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Given the Contingency Table Shown Here, Find P(G | M)

question 5

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Given the contingency table shown here, find P(G | M) .  Vehicle Type Somerset (S)  Oakland (O)  Great Lakes (G)  Row Total  Car (C)  444936129 Minivan (M)  21151854 Full-Size Van (F)  2338 SUV (I)  19272672 Truck (T)  1461737 Col Total100100100400\begin{array}{|c|r|r|r|r|}\hline \begin{array}{c}\text { Vehicle Type} \\\end{array} & \begin{array}{c}\text { Somerset } \\(S) \end{array} & \begin{array}{r}\text { Oakland } \\(O) \end{array} & \begin{array}{r}\text { Great Lakes } \\(G) \end{array} & \begin{array}{r}\text { Row Total } \\\end{array} \\\hline \text { Car (C) }&44 & 49 & 36&129 \\\hline \text { Minivan (M) }& 21 & 15 & 18&54 \\\hline \text { Full-Size Van (F) }&2 & 3 & 3&8 \\\hline \text { SUV (I) }&19 & 27 & 26 &72\\\hline \text { Truck (T) }&14 & 6 & 17 &37\\\hline \text { Col Total}&100 & 100 & 100 &400\\\hline\end{array}

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Definitions:

Node of Ranvier

Gaps in the myelin sheath along a nerve fiber, allowing for the rapid transmission of nerve impulses through saltatory conduction.

Summation

The process of adding multiple quantities together to achieve a total sum, often used in mathematics and physics.

IPSPs

Inhibitory postsynaptic potentials, which are synaptic potentials that make a neuron less likely to generate an action potential, often associated with the flow of negative ions into a cell or positive ions out of a cell.

EPSPs

Excitatory Postsynaptic Potentials are electrical charges that increase the likelihood of a neuron firing an action potential.

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