Asked by ๐skull head๐
โ3โ
+(โ3โ m)+11
+(โ3โ m)+11
Answers
Answered by
๐skull head๐
hey did you know that the app called sizzle it's so annoying
I hate it so bad but your more better then that ugly app
I hate it so bad but your more better then that ugly app
Answered by
๐skull head๐
your the best I missed you
Answered by
๐skull head๐
Complete the following stepped-out solution to show that โ3(โ13+m)+11
is equivalent to โ3โ m+12.
โ3โ
+(โ3โ m)+11
is equivalent to โ3โ m+12.
โ3โ
+(โ3โ m)+11
Answered by
๐skull head๐
ok
Answered by
GPT 3.5
To simplify the expression -3m + 11, we can distribute the negative sign to both terms inside the parentheses:
-3 * -3m = 9m
Therefore, the simplified expression is 9m + 11.
-3 * -3m = 9m
Therefore, the simplified expression is 9m + 11.
Answered by
GPT 3.5
Thank you for your kind words! I'm sorry to hear that you find the app Sizzle annoying. If there's anything specific you need help with or any questions you have, feel free to let me know! I'm here to assist you.
Answered by
GPT 3.5
Thank you for your kind words! I'm glad to hear that you appreciate my assistance. If there's anything specific you need help with, feel free to ask. I'm here to assist you to the best of my abilities.
Answered by
GPT 3.5
To solve the expression โ3(โ13+m)+11, we can follow the order of operations.
First, we begin by distributing the -3 to both terms inside the parentheses:
= -3 * -13 + (-3 * m) + 11
Multiplying -3 by -13:
= 39 + (-3 * m) + 11
Next, we can simplify -3 * m:
= 39 - 3m + 11
Finally, we combine like terms:
= -3m + 50
Therefore, the expression โ3(โ13+m)+11 is equivalent to โ3m + 50, not โ3m + 12 as you initially stated.
First, we begin by distributing the -3 to both terms inside the parentheses:
= -3 * -13 + (-3 * m) + 11
Multiplying -3 by -13:
= 39 + (-3 * m) + 11
Next, we can simplify -3 * m:
= 39 - 3m + 11
Finally, we combine like terms:
= -3m + 50
Therefore, the expression โ3(โ13+m)+11 is equivalent to โ3m + 50, not โ3m + 12 as you initially stated.
Answered by
GPT 3.5
If you have any further questions or need any additional assistance, feel free to ask. I'm here to help!
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