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Images Dated 1st October 2008

Choose a picture from our Images Dated 1st October 2008 Collection for your Wall Art and Photo Gifts

25 items

We are proud to offer this selection in partnership with Science Photo Library

Background imageImages Dated 1st October 2008: Geranium pollen, SEM

Geranium pollen, SEM
Geranium pollen. Coloured scanning electron micrograph (SEM) of pollen (orange) on the anther (yellow) of a geranium flower (Geranium sp.)

Background imageImages Dated 1st October 2008: Red blood cells, SEM

Red blood cells, SEM
Red blood cells, coloured scanning electron micrograph (SEM). Red blood cells (erythrocytes) are biconcave, giving them a large surface area for gas exchange, and highly elastic

Background imageImages Dated 1st October 2008: Bee foot, SEM

Bee foot, SEM
Bee foot. Coloured scanning electron micrograph (SEM) of the tip of a leg from a bee (superfamily Apoidea). The end of an insect leg consists of the final segment, which is called the tarsus

Background imageImages Dated 1st October 2008: Asian tiger mosquito, SEM

Asian tiger mosquito, SEM
Asian tiger mosquito (Aedes albopictus), coloured scanning electron micrograph (SEM). Structures on its head (upper centre) include its large compound eyes (red), two feather-like antennae (top)

Background imageImages Dated 1st October 2008: Buttercup flower, SEM

Buttercup flower, SEM
Buttercup flower (Ranunculus sp.), coloured scanning electron micrograph (SEM). The pistil (centre) is surrounded by the stamens (yellow)

Background imageImages Dated 1st October 2008: Asian tiger mosquito, SEM

Asian tiger mosquito, SEM
Asian tiger mosquito (Aedes albopictus), coloured scanning electron micrograph (SEM). Structures on its head (centre left) include its large compound eyes (red), two feather-like antennae (top)

Background imageImages Dated 1st October 2008: Compound eye of a mosquito, SEM

Compound eye of a mosquito, SEM
Compound eye of a mosquito. Coloured scanning electron micrograph (SEM) of numerous lenses making up the surface of a compound eye from an Asian tiger mosquito (Aedes albopictus)

Background imageImages Dated 1st October 2008: Asian tiger mosquito, SEM

Asian tiger mosquito, SEM
Asian tiger mosquito (Aedes albopictus), coloured scanning electron micrograph (SEM). Structures on its head (upper centre) include its large compound eyes (red), two feather-like antennae

Background imageImages Dated 1st October 2008: Asian tiger mosquito, SEM

Asian tiger mosquito, SEM
Asian tiger mosquito (Aedes albopictus), coloured scanning electron micrograph (SEM). Structures on its head (upper centre) include its large compound eyes (red), two feather-like antennae

Background imageImages Dated 1st October 2008: Asian tiger mosquito, SEM

Asian tiger mosquito, SEM
Asian tiger mosquito (Aedes albopictus), coloured scanning electron micrograph (SEM). Structures on its head (upper centre) include its large compound eyes (red)

Background imageImages Dated 1st October 2008: Asian tiger mosquito, SEM

Asian tiger mosquito, SEM
Asian tiger mosquito (Aedes albopictus), coloured scanning electron micrograph (SEM). Structures on its head (upper centre) include its large compound eyes (red), two feather-like antennae (right)

Background imageImages Dated 1st October 2008: Compound eye of a bee, SEM

Compound eye of a bee, SEM
Compound eye of a bee. Coloured scanning electron micrograph (SEM) of numerous lenses making up the surface of a compound eye from a honey bee (Apis sp.)

Background imageImages Dated 1st October 2008: Ant, SEM

Ant, SEM
Ant (family Formicidae), coloured scanning electron micrograph (SEM). One of its compound eyes (pink) is seen, as well as two long antennae that are mounted on the head between the eyes

Background imageImages Dated 1st October 2008: Red blood cells, SEM

Red blood cells, SEM
Red blood cells, coloured scanning electron micrograph (SEM). Red blood cells (erythrocytes) are biconcave, giving them a large surface area for gas exchange, and highly elastic

Background imageImages Dated 1st October 2008: Red blood cells, SEM

Red blood cells, SEM
Red blood cells, coloured scanning electron micrograph (SEM). Red blood cells (erythrocytes) are biconcave, giving them a large surface area for gas exchange, and highly elastic

Background imageImages Dated 1st October 2008: Red blood cells, SEM

Red blood cells, SEM
Red blood cells, coloured scanning electron micrograph (SEM). Red blood cells (erythrocytes) are biconcave, giving them a large surface area for gas exchange, and highly elastic

Background imageImages Dated 1st October 2008: Red blood cells, SEM

Red blood cells, SEM
Red blood cells, coloured scanning electron micrograph (SEM). Red blood cells (erythrocytes) are biconcave, giving them a large surface area for gas exchange, and highly elastic

Background imageImages Dated 1st October 2008: Red blood cells, SEM

Red blood cells, SEM
Red blood cells, coloured scanning electron micrograph (SEM). Red blood cells (erythrocytes) are biconcave, giving them a large surface area for gas exchange, and highly elastic

Background imageImages Dated 1st October 2008: Geranium pollen, SEM

Geranium pollen, SEM
Geranium pollen. Coloured scanning electron micrograph (SEM) of pollen (orange) on the anther (yellow) of a geranium flower (Geranium sp.)

Background imageImages Dated 1st October 2008: Pollen on a bee leg, SEM

Pollen on a bee leg, SEM
Pollen on a bee leg. Coloured scanning electron micrograph (SEM) of pollen grains (yellow) on the leg of a bee (superfamily Apoidea). Pollen grains are the male sex cells of a flowering plant

Background imageImages Dated 1st October 2008: Buttercup flower, SEM

Buttercup flower, SEM
Buttercup flower (Ranunculus sp.), coloured scanning electron micrograph (SEM). The pistil (orange) is surrounded by the stamens (pink)

Background imageImages Dated 1st October 2008: Buttercup flower, SEM

Buttercup flower, SEM
Buttercup flower (Ranunculus sp.), coloured scanning electron micrograph (SEM). The pistil (orange) is surrounded by the stamens (purple)


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