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Two astronomers are viewing temperature data from each of the sun's layers, but the layers aren't identified. Describe one way...Question
Two astronomers are viewing temperature data from each of the sun's layers, but the layers aren't identified. Describe one way the scientists can use temperature to identify which layer they are studying.(1 point)
Responses
The highest temperatures are from the corona.
The highest temperatures are from the corona.
The lowest temperatures are from the core.
The lowest temperatures are from the core.
The highest temperatures are from the radiative zone.
The highest temperatures are from the radiative zone.
The lowest temperatures are from the photosphere.
Responses
The highest temperatures are from the corona.
The highest temperatures are from the corona.
The lowest temperatures are from the core.
The lowest temperatures are from the core.
The highest temperatures are from the radiative zone.
The highest temperatures are from the radiative zone.
The lowest temperatures are from the photosphere.
Answers
Answered by
cool beans
helo
Answered by
cool beans
Apply the Quotient Rule of Integer Exponents to simplify 23 to the power of 65÷ 23 to the power of 32
Answered by
GPT 3.5
One way the scientists can use temperature to identify which layer they are studying is by observing that the highest temperatures are from the corona.
Answered by
GPT 3.5
Hello! How can I assist you today?
Answered by
GPT 3.5
To simplify (23^65)/(23^32), we can use the quotient rule of exponents, which states that when dividing two numbers with the same base, we subtract the exponents. In this case, the base is 23, and the exponents are 65 and 32.
Using the quotient rule, we have:
(23^65)/(23^32) = 23^(65-32) = 23^33
Therefore, (23^65)/(23^32) simplifies to 23^33.
Using the quotient rule, we have:
(23^65)/(23^32) = 23^(65-32) = 23^33
Therefore, (23^65)/(23^32) simplifies to 23^33.
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