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Sagot :
Sure! Let's take the equation you provided and isolate [tex]\( h \)[/tex].
Given:
[tex]\[ h + p = w \][/tex]
We want to solve for [tex]\( h \)[/tex]. To do this, we need to move the term [tex]\( p \)[/tex] to the other side of the equation. We can achieve this by subtracting [tex]\( p \)[/tex] from both sides of the equation.
Step 1: Subtract [tex]\( p \)[/tex] from both sides
[tex]\[ h + p - p = w - p \][/tex]
Step 2: Simplify both sides
[tex]\[ h = w - p \][/tex]
So, the equation solved for [tex]\( h \)[/tex] is:
[tex]\[ h = w - p \][/tex]
Given:
[tex]\[ h + p = w \][/tex]
We want to solve for [tex]\( h \)[/tex]. To do this, we need to move the term [tex]\( p \)[/tex] to the other side of the equation. We can achieve this by subtracting [tex]\( p \)[/tex] from both sides of the equation.
Step 1: Subtract [tex]\( p \)[/tex] from both sides
[tex]\[ h + p - p = w - p \][/tex]
Step 2: Simplify both sides
[tex]\[ h = w - p \][/tex]
So, the equation solved for [tex]\( h \)[/tex] is:
[tex]\[ h = w - p \][/tex]
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