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Sagot :
Let's analyze the given data to determine the correct average distance between Miranda and Uranus.
According to the table, the mean distance from Uranus for Miranda is [tex]\( 129,390 \)[/tex] kilometers.
Our task is to identify this value among the provided multiple-choice options. Given the choices are expressed in scientific notation, we will transform our value to this format:
1. Starting with the number [tex]\( 129,390 \)[/tex].
2. Move the decimal point five places to the left to convert the number into scientific notation:
[tex]\[ 129,390 = 1.29390 \times 10^5 \][/tex]
3. Considering significant figures, we can round 1.29390 to 1.29 to match the significant figures used in the options.
Thus, the average distance between Miranda and Uranus can be represented as:
[tex]\[ 1.29 \times 10^5 \text{ km} \][/tex]
After verifying the choices given, the correct answer is indeed:
[tex]\[ \boxed{1.29 \times 10^5 \text{ km}} \][/tex]
According to the table, the mean distance from Uranus for Miranda is [tex]\( 129,390 \)[/tex] kilometers.
Our task is to identify this value among the provided multiple-choice options. Given the choices are expressed in scientific notation, we will transform our value to this format:
1. Starting with the number [tex]\( 129,390 \)[/tex].
2. Move the decimal point five places to the left to convert the number into scientific notation:
[tex]\[ 129,390 = 1.29390 \times 10^5 \][/tex]
3. Considering significant figures, we can round 1.29390 to 1.29 to match the significant figures used in the options.
Thus, the average distance between Miranda and Uranus can be represented as:
[tex]\[ 1.29 \times 10^5 \text{ km} \][/tex]
After verifying the choices given, the correct answer is indeed:
[tex]\[ \boxed{1.29 \times 10^5 \text{ km}} \][/tex]
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