Alternative Equation Formats

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MathML

q 1 ( y 1 , t , y 2 , t , , y g , t , x 1 , t , x 2 , t , , x m , t , θ 1 , θ 2 , , θ p ) = ϵ 1 , t q 2 ( y 1 , t , y 2 , t , , y g , t , x 1 , t , x 2 , t , , x m , t , θ 1 , θ 2 , , θ p ) = ϵ 2 , t q g ( y 1 , t , y 2 , t , , y g , t , x 1 , t , x 2 , t , , x m , t , θ 1 , θ 2 , , θ p ) = ϵ g , t

Math Rendered as SVG

Math as LaTeX Source

\begin{eqnarray*} & q_{1}( y_{1,t}, y_{2,t}, \ldots , y_{g,t}, x_{1,t}, x_{2,t}, \ldots , x_{m,t}, {\theta }_{1}, {\theta }_{2}, \ldots , {\theta }_{p})& = {\epsilon }_{1,t} \\ & q_{2}( y_{1,t}, y_{2,t}, \ldots , y_{g,t}, x_{1,t}, x_{2,t}, \ldots , x_{m,t}, {\theta }_{1}, {\theta }_{2}, \ldots , {\theta }_{p})& = {\epsilon }_{2,t} \\ & {\vdots }& \\ & q_{g}( y_{1,t}, y_{2,t}, \ldots , y_{g,t}, x_{1,t}, x_{2,t}, \ldots , x_{m,t}, {\theta }_{1}, {\theta }_{2}, \ldots , {\theta }_{p})& = {\epsilon }_{g,t} \end{eqnarray*}