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Technician Collection (page 8)

"Unleashing the Power of Innovation: The Versatile Technician" From ancient Greek triremes to cutting-edge particle detectors

Background imageTechnician Collection: Genetic analysis, washing samples C019 / 0279

Genetic analysis, washing samples C019 / 0279
Genetic analysis. Analyst in a genetics laboratory operating a machine (fluidic station) that is being used to wash and label genetic microarrays containing samples of DNA (deoxyribonucleic acid)

Background imageTechnician Collection: Genetic analysis, hybridization oven C019 / 0276

Genetic analysis, hybridization oven C019 / 0276
Genetic analysis. Analyst placing gene chips or microarrays in a hybridization oven. Gene microarrays are used with automated equipment to investigate

Background imageTechnician Collection: Genetic microarray preparation C019 / 0274

Genetic microarray preparation C019 / 0274
Genetic microarray preparation. Analyst pipetting a prepared DNA (deoxyribonucleic acid) sample onto a gene chip or microarray

Background imageTechnician Collection: Genetic analysis, scanning samples C019 / 0258

Genetic analysis, scanning samples C019 / 0258
Genetic analysis. Analyst in a genetics laboratory, scanning labelled blood samples. DNA (deoxyribonucleic acid) will be isolated from the samples

Background imageTechnician Collection: Genetic analysis, pre-PCR workstation C019 / 0295

Genetic analysis, pre-PCR workstation C019 / 0295
MODEL RELEASED. Genetic analysis. Analyst in a genetics laboratory preparing samples at a pre-PCR (pre-polymerase chain reaction) workstation

Background imageTechnician Collection: Genetic analysis, pre-PCR workstation C019 / 0293

Genetic analysis, pre-PCR workstation C019 / 0293
MODEL RELEASED. Genetic analysis. Analyst in a genetics laboratory preparing samples at a pre-PCR (pre-polymerase chain reaction) workstation

Background imageTechnician Collection: Genetic analysis, washing samples C019 / 0278

Genetic analysis, washing samples C019 / 0278
MODEL RELEASED. Genetic analysis. Analyst in a genetics laboratory operating a fluidic station that is being used to wash and label genetic microarrays containing samples of DNA

Background imageTechnician Collection: Genetic analysis, sample preparation C019 / 0260

Genetic analysis, sample preparation C019 / 0260
Genetic analysis. Analyst in a genetics laboratory preparing blood samples before isolating DNA (deoxyribonucleic acid). This sample preparation will be done with a nucleic acid purification machine

Background imageTechnician Collection: Genetic analysis, labelling samples C019 / 0256

Genetic analysis, labelling samples C019 / 0256
MODEL RELEASED. Genetic analysis. Analyst in a genetics laboratory, labelling and scanning blood samples. DNA (deoxyribonucleic acid) will be isolated from the samples

Background imageTechnician Collection: Genetic sample analysis C019 / 0284

Genetic sample analysis C019 / 0284
MODEL RELEASED. Genetic sample analysis. Analyst in a genetics laboratory reviewing data obtained from the analysis of a genetic microarray (held in hand)

Background imageTechnician Collection: Scanning genetic microarray C019 / 0285

Scanning genetic microarray C019 / 0285
Scanning genetic microarray. Analyst using a scanner to read the barcode of a gene chip or microarray. Samples of DNA (deoxyribonucleic acid) have been added to the microarray

Background imageTechnician Collection: Genetic karyotype analysis C019 / 0268

Genetic karyotype analysis C019 / 0268
MODEL RELEASED. Genetic karyotype analysis. Analyst in a genetics laboratory studying the results after DNA (deoxyribonucleic acid) was isolated from a sample

Background imageTechnician Collection: Genetic microarray preparation C019 / 0273

Genetic microarray preparation C019 / 0273
MODEL RELEASED. Genetic microarray preparation. Analyst pipetting a prepared DNA (deoxyribonucleic acid) sample onto a gene chip or microarray

Background imageTechnician Collection: Genetic microarray preparation C019 / 0272

Genetic microarray preparation C019 / 0272
MODEL RELEASED. Genetic microarray preparation. Analyst pipetting a prepared DNA (deoxyribonucleic acid) sample onto a gene chip or microarray

Background imageTechnician Collection: Scanning genetic microarray C019 / 0286

Scanning genetic microarray C019 / 0286
Scanning genetic microarray. Analyst using a scanner to read the barcode of a gene chip or microarray. Samples of DNA (deoxyribonucleic acid) have been added to the microarray

Background imageTechnician Collection: Genetic microarray, analysis machine C019 / 0282

Genetic microarray, analysis machine C019 / 0282
Genetic microarray, analysis machine. Analyst placing a prepared gene chip or microarray into an analysis machine. Samples of DNA (deoxyribonucleic acid) have been added to the microarray

Background imageTechnician Collection: Genetic sample analysis C019 / 0283

Genetic sample analysis C019 / 0283
MODEL RELEASED. Genetic sample analysis. Analyst in a genetics laboratory reviewing data obtained from the analysis of a genetic microarray (held in hand)

Background imageTechnician Collection: Genetic analysis, DNA isolation C019 / 0265

Genetic analysis, DNA isolation C019 / 0265
MODEL RELEASED. Genetic analysis. Analyst using a nucleic acid purification machine to purify and isolate DNA (deoxyribonucleic acid) from blood samples

Background imageTechnician Collection: Genetic karyotype analysis C019 / 0269

Genetic karyotype analysis C019 / 0269
MODEL RELEASED. Genetic karyotype analysis. Analyst in a genetics laboratory studying the results after DNA (deoxyribonucleic acid) was isolated from a sample

Background imageTechnician Collection: Genetic microarray, analysis machine C019 / 0281

Genetic microarray, analysis machine C019 / 0281
MODEL RELEASED. Genetic microarray, analysis machine. Analyst placing a prepared gene chip or microarray into an analysis machine

Background imageTechnician Collection: Genetic analysis, DNA isolation C019 / 0262

Genetic analysis, DNA isolation C019 / 0262
MODEL RELEASED. Genetic analysis. Analyst using a nucleic acid purification machine to purify and isolate DNA (deoxyribonucleic acid) from blood samples

Background imageTechnician Collection: Fingerprint analysis, 1918 C014 / 0458

Fingerprint analysis, 1918 C014 / 0458
Fingerprint analysis. Early 20th-century analysis of fingerprints, with a clerk using a loupe to examine the records. The ridges on the skin of human fingertips, a distinct and unique pattern

Background imageTechnician Collection: Control room of Tomsk-7 nuclear plant

Control room of Tomsk-7 nuclear plant
Nuclear accident site. Control room of the Tomsk-7 nuclear fuel reprocessing plant. On 6 April 1993 a storage tank exploded while being cleaned with nitric acid

Background imageTechnician Collection: Radiation monitoring

Radiation monitoring. Technicians testing for radiation levels in the region around the Tomsk-7 nuclear fuel reprocessing facility, Russia

Background imageTechnician Collection: Control room of Kalinin Power Station

Control room of Kalinin Power Station
Nuclear power station conttrol room. View across the control room of the Kalininskaya power station, Russia. Kalininskaya has four pressurised water reactors (PWRs), each of 1000 MW capacity

Background imageTechnician Collection: NuSTAR space telescope construction C014 / 1738

NuSTAR space telescope construction C014 / 1738
NuSTAR space telescope construction. Engineers in the final stages of assembling NASAs Nuclear Spectroscopic Telescope Array (NuSTAR)

Background imageTechnician Collection: Cleanroom C013 / 5591

Cleanroom C013 / 5591
Cleanroom. Person wearing a cleanroom suit whilst using a microscope in a cleanroom. A cleanroom is an environment used in manufacturing or scientific research that has a controlled level of

Background imageTechnician Collection: Cleanroom C013 / 5590

Cleanroom C013 / 5590
Cleanroom. Close-up of a man wearing a cleanroom suit whilst working in a cleanroom. A cleanroom is an environment used in manufacturing or scientific research that has a controlled level of

Background imageTechnician Collection: Scientist with specimen trays

Scientist with specimen trays
Scientist removing specimen trays from an incubator

Background imageTechnician Collection: Researcher using isolation cabinet

Researcher using isolation cabinet
MODEL RELEASED. Researcher using an isolation cabinet, a sealed sterile fume cupboard

Background imageTechnician Collection: Pipetting liquid into a test tube

Pipetting liquid into a test tube
MODEL RELEASED. Close-up of liquid being pipetted into a test tube

Background imageTechnician Collection: Scientist examining micro tube samples

Scientist examining micro tube samples
MODEL RELEASED. Scientist examining samples in micro test tubes

Background imageTechnician Collection: Scientist decanting ethanol

Scientist decanting ethanol
MODEL RELEASED. Close-up of a scientist decanting 70% ethanol into test tubes in a fume cupboard

Background imageTechnician Collection: Scientist loading a centrifuge

Scientist loading a centrifuge
MODEL RELEASED. Scientist loading a sample into a centrifuge

Background imageTechnician Collection: Scientist using multipipette

Scientist using multipipette
MODEL RELEASED. Scientist using multipipette. Close-up of a scientist using a multi-pipette to measure samples into test tubes

Background imageTechnician Collection: Scientist using sample agitator

Scientist using sample agitator
MODEL RELEASED. Sample agitator. Scientist placing a large flask into a sample agitator. The agitator will shake the flask, keeping the contents mixed

Background imageTechnician Collection: Filling cryostorage tank

Filling cryostorage tank. Technician transferring liquid nitrogen from a storage container to a cryostorage flask

Background imageTechnician Collection: Scientist at a fume cupboard

Scientist at a fume cupboard
Scientist working with an orange liquid in a fume cupboard in a laboratory

Background imageTechnician Collection: Scientist using a microscope

Scientist using a microscope to study cell cultures

Background imageTechnician Collection: Scientist working in a fume cupboard

Scientist working in a fume cupboard
MODEL RELEASED. Scientist working in a fume cupboard. Scientist pipetting liquid into an Eppendorf tube in a fume cupboard

Background imageTechnician Collection: Sample cryostorage C015 / 6532

Sample cryostorage C015 / 6532
Sample cryostorage. Close-up of a freezer used to store biological samples for use in research in a molecular epidemiology lab. This freezer holds the samples at -80 degrees Celsius

Background imageTechnician Collection: Blood sample cryostorage C015 / 6531

Blood sample cryostorage C015 / 6531
Blood sample cryostorage. Close-up of a freezer used to store samples of human blood for use in research in a molecular epidemiology lab. This freezer holds the samples at -20 degrees Celsius

Background imageTechnician Collection: Blood sample cryostorage C015 / 6529

Blood sample cryostorage C015 / 6529
Blood sample cryostorage. Close-up of a freezer used to store samples of human blood for use in research in a molecular epidemiology lab. This freezer holds the samples at -20 degrees Celsius

Background imageTechnician Collection: Pipetting robot in a lab C015 / 6528

Pipetting robot in a lab C015 / 6528
Pipetting robot in a lab. Close-up of a technician holding a multi-well sample try used by a robotic pipetting machine in a molecular epidemiology laboratory

Background imageTechnician Collection: Pipetting robot in a lab C015 / 6527

Pipetting robot in a lab C015 / 6527
Pipetting robot in a lab. Close-up of a technician holding a multi-well sample try used by a robotic pipetting machine in a molecular epidemiology laboratory

Background imageTechnician Collection: Pipetting robot in a lab C015 / 6526

Pipetting robot in a lab C015 / 6526
Pipetting robot in a lab. Close-up of a technician working with a robotic pipetting machine in a molecular epidemiology laboratory



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"Unleashing the Power of Innovation: The Versatile Technician" From ancient Greek triremes to cutting-edge particle detectors, technicians have been at the forefront of technological advancements throughout history. In Madrid, Spain, a skilled technician meticulously engraves intricate designs on metalwork, preserving centuries-old craftsmanship. At Fermilab's laboratory in Illinois, a dedicated technician fine-tunes the CDF particle detector, unraveling secrets of the universe. Meanwhile, RAF personnel undergo rigorous training courses on Thor missiles under the watchful eye of experienced technicians. In another corner of history, an etched map of Gibraltar from the XVIIIIth century reveals how technicians played a crucial role in cartography and navigation. Stepping into modern times, a technician dons protective gear to maintain and operate T180/0078 fusion reactor—a testament to their expertise in handling advanced technology. A promotional photograph captures their contribution to computing with the IBM 1410 system that revolutionized data processing. In London's Maskelynes Theatre, a spotlight operator skillfully illuminates performances night after night—showcasing how technicians bring magic to stage productions. On naval vessels like SH-60B Sea Hawk helicopters stationed around the world, hull maintenance technicians ensure smooth operations through meticulous inspections. Amidst these diverse roles lies an image that epitomizes progress—a woman holding a small television symbolizing how technicians have brought entertainment into our homes. Finally, we journey back in time to New Orleans' bustling wharf on Mississippi River in 1881 where hardworking technicians ensured efficient maritime trade. Whether it be ancient civilizations or futuristic technologies—the versatile technician remains indispensable as they continue pushing boundaries and shaping our world with their unwavering dedication and technical prowess.