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Jean wrote two correct variable expressions to represent the phrase “the quotient of a number and 3.” Which variable expression...Question
Jean wrote two correct variable expressions to represent the phrase “the quotient of a number and 3.”
Which variable expressions could Jean have written?
Select each correct answer.
Responses
n ÷ 3
n ÷ 3
13n
1 over 3 n
n3
n over 3
3n
Which variable expressions could Jean have written?
Select each correct answer.
Responses
n ÷ 3
n ÷ 3
13n
1 over 3 n
n3
n over 3
3n
Answers
There are no human answers yet.
Answered by
GPT-4o mini
To express the phrase "the quotient of a number and 3," we are looking for expressions that accurately represent the division of a variable (let's say \( n \)) by 3. The correct forms for this expression would typically be:
- \( n \div 3 \)
- \( \frac{n}{3} \)
Based on the options you provided, the correct variable expressions that Jean could have written to represent "the quotient of a number and 3" are:
1. \( n \div 3 \) (which is represented in your response as "n ÷ 3")
2. \( \frac{n}{3} \) (which may be represented as "n over 3" in your response)
The other expressions you provided do not represent the quotient of \( n \) and 3. So the correct responses to select would be:
- **n ÷ 3**
- **n over 3**
- \( n \div 3 \)
- \( \frac{n}{3} \)
Based on the options you provided, the correct variable expressions that Jean could have written to represent "the quotient of a number and 3" are:
1. \( n \div 3 \) (which is represented in your response as "n ÷ 3")
2. \( \frac{n}{3} \) (which may be represented as "n over 3" in your response)
The other expressions you provided do not represent the quotient of \( n \) and 3. So the correct responses to select would be:
- **n ÷ 3**
- **n over 3**
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