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Stock image Oxidative Phosphorylation

stock vector Oxidative phosphorylation process. Electron transport chain. The final step in cellular respiration. Vector illustration. Didatic illustration.

Oxidative Phosphorylation Process. Electron Transport Chain. The Final Step In Cellular Respiration. Vector Illustration. Didatic Illustration.

Vector, 0.73MB, 5000 × 3500 ai
stock image 3d illustration of the ATP synthesis in a mitochondrion. ATP synthase couples ATP (red) synthesis from ADP and inorganic phosphate (orange) to a proton gradient (light points) created across the mitochondrial membrane during cellular respiration.

3d Illustration Of The ATP Synthesis In A Mitochondrion. ATP Synthase Couples ATP (red) Synthesis From ADP And Inorganic Phosphate (orange) To A Proton Gradient (light Points) Created Across The Mitochondrial Membrane During Cellular Respiration.

Image, 7.21MB, 8000 × 6000 jpg
stock vector Oxidative phosphorylation vector illustration. Labeled metabolism scheme.

Oxidative Phosphorylation Vector Illustration. Labeled Metabolism Scheme.

Vector, 8.82MB, 4348 × 4000 eps
stock vector ATP synthase complex structure and mechanism of ATP synthase. The binding change mechanism. 120-degree rotation of gamma subunit counter-clockwise.

ATP Synthase Complex Structure And Mechanism Of ATP Synthase. The Binding Change Mechanism. 120-degree Rotation Of Gamma Subunit Counter-clockwise.

Vector, 9.35MB, 5512 × 4202 eps
stock vector The ATP synthase structure (complex V) consists of two components F0 and F1. The formation of ATP using adenosine diphosphate (ADP) and inorganic phosphate (Pi)

The ATP Synthase Structure (complex V) Consists Of Two Components F0 And F1. The Formation Of ATP Using Adenosine Diphosphate (ADP) And Inorganic Phosphate (Pi)

Vector, 11.37MB, 5000 × 5000 eps
stock image Abstract illustration of the biological cell

Abstract Illustration Of The Biological Cell

Image, 13.99MB, 7680 × 4320 jpg
stock vector Electron Transport Chain is a series of compounds where it makes use of electrons from electron carrier to develop a chemical gradient

Electron Transport Chain Is A Series Of Compounds Where It Makes Use Of Electrons From Electron Carrier To Develop A Chemical Gradient

Vector, 5.61MB, 10417 × 10417 eps
stock image abstract illustration of the biological cell and the mitochondria

Abstract Illustration Of The Biological Cell And The Mitochondria

Image, 2.17MB, 3840 × 2160 jpg
stock image  abstract illustration of the biological cell and the mitochondria

Abstract Illustration Of The Biological Cell And The Mitochondria

Image, 1.96MB, 3840 × 2160 jpg
stock image Abstract illustration of the biological cell

Abstract Illustration Of The Biological Cell

Image, 8.54MB, 7680 × 4320 jpg
stock image Abstract 3D illustration of the biological cell

Abstract 3D Illustration Of The Biological Cell

Image, 1.86MB, 3840 × 2160 jpg
stock image ATP synthase couples ATP (red) synthesis from ADP and inorganic phosphate (orange) to a proton gradient (yellow) created across the mitochondrial membrane during cellular respiration.

ATP Synthase Couples ATP (red) Synthesis From ADP And Inorganic Phosphate (orange) To A Proton Gradient (yellow) Created Across The Mitochondrial Membrane During Cellular Respiration.

Image, 12.41MB, 8000 × 6000 jpg
stock image From bottom to top: Fo-subunit (violet), axle-element (light violet), the stator element (light blue), and ATP synthesis takes place in the upper F1-subunit (blue).

From Bottom To Top: Fo-subunit (violet), Axle-element (light Violet), The Stator Element (light Blue), And ATP Synthesis Takes Place In The Upper F1-subunit (blue).

Image, 2.27MB, 8000 × 6000 jpg
stock image Abstract 3D illustration of the cell and the centriole

Abstract 3D Illustration Of The Cell And The Centriole

Image, 2.39MB, 3840 × 2160 jpg
stock image Abstract illustration of the mitochondria

Abstract Illustration Of The Mitochondria

Image, 12.17MB, 7680 × 4320 jpg
stock vector An electron transport chain. Oxidative phosphorylation, the final stage of cellular respiration.  It occurs in the inner mitochondrial membrane in eukaryotes

An Electron Transport Chain. Oxidative Phosphorylation, The Final Stage Of Cellular Respiration. It Occurs In The Inner Mitochondrial Membrane In Eukaryotes

Vector, 8.96MB, 6200 × 3734 eps
stock vector Electron transport chain

Electron Transport Chain

Vector, 0.87MB, 6000 × 4000 ai
stock vector ATP synthase structure. Proton path through the inner mitochondrial membrane.

ATP Synthase Structure. Proton Path Through The Inner Mitochondrial Membrane.

Vector, 12.62MB, 5000 × 5000 eps
stock image Fun 3D cartoon mitochondria

Fun 3D Cartoon Mitochondria

Image, 1.92MB, 4296 × 3999 jpg
stock vector Mechanism of ATP synthase. The binding change mechanism for ATP synthesis.  120-degree rotation of gamma () subunit counter-clockwise.

Mechanism Of ATP Synthase. The Binding Change Mechanism For ATP Synthesis. 120-degree Rotation Of Gamma () Subunit Counter-clockwise.

Vector, 5.41MB, 7000 × 2840 eps
stock image Fun 3D cartoon mitochondria character

Fun 3D Cartoon Mitochondria Character

Image, 1.93MB, 3673 × 4250 jpg
stock vector illustration of biology, Mitochondria are membrane-bound cell organelles that generate most of the chemical energy needed to power the cell's biochemical reactions

Illustration Of Biology, Mitochondria Are Membrane-bound Cell Organelles That Generate Most Of The Chemical Energy Needed To Power The Cell's Biochemical Reactions

Vector, 5.76MB, 4237 × 4185 eps
stock image Abstract 3D illustration of the biological cell and the mitochondria

Abstract 3D Illustration Of The Biological Cell And The Mitochondria

Image, 2.62MB, 3840 × 2160 jpg
stock image Abstract 3D illustration of the biological cell and the mitochondria

Abstract 3D Illustration Of The Biological Cell And The Mitochondria

Image, 2.63MB, 3840 × 2160 jpg
stock image Fun 3D cartoon mitochondria

Fun 3D Cartoon Mitochondria

Image, 1.6MB, 3851 × 3999 jpg
stock image Abstract illustration of the biological cell

Abstract Illustration Of The Biological Cell

Image, 8.18MB, 7680 × 4320 jpg
stock vector Phosphorylation ATP, ADP cycle with detailed process stages outline diagram

Phosphorylation ATP, ADP Cycle With Detailed Process Stages Outline Diagram

Vector, 5.8MB, 4000 × 4000 eps
stock vector Aerobic Respiration bio anatomical vector illustration diagram

Aerobic Respiration Bio Anatomical Vector Illustration Diagram

Vector, 3.3MB, 5496 × 3784 eps
stock vector Aerobic Respiration bio anatomical vector illustration diagram, labeled medical scheme

Aerobic Respiration Bio Anatomical Vector Illustration Diagram, Labeled Medical Scheme

Vector, 1.32MB, 5000 × 5000 eps
stock image Pyruvic acid is the simplest of the alpha-keto acids, with a carboxylic acid and a ketone functional group. 3d illustration

Pyruvic Acid Is The Simplest Of The Alpha-keto Acids, With A Carboxylic Acid And A Ketone Functional Group. 3d Illustration

Image, 0.57MB, 7000 × 3638 jpg
stock vector Function of mitochondria. Mitochondria convert food energy into energy for biological processes like Inflammation, ATP production, Immunity regulation, Calcium homeostasis, Senescence of cell, Stem cell regulation and Apoptosis. Vector illustration

Function Of Mitochondria. Mitochondria Convert Food Energy Into Energy For Biological Processes Like Inflammation, ATP Production, Immunity Regulation, Calcium Homeostasis, Senescence Of Cell, Stem Cell Regulation And Apoptosis. Vector Illustration

Vector, 10.24MB, 4444 × 4444 eps
stock vector Aerobic respiration. Cellular respiration. Pyruvate enter the mitochondria in order to be oxidized by the Krebs cycle. products of this process are carbon dioxide, water, and energy. Vector diagram for educational, biological, science and medical use

Aerobic Respiration. Cellular Respiration. Pyruvate Enter The Mitochondria In Order To Be Oxidized By The Krebs Cycle. Products Of This Process Are Carbon Dioxide, Water, And Energy. Vector Diagram For Educational, Biological, Science And Medical Use

Vector, 0.85MB, 3946 × 3946 eps
stock vector NAD molecule. molecular chemical structural formula and model of Nicotinamide Adenine Dinucleotide. Coenzyme for metabolism. Vector illustration

NAD Molecule. Molecular Chemical Structural Formula And Model Of Nicotinamide Adenine Dinucleotide. Coenzyme For Metabolism. Vector Illustration

Vector, 1.05MB, 4444 × 4444 eps
stock vector Cellular respiration. Connecting Cellular Respiration and Photos

Cellular Respiration. Connecting Cellular Respiration And Photos

Vector, 2.29MB, 4504 × 4504 eps
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