Metal construction,
industrial design,
and engineering components visible.
Close up view of a photo realistic bacterial cell.
Cell appears detailed and spherical.
Background is blurred and colorful.
An automatic hand-caught cake up and down laminating machine with a base.
Includes a mounting plate connected to the base.
Features unwinding and rewinding rollers.
A first motor is attached to one end,
with a guide rod and guide roller.
The installation plate has a conveyor mechanism and a hot pressing mechanism.
Photograph of a PDMS microneedles mold with a network of 10x10 pyramidal microneedles.
The mold is white and square,
featuring sharp peaks arranged evenly.
Schematic view of the punch-out method for minimum-mass targets.
Target material is on the substrate film.
Punch-out laser pulse irradiates the back surface of the transparent substrate.
Tinfoil is ablated,
creating tin plasma at the boundary.
Remaining tinfoil is driven to high velocity by expanding plasma.
Image showcases laboratory glassware arranged on a table.
Three main pieces include volume flask and filter beaker with additional flasks.
Each filled with blue liquid indicating experiments.
Background shows laboratory setting with natural light from the windows.
Clear glass allows detailed view of liquids.
Composition emphasizes precision and scientific inquiry.
This image showcases a laboratory setting with a microscope at the center.
Droplets of vibrant blue and purple are scattered across the table,
illuminated by soft light.
A drop is being carefully placed under the microscope,
emphasizing the precision needed in scientific research.
The environment conveys a sense of advanced biotechnology and innovation.
This scene could reflect the use of CRISPR tools in CAR T-cell therapy,
highlighting modern techniques in genetic modification for medical advances.
Detailed schematic diagram illustrating a sand battery design.
Central steam release pipe plays a crucial role.
Below lies a water capture basin for recycling water.
Insulated walls and roof maintain temperature.
Large heat pipes positioned for effective heat distribution.
Layout emphasizes sustainable engineering practices.
The patient appears to be experiencing pain or discomfort.
The environment is a healthcare setting,
with soft colors and lighting,
emphasizing a sense of concern and uncertainty.
Scientific illustration shows adsorption of 4-methylbenzylidene camphor on microplastic fiber.
Display layers and particles clearly.
The image showcases various laboratory glassware arranged on a table.
There are three main pieces: a volume flask,
a filter beaker,
and a couple of additional flasks.
Each piece is filled with a blue liquid,
indicating potential experiments or solutions.
The background features a laboratory setting with natural light pouring in from the windows.
The clear glass allows for a detailed view of the liquids inside.
The overall composition emphasizes precision and scientific inquiry.
This image sequence illustrates the comprehensive process of recycling used tires.
It begins with the collection stage,
where community members gather discarded tires from local areas.
The next step features the washing of tires using high-pressure hoses and special cleaning agents.
After cleaning,
tires are sorted by type and condition,
with clear labels guiding the classification process.
Tires are then cut into smaller pieces using specialized machines.
The resulting rubber chunks are processed into fine,
uniform rubber granules.
After that,
these granules are dried to remove any residual moisture,
ensuring high quality.
The cut and packaged granules are labeled and boxed for shipment.
Finally,
the last stage shows the distribution of rubber granules through commercial channels,
indicating their journey to be reused in new products.
Emergency response team in uniform standing by an ambulance.
Scene depicts a city street environment showcasing readiness to respond by emergency services.
A baby lying in a crib with a noticeably swollen belly.
The baby is dressed in a diaper.
Soft pillows and a gentle lighting create a warm atmosphere.
Image depicts cement plant with alternative fuel conveying system.
Loader feeds RDF into hopper.
Hopper is above a belt conveyor.
Conveyor transfers material to kiln.
Clear sunny sky.
Industrial environment features.
The image is a detailed schematic diagram illustrating a sand battery design with a volume of 30 cubic meters.
At the core,
a central steam release pipe is depicted,
which plays a crucial role in the system's functionality.
Below it lies a water capture basin designed to collect and recycle water for system efficiency.
The walls and roof of the structure are insulated to maintain temperature,
and large heat pipes are strategically positioned at the top.
These pipes are reminiscent of those used in CPU coolers,
ensuring effective heat distribution and retention for energy storage.
The overall layout emphasizes sustainable engineering practices.
Digital rendering of a controlled flow nozzle for metal salt deposition.
The nozzle has an elongated,
airbrush-like design with a large solution tank.
The image features a clear view of the nozzle and tank,
emphasizing functionality.
Design layout for reverse osmosis system.
Capacity of 110 cubic meters per hour.
Includes tanks,
sensors,
and processing units arranged for optimal flow.
First generation Dodge truck.
Blacked out paint job.
Flatbed design.
Midnight purple undercarriage.
Purple illuminated rims.
Baby lying in crib with a focus on the belly expansion.
Comfortable setting with soft textures and natural light.
A close-up image of a circuit board with a connected cooling fan,
set on a wooden desk in a modern workspace,
with a blurred background featuring a computer and office peripherals.
Heap of white powder on a smooth surface.
Subtle texture visible.
Top-down perspective.
Soft lighting highlights the powder's details.