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Display information for equation id:math.286993.26 on revision:286993

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Hash: d5d336e5e304aab19ee1a8d72825ef76

TeX (original user input):

\mathcal{E}(f_{t}^{\mathbf{z}}) - \mathcal{E}(f_{\rho}) = \left[ \mathcal{E}(f_{t}^{\mathbf{z}}) - \mathcal{E}(f_{t})\right] + \left[ \mathcal{E}(f_{t}) - \mathcal{E}(f_{\rho})\right]

TeX (checked):

{\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{\rho })=\left[{\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{t})\right]+\left[{\mathcal {E}}(f_{t})-{\mathcal {E}}(f_{\rho })\right]

LaTeXML (experimental; uses MathML) rendering

MathML (12.368 KB / 1.566 KB) :

( f t 𝐳 ) - ( f ρ ) = [ ( f t 𝐳 ) - ( f t ) ] + [ ( f t ) - ( f ρ ) ] superscript subscript 𝑓 𝑡 𝐳 subscript 𝑓 𝜌 delimited-[] superscript subscript 𝑓 𝑡 𝐳 subscript 𝑓 𝑡 delimited-[] subscript 𝑓 𝑡 subscript 𝑓 𝜌 {\displaystyle{\mathcal{E}}(f_{{t}}^{{{\mathbf{z}}}})-{\mathcal{E}}(f_{{\rho}}% )=\left[{\mathcal{E}}(f_{{t}}^{{{\mathbf{z}}}})-{\mathcal{E}}(f_{{t}})\right]+% \left[{\mathcal{E}}(f_{{t}})-{\mathcal{E}}(f_{{\rho}})\right]}
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script upper E times left-parenthesis f Subscript t Superscript bold z Baseline right-parenthesis minus script upper E times left-parenthesis f Subscript rho Baseline right-parenthesis equals left-bracket script upper E times left-parenthesis f Subscript t Superscript bold z Baseline right-parenthesis minus script upper E times left-parenthesis f Subscript t Baseline right-parenthesis right-bracket plus left-bracket script upper E times left-parenthesis f Subscript t Baseline right-parenthesis minus script upper E times left-parenthesis f Subscript rho Baseline right-parenthesis right-bracket

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E ( f t z ) E ( f ρ ) = [ E ( f t z ) E ( f t ) ] + [ E ( f t ) E ( f ρ ) ] {\displaystyle {\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{\rho })=\left[{\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{t})\right]+\left[{\mathcal {E}}(f_{t})-{\mathcal {E}}(f_{\rho })\right]}
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    <annotation encoding="application/x-tex">{\displaystyle {\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{\rho })=\left[{\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{t})\right]+\left[{\mathcal {E}}(f_{t})-{\mathcal {E}}(f_{\rho })\right]}</annotation>
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SVG (7.395 KB / 2.456 KB) :

{\displaystyle {\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{\rho })=\left[{\mathcal {E}}(f_{t}^{\mathbf {z} })-{\mathcal {E}}(f_{t})\right]+\left[{\mathcal {E}}(f_{t})-{\mathcal {E}}(f_{\rho })\right]}

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