Journal:IUCrJ:S2052252525006645

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<scene name='10/1087716/020_Fig_6b_vis/2'>8.1</scene> '''μJ'''<br>
<scene name='10/1087716/020_Fig_6b_vis/2'>8.1</scene> '''μJ'''<br>
<scene name='10/1087716/020_Fig_6c_vis/2'>16.1</scene>'''μJ'''<br>
<scene name='10/1087716/020_Fig_6c_vis/2'>16.1</scene>'''μJ'''<br>
-
32.2 μJ<br>
+
<scene name='10/1087716/020_Fig_6d_vis/1'>32.2</scene>'''μJ'''<br>
64.4 μJ<br>
64.4 μJ<br>
(approximately 0.4 nJ·μm-2, 4 nJ·μm-2, 8 nJ·μm2, 16 nJ·μm-2, 32 nJ·μm-2). With increasing laser power, the electron density maps support the presence of an NO molecule bound to the heme iron with increasing partial occupancy.
(approximately 0.4 nJ·μm-2, 4 nJ·μm-2, 8 nJ·μm2, 16 nJ·μm-2, 32 nJ·μm-2). With increasing laser power, the electron density maps support the presence of an NO molecule bound to the heme iron with increasing partial occupancy.

Revision as of 08:55, 13 August 2025

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