Search alternatives:
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
nm decrease » _ decrease (Expand Search), we decrease (Expand Search), gy decreased (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
nm decrease » _ decrease (Expand Search), we decrease (Expand Search), gy decreased (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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622
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
623
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
624
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
625
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
626
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
627
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
628
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
629
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
630
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
631
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
632
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
633
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
634
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635
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636
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637
Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins
Published 2024“…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
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638
Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins
Published 2024“…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
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639
Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins
Published 2024“…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”
-
640
Bidirectional Optical Control of Proton Motive Force in Escherichia coli Using Microbial Rhodopsins
Published 2024“…Tethered cell experiments revealed that, upon illumination, the torque of the flagellar motor decreased to nearly zero (28 pN nm) with <i>Rm</i>XeR, while it increased to 1170 pN nm with AR3. …”