In the Cartesian coordinate system, an octant is each of the eight divisions of a three-dimensional coordinate system. By looking at each coordinate of the ordered triple (3, -4, 7), we can see that the first value is positive, the second is negative, and the third is positive. This primes us to the second octant. Going through the list of ordered triples, we find that (2, -5, 4) shares this same signage pattern: first coordinate positive, second negative, and third positive. Such alignment implies that (2, -5, 4) is also in the second octant. Therefore, the ordered triple that is in the same octant as (3, -4, 7) is (2, -5, 4).
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12/x=4
12 divided by x equals 4
B. making a note of each expense so that she does not repeat purchases
C. preparing a report for her bank on how she spends money
D. preparing a budget to review her expenses
Answer:
D is the right answer.
Step-by-step explanation:
Given that Sarah used to maintain a log of each time she spends or receives money.
Logs are maintained normally for money receipt and payment for the following reasons.
i) To know accurate the cash balance in hand at any time
ii) To estimate the purchases still due
iii) to plan for utilizing the available money for effective uses,
iv) to prepare a budget to review her expenses
Out of the four options the last option seems to be more appropriate for this.
Answer:
(-00, 00)
Step-by-step explanation:
(-infinity, infinity)
Copy these equations on a separate piece of paper and solve for x. Justify 6 points
your solution by writing in Exponential form. Submit a photo of your
solutions. *HINT*You should be able to do all these problems without a
calculator. *
Answer:
Hey don't award this brainliest if you don't want to, but seriously try doing some of these on your own. I promise it's not that hard and you can do it. Remember that there is an equation that relates exponential and logarithmic forms...
You can do this!
Answer:
9
Step-by-step explanation:
;-;
Answer:
the answer to your question is 9
Step-by-step explanation:
1+(1+1+1+1+1+1+1+1)=9