#low speed centrifuge
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crystalflores786 · 1 year ago
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Low Speed Centrifuge
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A low-speed centrifuge is a laboratory instrument used to separate substances of different densities within a liquid medium through centrifugal force. Unlike high-speed centrifuges which operate at much higher speeds, low-speed centrifuges typically operate at speeds ranging from a few hundred to a few thousand revolutions per minute (RPM).
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deniselabmate · 1 year ago
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Low Speed Centrifuge
A low-speed centrifuge is a laboratory instrument designed to separate components of a mixture based on their density using centrifugal force. Unlike high-speed centrifuges used for more rapid separations, low-speed centrifuges operate at slower speeds and are suitable for delicate samples that may be damaged by high centrifugal forces.
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labnic235 · 1 year ago
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Low Speed Centrifuge
Low Speed Centrifuge is made up of strong and durable plastic case along with a metal lid that runs with a speed of 4000 rpm and 2325 × g RCF. It has the capacity of holding 20 ml × 12 centrifugal tubes that performs centrifugation within the time range of 0 to 99 minutes. Superior safety features such as brushless DC motors, automatic door lock, safety switch, error code display, imbalance and overspeed alarm adds a special highlight. Equipped with an LED display to view rotational speed, RCF and time.
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labozon · 2 years ago
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Low- Speed Table Top Centrifuge 
Low-Speed Table Top Centrifuge LZ-LSC-E100; Maximum Speed: 5000 rpm; Maximum RCF: 4730 times-g; Maximum Capacity: 4-times 300 ml; Timer: 0-to-99 min; RPM/RCF Conversion: yes; For more, visit Labozon.com!
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labnicsltd · 5 months ago
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Low Speed Centrifuge ± 30 rpm
Labnics low speed centrifuge is a high-performance tabletop low speed centrifuge. It offers a 5000 r/min maximum speed and a max RCF of 3500×g with a timer range of 0-99 min. Features a microprocessor control and maintenance free frequency conversion motor and a compact stainless steel body.
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kylalabtronuk · 7 months ago
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PRP Centrifuge
Labtron PRP Centrifuge is a low-speed centrifuge with a maximum speed of 4000 rpm and 3220 × g RCF. It features speed accuracy of ±10 rpm and a maximum volume of 4×50 ml. With 10 programmable settings and 10 acceleration/deceleration options, Constructed from high-quality steel for safety and reliability.
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labmate-inc · 10 months ago
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Low Speed Refrigerated Centrifuge
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A low-speed refrigerated centrifuge is a laboratory instrument used for separating components of a sample based on their density under centrifugal force. Unlike high-speed centrifuges, which spin at much higher velocities and are primarily used for pelleting cellular components or separating small molecules, low-speed refrigerated centrifuges are designed for gentle separation of larger particles or fragile samples.
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labotronicsscientific · 1 year ago
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Benchtop low speed refrigerated centrifuge
Benchtop low speed refrigerated centrifuge is a microcomputer controlled unit with a speed of 5000 rpm and temperature ranging from -20 ℃ ~ 40 ℃. Allows automated configuration of speed and RCF value with short spin press function for instant centrifugation. Equipped with digitalized LED panel for observing and regulating ongoing parameters (speed, time and temperature).
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analabtron · 1 year ago
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Max. speed=2800rpm; Max. RCF=1180-times-g-nbsp; Max. Capacity=6-times-30ml; Timer range=0-99min; RPM/RCF convert=. Shop Online at Labtron.us
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tkdb-hell · 21 days ago
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I read your Ren fics and I simply fell in love... can I ask for number 6 with Isami Yuri??? That boi needs some appreciation !
Thank you so much, I know you have a lot on your plate.
#6 - Wild, breathless kisses brought on by a heartfelt gift.
Kisses Prompt List • Kisses Masterlist
(I do my best to write the reader as gender neutral unless otherwise specified - if you send me an ask and prefer masc or fem, please let me know)
♡ MINORS DO NOT INTERACT ♡
The quiet of the Mortkranken lab was broken only by the soft whirring of machines and Yuri Isami’s low hum as he worked through his latest experiment. He was focused as always, immersed in the kind of work that left no room for distractions. Or so he thought.
“Yuri,” you called, your voice cutting through the sterile air.
He looked up, annoyed at the interruption, but his sharp retort died on his lips when he saw the vial in your hand. The liquid inside was a deep crimson, catching the fluorescent light and glinting like a jewel.
“What is that?” His voice was clipped, but his teal eyes gleamed with barely concealed curiosity.
You held out the vial, a sly smile tugging at your lips. “A gift.”
“A… gift?” His gaze shifted between the vial and your face, suspicious. “Don’t toy with me. If this is some prank—”
“It’s werewolf blood.”
The room seemed to freeze. Yuri’s mouth fell open slightly, and for a moment, he just stared at you, as if trying to process the words you’d just spoken.
“Werewolf blood?” he repeated, his voice breathless.
You nodded. “Lyca owed me a favor. Took a lot of convincing, but he agreed to let me have this for you. I figured it might be… useful.”
The vial barely left your hand before Yuri snatched it, his gloved fingers trembling as he held it up to the light. He examined the contents with a mix of awe and glee, his lips curling into a rare, genuine smile.
“You have no idea,” he murmured, his voice reverent, “how long I’ve wanted to study this. Werewolf blood… the possibilities, the unique anomalies in its composition… this is—”
Before you could finish basking in the glow of his excitement, Yuri turned to you, his teal eyes blazing with an intensity you’d never seen before.
“Do you have any idea what this means?” he said, stepping closer. “This could open entire new fields of study! You—”
And then his lips were on yours.
It was wild and unrestrained, his hands cupping your face as if he couldn’t get enough of you. The kiss was electric, leaving you breathless as he pulled back just enough to look into your eyes, his cheeks flushed with both excitement and something deeper.
“Thank you,” he said, his voice low and hoarse before he kissed you again, this time slower but no less passionate.
When he finally pulled away, you were the one left reeling. But Yuri barely seemed to notice, his focus already snapping back to the vial in his hand.
“I need to prepare this immediately,” he said, his words tumbling out in a rush as he moved to his workstation. “The centrifuge, the slides—where’s my notebook? Oh, I need to adjust the serum analyzer first—”
You stood there, stunned, your lips tingling from the intensity of his kisses.
“Yuri,” you managed, your voice cracking slightly.
“Hm?” he replied, not even looking up as he set up his equipment with lightning speed.
“You kissed me.”
“Yes, I did. And?” He glanced over his shoulder, his expression both matter-of-fact and impatient. “Did you think I wouldn’t? You gave me the greatest gift I’ve ever received.”
His words made your cheeks flush even deeper. “Still, you just—”
“Focus on that later,” he interrupted, waving you off with a gloved hand. “Right now, there’s science to be done. Close the door on your way out. This could take hours.”
You sighed, a mix of exasperation and fondness swirling in your chest as you left him to his work.
As the door clicked shut, you couldn’t help but smile. Leave it to Yuri Isami to give you the most mind-blowing kiss of your life… and then immediately return to his first love: research.
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batterymaster01 · 1 year ago
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The Cosmology of Athyrmagaia, the Home World of the Astutocentaurini
Athyrmagaia is like a distant twin of Earth in many regards. It is the third planet of a G-type main-sequence star called "Doppelganger", and it lies right in the system's Goldilocks zone. It is one of three celestial bodies in this system that currently harbors complex multicellular life, the other two being the sweltering hot Musp and the frigid Hel, both of which we will examine at a later date. Athyrmagaia is about 93.928 miles away from its home star, and it travels an elliptical counterclockwise orbit that is about 413 Earth days long. Its axial tilt is about 24.2 degrees, which results in slightly more dramatic seasons throughout the year. With an axial rotation speed of about 893 mph, its days are about 28 hours long, just four more hours longer than our own planet.
Athyrmagaia has two natural satellites, nicknamed "Nicholas" and "Kringle" respectively. Nicholas behaves similarly to the Terran moon, whose counterclockwise orbit takes about 29.5 local days to complete. Its most fundamental difference, however, is that it has its own sub-moon, Kringle, which is less than a quarter of its size. As Nicholas orbits Athyrmagaia, Kringle occasionally comes between them, which amplifies lunar gravitational forces. As a result, the tidal patterns on Athyrmagaia are much more complex, and in addition to the daily cycle of high and low tides, there is a larger monthly cycle in which the tides get their highest and lowest at the very middle of the month. The moons are tidally locked, with Nicholas locked to Athyrmagaia and Kringle locked to Nicholas.
Several of Athyrmagaia's geophysical characteristics are shockingly close to those to those of Earth. It is about 12,742 kilometers in diameter and has a total mass of 5.972 × 10^24 kg. The centrifugal forces of its axial rotation give it a subtly ellipsoidal shape (although it's practically imperceptible). Its chemical composition is also somewhat similar; the crust comprises oxides containing elements such as aluminum, calcium, silicon, iron, potassium, and magnesium, and its mantle is a mixture of superheated rock and magma comprised of silicates. Its core, just like that of Earth, is a 1,200-kilometer sphere of superheated iron and nickel. However, it is a much older planet, estimated to be about 8.043 billion years old. Despite its advanced age compared to our home, Athyrmagaia is still a very tectonically active world. Mid-ocean ridges constantly ooze hot magma as tectonic plates slowly and steadily shift Athyrmagaia's surface features, and active volcanoes can be found here as well. Its metallic core also acts like an electrical generator, and its kinetic energy generates a strong magnetosphere that shields the planet's surface from deadly UV radiation. It should be noted, however, that there is some geological evidence that Athyrmagaia experienced an unexplained, albeit brief, period of "tectonic arrest" around 230 million years ago. This event is believed to be linked to the Borea-Comedian Mass Extinction Event and was likely responsible for the formation of Cronos, a monstrous (and thankfully long-dead) shield volcano with a surface area comparable to Saudi Arabia.
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Like Earth, most of Athyrmagaia's surface comprises of an interconnected global ocean with large continental landmasses. However, Athyrmagaia's continents and oceans are much more localized than the more generously distributed Earth, with the northern latitudes being mostly land and the southern latitude mostly ocean. The sea can be divided into the Great Central Ocean, the Polar Ocean, the East and West Crescent Oceans, and the Comedian Ocean. Inversely, the planet only has three continents: Borea, Comedia, and Austrus. Although the continents are few, they comprise a relatively substantial portion of the planet's surface. Borea, the biggest continent, exceeds Europe and Asia in size and is formed from two smaller continental units (Macroborea and Microborea). It is so large that it wraps around almost the entirety of the northernmost latitudes, and the mountain range that forms the border of its larger and smaller regions runs straight through the north pole. Its smaller western neighbor, Comedia, still exceeds most of Earth's other continents in terms of scale, including Africa. On the opposite end of this scale is Athyrmagaia's only southern hemisphere continent, Austria. It is the smallest continent, so much so that it has less surface area than Australia. The rest of the southern hemisphere, save for the southernmost portion of Comedia and a few islands, is almost entirely marine, and the south pole is essentially in the middle of the ocean.
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Athyrmagaia's atmosphere is nearly identical to Earth's. In terms of composition, it is about 78% nitrogen, 21% oxygen, and 0.9% argon, while the other 0.1% is comprised of other gases such as carbon dioxide and neon. It also lacks a definite boundary, and it has an average atmospheric pressure of 1013.25 millibars at sea level. This means it is breathable for Humans, and the surface can be explored without a pressure suit. Similar gases are also found in the oceans, though, as expected, they are present in different quantities.
An Earth-like atmosphere and hydrosphere also means an Earth-like biosphere. Regarding chemical composition, life here is probably the most similar to Earth out of all alien biospheres known to science at this time. Not only are they carbon-based, but their biology has converged on the same macromolecules as ours, and they even encode their genetic information using DNA and RNA. This is exceptionally rare, as most known forms of carbon-based alien life often use alternative polymers for their genetics. A differing cell structure also makes us immune to Athyrmagaian pathogens, which means that a human would be able to eat Athyrmagaian food with minimal health risks.
Except for a small number of Archaean-like methanogens, a vast majority of the microbial and multicellular organisms on Athyrmagaia are aerobic respirators that use oxidative phosphorylation to produce ATP and require essential elements such as oxygen, hydrogen, nitrogen, and carbon to survive. Not only do they rely on this Terran atmosphere to live and breathe, but they also play a role in recycling and replenishing its gases. The heterotrophs ("consumers") feed on other living things as they use oxygen from the atmosphere to power their metabolism, releasing carbon dioxide as a byproduct. Meanwhile, the autotrophs ("producers") replenish this oxygen by using carbon dioxide and abiotic energy sources to produce their own food, which separates the oxygen from the carbon and reintroduces it to the atmosphere. These autotrophic forms also made the planet's water and air breathable to begin with; back before the first autotrophs and heterotrophs evolved, the oxygen content was much lower, and there were significantly larger quantities of carbon dioxide on both land and sea.
Biochemical and metabolic similarities aside, it is still quite an alien biosphere compared to our own, and there are multiple discrepancies between Earth and Athyrmagaia biology that complicate the possibilities of human habitation. While we are immune to each other's diseases, there is still a small possibility that they may adapt to infect alien cells, which means that environmental suits are still recommended for surface exploration. The "plant" life uses polylactic acid (a type of bioplastic) in addition to cellulose to construct their cuticles. This substance is indigestible to Earth animals, but many of the native organisms are well suited for dealing with it. The planet's equivalent of cellulolytic "bacteria" can break down polylactic acid using the enzyme proteinase K, which degrades the substance through hydrolysis. Some herbivorous animals are also able to produce this enzyme to assist in digesting vegetation, though most just utilize symbiotic forms of the former microbes to do so. It also just so happens that polylactic acid is highly flammable, and it releases gaseous isopropyl alcohol when it is burned with flame. Due to this, naturally occurring wildfires often release plumes of toxic gas that linger for several days before dissipating. Fortunately, most of the native fauna are highly resistant to these toxic emissions.
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Athyrmagaia's global climate is one that us Terrans would be very comfortable in. It's global temperature is similar to that of Earth during the Pliocene epoch, and it is currently in the midst of a minor warm period that started about 2,000 Terran years ago. Unlike the artificially-induced global warming that once threatened our Earth, Athyrmagaia's warm period is a wholly natural climatic trend, and it is a result of the millennia-spanning variations in its proximity to its home star. Based on current estimates, the planet will likely enter another glacial maximum (or "Ice Age") within the next millennia, as the planet has already started cooling down slightly over the course of the past century of study.
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Just like Earth, Athyrmagaia's surface can be subdivided into latitudinal belts that constitute regions of relatively homogeneous climate. From the equator to the poles, these bands represent tropical, subtropical, temperate and polar climates respectively. This is because latitudes closer to the poles tend to get less direct sunlight than those in the tropics. Some of the other major determining factors of regional climate and weather on Athyrmagaia are atmospheric and oceanic circulation; Tropical and polar easterlies in higher and lower latitudes blow from the east, while prevailing westerlies in middle latitudes blow from the west, which distributes both warm and cool air across the land and sea. Oceanic currents also play a part in this process, bringing precipitation from the tropics to higher and lower latitudes. These phenomena, combined with the varied topographical features of landmasses, forms a wide variety of biomes. The poles are capped with ice and tundra, while the equator forms a belt of steamy jungle. Subtropical latitudes form dry forests, shrublands, deserts and savannahs, and the temperate latitudes consist of forests, steppes, and taiga.
As a result of its 24.2-degree axial tilt, Athyrmagaia is also a highly seasonal world, with springs, summers, autumns and winters that become more noticeable as you travel further away from the equator. The seasons of the north and southern hemispheres are opposite to each other; In the northern hemisphere, the year starts with winter, which is followed by spring, summer and autumn until it cycles back to winter at the end of the year. In the southern hemisphere, the year instead starts with summer, which is followed by autumn, winter, and spring and then ends with summer once again. At the equator, however, no such seasons exist, with there instead being two wet seasons and two dry seasons. Larger climatic trends have also occurred as a result of variations in the axial tilt and proximity to the sun over the course of millions of years, such as the current warm period.
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crystalflores786 · 1 year ago
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Low Speed Refrigerated Centrifuge
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A low-speed refrigerated centrifuge is a laboratory instrument used to separate substances of different densities within a solution. It operates by spinning samples at high speeds, causing heavier particles to settle at the bottom of the centrifuge tube while lighter particles remain suspended or float towards the top. The refrigeration feature helps maintain a controlled temperature during the centrifugation process, which is particularly important for delicate samples that may be sensitive to temperature changes.
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deniselabmate · 1 year ago
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Low Speed Refrigerated Centrifuge
A low-speed refrigerated centrifuge is a specialized laboratory instrument designed to separate components of a mixture based on their density while maintaining a controlled low temperature environment.
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labnic235 · 1 year ago
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Low Speed Refrigerated Centrifuge
Low Speed Refrigerated Centrifuge is a microprocessor controlled vertical floor type refrigerated centrifuge with 4000 rpm and 2755 × g RCF which combines a rotor capacity of 100 ml × 4, 50 ml × 8, 15 ml ×16, 10 ml × 24. It is fully equipped with a brushless DC motor, swing rotors. Provided with LED display system, touch panel control, refrigeration system, electromagnetic door lock and a safety switch.
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broadcastbabe · 3 months ago
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It rotates, vibrates and can be set to ‘bucking’ to enhance any festivity between us. When I dress provocatively and perch on the cushion, you quickly pick up on the obvious hint and grab the remote control. You have a new pre-programmed sequence that deserves a test run. Pressing me back onto the soft surface under the weight of you on top of me, the low rumble of the vibrating can penetrate through me to give you a contact buzz. My breasts jiggle subtly to entice your consumption and thrill me with your playful tongue and nipping lips. I squirm with delight underneath you, grinding against your burgeoning arousal. Slowly stripping away my camisole, you fing the sheer garment away as a slow rotation is added to the mix and I am rendered to nothing but my dark stockings. As the speed of the first two settings escalate I wrap my legs around you for anchoring. It also opens me wide to welcome your full grown probe inside me. You grant my needful whimpering wishes. The entry is swift and true, sending me into grateful paroxysms of lust, bellowing for your deep exquisite thrusts. I am dizzy from the sexual friction and relentless rhythm into my depths, not to mention the spinning of our round sex sofa. You roll onto your back to pull me into a straddling top position. Just when I think I can’t be more stimulated, your remote triggers the bucking feature. Slow at first, we let the bed set the pace of soft jolts that seem to elevate you deeper inside my juicy depths. I am beside myself with a new lusting for deeper and harder. The remote is adjusted to deliver, and my howls become other-worldly as the bed lends its assist. Its effect on your reflexive response is exponential and you warn me to brace for your fast-approaching orgasm. Knowing I am about to become more slippery, I suggest slowing the rotation, so I’m not thrown by its centrifugal force during our mutual release. Even in my feral moaning state, I grab the remote to crank the bucking strength to maximize our pleasure. It works after a few profound plunges as we detonate together, surprised by the never-before-or-since experience. Sadly, the circular couch sputters to a halt, broken to its core mechanics by our extreme antics. You vow to repair the damage, even upgrading it with a few new tricks, when I sob my delirious desire and demands to be “bucked that hard and so deep, again…”
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labnicsltd · 5 months ago
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Low-Speed Centrifuge 685 × 500 × 385 mm
Labnics low-speed tabletop centrifuge provides precise separation with a speed accuracy of ±20r/min, 4000 rpm, 3830xg RCF and a 4 Babcock tube capacity. It offers a space-saving design with quiet operation along with castors for mobility and wide screen digital indicating speed, time, RCF in operation, etc.
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