ΔΕ ΔG In chemistry, Marcus Theory is a method for modeling activation energies of certain chemical reactions. It turns out that some chemical reactions can be modelled using quadratic reaction surfaces. The difference between the y-value of the point at which the parabolas intersect and the y-value of the left parabola vertex is the activation energy (deltaE in the figure). Consider two quadratics, one goes through the points (5,10) and (-1,10) and the other goes through the points (10,00) and (5,5). For simplicity, what is the y-value of the point of intersection between these 2 parabolas? You may assume the a- coefficient for each quadratic is 1. Round your final answer to 1 decimal place.

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ISBN:9780470458365
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Chapter2: Second-order Linear Odes
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In chemistry, Marcus Theory is a method for modeling activation energies of certain chemical reactions. It turns out that
some chemical reactions can be modelled using quadratic reaction surfaces. The difference between the y-value of the point
at which the parabolas intersect and the y-value of the left parabola vertex is the activation energy (deltaE in the figure).
Consider two quadratics, one goes through the points (5,10) and (-1,10) and the other goes through the points (10,0) and
(5,5). For simplicity, what is the y-value of the point of intersection between these 2 parabolas? You may assume the a-
coefficient for each quadratic is 1. Round your final answer to 1 decimal place.
Transcribed Image Text:ΔΕ AG In chemistry, Marcus Theory is a method for modeling activation energies of certain chemical reactions. It turns out that some chemical reactions can be modelled using quadratic reaction surfaces. The difference between the y-value of the point at which the parabolas intersect and the y-value of the left parabola vertex is the activation energy (deltaE in the figure). Consider two quadratics, one goes through the points (5,10) and (-1,10) and the other goes through the points (10,0) and (5,5). For simplicity, what is the y-value of the point of intersection between these 2 parabolas? You may assume the a- coefficient for each quadratic is 1. Round your final answer to 1 decimal place.
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