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Chemistry, 04.10.2019 20:20 Kalamazoo4750

Rt apart complete calculate [h+] for [oh−]=4.1×10−4 m. express your answer using two significant figures. [h+][ h + ] = 2.4×10−11 m previous answers correct the formula for the ion-product constant of water, kw, is [oh−][h+]= 1×10−14. when rearranged to solve for [h+], it becomes [h+]===kw[oh−]1.0×10−144.1×10−42.4× 10−11m part bpart complete calculate [h+] for [oh−]=8.5×10−9 m. express your answer using two significant figures. [h+][ h + ] = 1.2×10−6 m previous answers correct part cpart complete calculate [h+] for a solution in which [oh−] is 100 times greater than [h+]. express your answer using two significant figures. [h+][ h + ] = 1.0×10−8 m previous answers correct since the [oh−] is 100 times greater than the [h+], this expression, [oh−]=100[h+], can be substituted into the ion-product constant expression: kw==[h+]×100[h+]100[h+]2 rearranging the equation to solve for [h+]: [h+]===(kw100)1/2(1.0×10−14100)1/21 .0×10−8m part d indicate whether the solution is acidic, basic, or neutral.

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Rt apart complete calculate [h+] for [oh−]=4.1×10−4 m. express your answer using two significant fig...

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