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xxMikexx [17]
3 years ago
11

Philip has 25$ gift card to his favorite restaurant he wants to use the gift card to buy lunch if c represent the cost of his lu

nch what inequality can describe all of the possible amounts of money in dollars that Philip can spend on lunch
Mathematics
1 answer:
erik [133]3 years ago
3 0
25 is less than or equal to c
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X Y
aliina [53]
The answer is B. I hope it help :)
4 0
2 years ago
Plz help ill give BRAINLIEST it for a test fast plz
Artemon [7]

Answer:

i believe it is C 7,24,25

Step-by-step explanation:

good luck

6 0
3 years ago
Read 2 more answers
HELP PLS HELP ASAP HELP PLSS
posledela

Answer:

<_

Step-by-step explanation:

not a clue if this is correct........

4 0
2 years ago
Which function is undefined for x = 0? y=3√x-2 y=√x-2 y=3√x+2 y=√x=2
Andre45 [30]

For this case, we must indicate which of the given functions is not defined forx = 0

By definition, we know that:

f (x) = \sqrt {x} has a domain from 0 to infinity.

Adding or removing numbers to the variable within the root implies a translation of the function vertically or horizontally. For it to be defined, the term within the root must be positive.

Thus, we observe that:

y = \sqrt {x-2} is not defined, the term inside the root is negative when x = 0.

While y = \sqrt {x + 2} if it is defined for x = 0.

f(x)=\sqrt[3]{x}, your domain is given by all real numbers.

Adding or removing numbers to the variable within the root implies a translation of the function vertically or horizontally. In the same way, its domain will be given by the real numbers, independently of the sign of the term inside the root.

So, we have:

y = \sqrt [3] {x-2} with x = 0: y = \sqrt [3] {- 2} is defined.

y = \sqrt [3] {x + 2}with x = 0: y = \sqrt [3] {2}in the same way is defined.

Answer:

y = \sqrt {x-2}

Option b


6 0
3 years ago
A prism _____ has two congruent, parallel bases.<br> always<br> sometimes<br> never
Hunter-Best [27]

Answer :

A prism __<u>always</u>___ has two congruent, parallel bases.

always

sometimes

never

5 0
3 years ago
Read 2 more answers
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