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</div> | </div> | ||
− | <h1> | + | <h1></h1> |
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<div class=text2left>your text</div> | <div class=text2left>your text</div> | ||
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<div class=text2right><img src="https://static.igem.org/mediawiki/2017/2/27/PB_PC_LB_M9_Abosrbance.jpeg"> | <div class=text2right><img src="https://static.igem.org/mediawiki/2017/2/27/PB_PC_LB_M9_Abosrbance.jpeg"> | ||
</div> | </div> | ||
+ | </div> | ||
<h1>OPTIC MODEL</h1> | <h1>OPTIC MODEL</h1> | ||
+ | <div class=text2> | ||
+ | <div class=text2left>your text</div> | ||
+ | <div class=text2right><img src="https://static.igem.org/mediawiki/2017/2/27/PB_PC_LB_M9_Abosrbance.jpeg"></div><!--replace the url by the one of your image. Repeat for the following block--> | ||
+ | </div> | ||
+ | <div class=text2> | ||
+ | <div class=text2left><img src="https://static.igem.org/mediawiki/2017/2/27/PB_PC_LB_M9_Abosrbance.jpeg"></div> | ||
+ | <div class=text2right>RNA is a light cost nucleotide material in the cell, | ||
+ | We aim to recreate RNA agglomerations as formed | ||
+ | in mammalian cells with triple repeat disorders, | ||
+ | which show liquid phase separation, forming a | ||
+ | organelle-like vesicle, where local concentrations of | ||
+ | enzymes can be created.</div> | ||
+ | </div> | ||
+ | <div class=text2> | ||
+ | <div class=text2left>RNA is a light cost nucleotide material in the cell, | ||
+ | We aim to recreate RNA agglomerations as formed | ||
+ | in mammalian cells with triple repeat disorders, | ||
+ | which show liquid phase separation, forming a | ||
+ | organelle-like vesicle, where local concentrations of | ||
+ | enzymes can be created.</div> | ||
+ | <div class=text2right><img src="https://static.igem.org/mediawiki/2017/2/27/PB_PC_LB_M9_Abosrbance.jpeg"> | ||
+ | </div> | ||
+ | <h1></h1> | ||
<div class=text2> | <div class=text2> | ||
<div class=text2left>your text</div> | <div class=text2left>your text</div> |
Revision as of 21:19, 25 October 2017
MODELLING
OPTIC MODEL
your text
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
your text
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
OPTIC MODEL
your text
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
your text
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.
RNA is a light cost nucleotide material in the cell,
We aim to recreate RNA agglomerations as formed
in mammalian cells with triple repeat disorders,
which show liquid phase separation, forming a
organelle-like vesicle, where local concentrations of
enzymes can be created.