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Sagot :
To solve the equation \(98p = 197\), we need to isolate the variable \(p\). Here’s a step-by-step guide to solve for \(p\):
1. We start with the given equation:
[tex]\[ 98p = 197 \][/tex]
2. To isolate \(p\), we need to get \(p\) by itself on one side of the equation. To do this, we need to remove the coefficient of 98 that is currently multiplying \(p\).
3. We can remove the coefficient of 98 by dividing both sides of the equation by 98. This will give us:
[tex]\[ p = \frac{197}{98} \][/tex]
Thus, the number you need to divide by to isolate \(p\) in the equation \(98p = 197\) is 98.
The value of \(p\) turns out to be approximately \(2.010204081632653\), indicating that when you solve for \(p\) by dividing both sides by 98, you get:
[tex]\[ p \approx 2.010204081632653 \][/tex]
1. We start with the given equation:
[tex]\[ 98p = 197 \][/tex]
2. To isolate \(p\), we need to get \(p\) by itself on one side of the equation. To do this, we need to remove the coefficient of 98 that is currently multiplying \(p\).
3. We can remove the coefficient of 98 by dividing both sides of the equation by 98. This will give us:
[tex]\[ p = \frac{197}{98} \][/tex]
Thus, the number you need to divide by to isolate \(p\) in the equation \(98p = 197\) is 98.
The value of \(p\) turns out to be approximately \(2.010204081632653\), indicating that when you solve for \(p\) by dividing both sides by 98, you get:
[tex]\[ p \approx 2.010204081632653 \][/tex]
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