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43 Sentences With "pulverization"

How to use pulverization in a sentence? Find typical usage patterns (collocations)/phrases/context for "pulverization" and check conjugation/comparative form for "pulverization". Mastering all the usages of "pulverization" from sentence examples published by news publications.

It has been a way of asserting one's humanity in the face of pulverization and mass murder.
While the world has worried about the implications of a Brexit, Jim Cramer has been watching the pulverization of retail.
This is a complete pulverization of the actual individuals involved in this case — a retreat from complex particularity to simplistic group prejudice.
This simple strategic pulverization, rather than building specific units to counter their units or investing in technologies to parry theirs, is something that I really like in smaller strategy games.
Many plants and animals have quite limited tolerance to the variation of moisture."The Fever Trail" - Mark Honigsbaum (MacMillan 2001) The regulation of humidity can be done by several means: regular water pulverization, water evaporation inside (from a basin, or circulation of water), or automated pulverization systems and humidifiers.
In Sato Foods Industries Co., Ltd. invented alcohol pulverization. Sato is a food additives and seasoning manufacturer in Aichi Pref., Japan.
Coal power is distributed by the State Power Grid Corporation. China's installed coal- based electrical capacity was 907 GW, or 77% of the total electrical capacity, in 2014. The dominant technology in the country is coal pulverization in lieu of the more advanced and preferred coal gasification. China's move to a more open economy in the 1990s is cited as a reason for this, where the more immediately lucrative pulverization technology was favored by businesses.
Most organizations use processes including pulverization, paper shredding or incineration. Commercially available products can manage records through all processes active, inactive, archival, retention scheduling and disposal. Some also utilize RFID technology for the tracking of the physical file.
138 a double position he still held in 1952. Frisch was awarded over 50 patents in "fuel pulverization, steam generation, combustion, manufacturing methods and other areas of heat engineering." In 1958 the ASME awarded him their highest recommendation, the ASME Medal.
Initially three entrances existed on the east, south, and north sides. On the north-east corner there is a rectangular ablution tank with a deep drain in front. The building is situated northeast of Jami Masjid. Stone pulverization has been observed on the masjid's pillars.
It was Bhāskara I (c. 600 – c. 680) who gave a detailed description of the algorithm with several examples from astronomy in his Āryabhatiyabhāṣya, who gave the algorithm the name Kuṭṭaka. In Sanskrit, the word Kuṭṭaka means pulverization (reducing to powder), and it indicates the nature of the algorithm.
Silicon swells by 400% as it intercalates lithium during charging, resulting in degradation of the material. This volume expansion occurs anisotropically, caused by crack propagation immediately following a moving lithiation front. These cracks result in pulverization and substantial capacity loss noticeable within the first few cycles. The extensive 2007 Review Article by Kasavajjula et al.
The Disposal Rule set requirements under FACTA for how public and nonpublic entities have to destroy consumer reports in order to prevent unauthorized access to nonpublic consumer information. Under the act, disposal of physical information can be done through the burning, pulverization, and shredding of documents. Digital information can be disposed of by simply erasing electronic files. Information can also be destroyed by hiring contractors.
Hydrogen, deuterium, and tritium can be purified by reacting with uranium, then thermally decomposing the resulting hydride/deuteride/tritide. Extremely pure hydrogen has been prepared from beds of uranium hydride for decades. Heating uranium hydride is a convenient way to introduce hydrogen into a vacuum system. The swelling and pulverization at uranium hydride synthesis can be used for preparation of very fine uranium metal, if the powdered hydride is thermally decomposed.
This performance was attributed to a restructuring of the nanowires that occurs within the first 100 cycles to form a mechanically robust, continuously porous network. Once formed, the restructured anode loses only 0.01% of capacity per cycle thereafter. The material forms a stable structure after these initial cycles that is capable of withstanding pulverization. In 2014, researchers developed a simple way to produce nanowires of germanium from an aqueous solution.
Aluminum has been proposed as an energy store by a number of researchers. Its electrochemical equivalent (8.04 Ah/cm3) is nearly four times greater than that of lithium (2.06 Ah/cm3). Energy can be extracted from aluminum by reacting it with water to generate hydrogen. However, it must first be stripped of its natural oxide layer, a process which requires pulverization, chemical reactions with caustic substances, or alloys.
Protein extraction from tissues with tough extracellular matrices (e.g., biopsy samples, venous tissues, cartilage, skin) is often achieved in a laboratory setting by impact pulverization in liquid nitrogen. Samples are frozen in liquid nitrogen and subsequently subjected to impact or mechanical grinding. As water in the samples becomes very brittle at these temperature, the samples are often reduced to a collection of fine fragments, which can then be dissolved for protein extraction.
Limitations of this technology come from the materials used. Generally, iron oxide powder beds are selected, however, rapid sintering and pulverization of the powders limit the ability to achieve a high number of cycles resulting in a lower capacity. Other methods currently under investigation, such as 3D printing and freeze- casting, seek to enable the creation of architecture materials to allow for high surface area and volume changes during the redox reaction.
There is stone pulverization on the building's pillars. Within the precincts of the masjid there are a few brick structures, and step wells. Northeast of the masjid is the cenotaph, which has openings on all four sides and whose frontage, columns and niches are artistically carved with floral and geometrical designs. A series of beautifully designed projecting corbels and the projecting cornice are also notable; geometric motifs at regular intervals give a beautifying effect.
The product that is known today as Foamglas® cellular glass insulation, was developed by Pittsburgh Corning and was later acquired by Owens Corning. It is made of cullet, foaming agent, modified additive and foaming accelerator. After fine pulverization and uniform mixing, it is melted at high temperature, foamed and annealed. An inorganic non-metallic glass material, it consists of a large number of uniform bubble structures with a diameter of 1 to 2 mm.
Clay mines in New Cumberland, 1907 Formerly, the town was also known as Cuppy Town and Vernon. In 1900, 2,198 people lived in New Cumberland; in 1910, 1,807; and in 2000, 1,099. Local industry in the past involved the manufacture of fire and paving brick, sewer pipe, glassware, foundry and machine-shop products, and tiling. There were also coal mines and mills for the pulverization of fire clay for use in ironworks.
The company built a lixiviation plant on the banks of Castle Creek. It was one of only 18 in the world to use the Russell Process, a combination of pulverization, salts and heat, to extract silver from ore samples with as little as per ton (0.9 metric ton). Most Aspen ore ran 40–60 times that amount, and by the end of the 1880s the city was the nation's leading silver producer.
Ipomoea purga is described as a vine that can reach heights of . When fresh, the root is black externally, white and milky within, and varies in size according to its age. It has heart shaped leaves and purple trumpet like flowers. Ipomoea purga is rather difficult to break down, but if triturated with cream of tartar, sugar of milk, or other hard salts, the process of pulverization is much easier, and the powder rendered much finer.
Samples with a tough extracellular matrix, such as animal connective tissue, some tumor biopsy samples, venous tissue, cartilage, seeds, etc., are reduced to a fine powder by impact pulverization at liquid nitrogen temperatures. This technique, known as cryopulverization, is based on the fact that biological samples containing a significant fraction of water become brittle at extremely cold temperatures. This technique was first described by Smucker and Pfister in 1975, who referred to the technique as cryo-impacting.
Hydrogen can be produced using aluminium by reacting it with water.White Paper: A Novel Method For Grid Energy Storage Using Aluminium Fuel , Alchemy Research, April 2012. To react with water, however, aluminium must be stripped of its natural oxide layer, a process which requires pulverization, chemical reactions with caustic substances, or alloys. The byproduct of the reaction to create hydrogen is aluminum oxide, which can be recycled back into aluminium with the Hall–Héroult process, making the reaction theoretically renewable.
There are three grinding roller wheel assemblies in the mill grinding section, which are mounted on a loading frame via pivot point. The fixed-axis roller in each roller wheel assembly rotates on a segmentally-lined grinding table that is supported and driven by a planetary gear reducer direct-coupled to a motor. The grinding force for coal pulverization is applied by a loading frame. This frame is connected by vertical tension rods to three hydraulic cylinders secured to the mill foundation.
Hebrew: (Toḥen) Definition: Reducing an earth-borne thing's size for a productive purpose. Dissection can arise in simply cutting into pieces fruits or vegetables for a salad. Very small pieces would involve Dissection, therefore cutting into slightly larger than usual pieces would be permitted, thus avoiding cutting the pieces into their final, most usable, state. All laws relating to the use of medicine on the Sabbath are a toldah, or sub-category, of this order, as most medicines require pulverization at some point and thus are Dissected.
Gage criticized NIST for not having investigated the complete sequence of the collapse of the World Trade Center towers in its report, and claims "the official explanation of the total destruction of the World Trade Center skyscrapers has explicitly failed to address the massive evidence for explosive demolition." To support its position, the group Architects & Engineers for 9/11 Truth points to the "free fall" pace of the collapse of the buildings, the "lateral ejection of steel", and to the "mid-air pulverization of concrete", among other things.
Soil removal from the area to be surface-mined alters or destroys many natural soil characteristics, and reduces its biodiversity and productivity for agriculture. Soil structure may be disturbed by pulverization or aggregate breakdown. Mine collapses (or mine subsidences) have the potential to produce major effects above ground, which are especially devastating in developed areas. German underground coal- mining (especially in North Rhine-Westphalia) has damaged thousands of houses, and the coal-mining industries have set aside large sums in funding for future subsidence damages as part of their insurance and state-subsidy schemes.
A waste converter is a machine used for the treatment and recycling of solid and liquid refuse material. A converter is a self-contained system capable of performing the following functions: pasteurization of organic waste; sterilization of pathogenic or biohazard waste; grinding and pulverization of refuse into unrecognizable output; trash compaction; dehydration. Because of the wide variety of functions available on converters, this technology has found application in diverse waste-producing industrial segments. Hospitals, clinics, municipal waste facilities, farms, slaughterhouses, supermarkets, ports, sea vessels, and airports are the primary beneficiaries of on-site waste conversion.
Unlike the flamboyant Apollo Creed and the brash James "Clubber" Lang—Rocky's opponents in previous films—Ivan Drago is quiet and non-boastful. Driven by his desire to be the best at all costs, this single- minded manner in which he pursues this goal deprives him of his humanity. Many viewers and critics have suggested that Drago was meant to symbolize the U.S. perception of the Soviets: immense, powerful, and emotionless. This is made evident by his cold-blooded pulverization of Creed in an exhibition match as well as by his callous reaction towards news of his opponent's death.
Sumerian cuneiform tablets record prescriptions for medicine. Ancient Egyptian pharmacological knowledge was recorded in various papyri such as the Ebers Papyrus of 1550 BC and it included a 1,100 page document about 800 prescriptions using 700 drugs mostly derived from plants, and the Edwin Smith Papyrus of the 16th century BC. The very beginnings or pharmaceutical texts were written on clay tablets by Mesopotamians. Some texts included formulas, instructions via pulverization, infusion, boiling, filtering and spreading; herbs were mentioned as well. Babylon, a state within Mesopotamia, provided the earliest known practice of running an apothecary i.e. pharmacy.
Similar climatic effects to "nuclear winter" followed historical supervolcano eruptions, which plumed sulfate aerosols high into the stratosphere, with this being known as a volcanic winter. The effects of smoke in the atmosphere (short wave absorption) are sometimes termed an 'antigreenhouse' effect, and a strong analog is the hazy atmosphere of Titan. Pollack, Toon and others were involved in developing models of Titan's climate in the late 1980s, at the same time as their early nuclear winter studies. Similarly, extinction-level comet and asteroid impacts are also believed to have generated impact winters by the pulverization of massive amounts of fine rock dust.
In order to eliminate the required amount of microorganisms required by government regulations, a complete saturation of waste matter with superheated steam is required for a minimum amount of time, also regulated by environmental agencies. The modern converter achieves saturation within 10–15 minutes due to the high degree of pulverization preceding the sterilization phase, whereas older models required up to several hours to saturate and sterilize the same load. The cycle ends in a cooling phase, during which product continues to be dehydrated. Upon reaching temperature at which product is safe to handle, near ambient temperature, the cycle automatically shuts down.
It was the disadvantages of the rotary combine (increased power requirements and over- pulverization of the straw by-product) which prompted a resurgence of conventional combines in the late nineties. Perhaps overlooked but nonetheless true, when the large engines that powered the rotary machines were employed in conventional machines, the two types of machines delivered similar production capacities. Also, research was beginning to show that incorporating above- ground crop residue (straw) into the soil is less useful for rebuilding soil fertility than previously believed. This meant that working pulverized straw into the soil became more of a hindrance than a benefit.
For comminution of finer particle size ranges (20mm > P80 > 30 μm) machines like the ball mill, vertical roller mill, hammer mill, roller press or high compression roller mill, vibration mill, jet mill and others are used. For yet finer grind sizes (sometimes referred to as "ultrafine grinding"), specialist mills such as the IsaMill are used. Trituration, for instance, is comminution (or substance breakdown) by rubbing. Trituration can further be described as levigation (trituration of a powder with a non-solvent liquid), or pulverization by intervention, which is trituration with a solvent that can be easily removed after the substance has been broken down.
Damage theory attempts to address this model flaw by simulating voids created in areas of strain, representing the mechanical pulverization of coarse grains of rock into finer grains. In such models, damage is balanced by “healing”, or the temperature and pressure-driven dynamic recrystallization of smaller grains into larger ones. If the reduction of grain size (damage) is intensely localized in a stagnant lid, an incipient crack in the mantle can turn into a full-blown rift, initiating plate tectonics. Conversely, a high surface temperature will have more efficient lithospheric healing, which is another potential explanation for why Venus has a stagnant lid and Earth does not.
The method by which the pulverization of these chromosomes occur is not fully understood, but it is thought to be caused either by aberrant DNA replication or by premature chromosome condensation, which entails semi- replicated chromosomes being compacted by cyclin-dependent kinase activity. The resulting fragmented chromosome segments can be joined together to give rise to a rearranged chromosome, which can subsequently be reincorporated into the main nucleus of a daughter cell. The new chromosome can persist for several generations of cell cycle divisions and contribute to the development of a cancer cell. Although the micronucleus model is appropriate, other factors are likely to contribute towards chromothripsis for various cancer genomes.
The high rates of strain expected near faults that are affected by supershear propagation are thought to generate what is described as pulverized rocks. The pulverization involves the development of many small microcracks at a scale smaller than the grain size of the rock, while preserving the earlier fabric, quite distinct from the normal brecciation and cataclasis found in most fault zones. Such rocks have been reported up to 400 m away from large strike-slip faults, such as the San Andreas Fault. The link between supershear and the occurrence of pulverized rocks is supported by laboratory experiments that show very high strain rates are necessary to cause such intense fracturing.
These texts are the "Root verses on the Middle way" (Mūlamadhyamakakārikā, MMK), the "Sixty Stanzas on Reasoning" (Yuktiṣāṣṭika), the "Dispeller of Objections" (Vigrahavyāvartanī), the "Treatise on Pulverization" (Vaidalyaprakaraṇa) and the "Precious Garland" (Ratnāvalī).Westerhoff, Jan, Nagarjuna's Madhyamaka: A Philosophical Introduction, Oxford University Press, 2009, p. 5-6. However, even the attribution of each one of these has been question by some modern scholars, except for the MMK which is by definition seen as his major work. Nāgārjuna's main goal is often seen by scholars as refuting the essentialism of certain Buddhist Abhidharma schools (mainly Vaibhasika) which posited theories of svabhava (essential nature) and also the Hindu Nyāya and Vaiśeṣika schools which posited a theory of ontological substances (dravyatas).
Initial restoration works were carried out in the 1890s. The pillars of Nagina Masjid and Lila Gumbaj Ki Masjid were subject to deterioration due to wind, humidity and moisture (bio- deterioration) and the stones were “pulverized”. Further pulverization was prevented by spraying on OH-100 (ethyl silicate) and also in a few cases deteriorated areas were filled with stone powder mixed with OH-100. Other treatment measures included removing insoluble salts using a 2% solution of sodiumhexa meta phosphate, ferrous salts with a 2% solution of EDTA and removing bat excreta with a 5% solution of liquid ammonia and non-ionic detergent followed by a second stage of treatment by applying a mixture of ammonium carbonate and ammonium bicarbonate, with EDTA as an additive.
Gage criticized NIST for not having investigated the complete sequence of the collapse of the World Trade Center towers, and claims that "the official explanation of the total destruction of the World Trade Center skyscrapers has explicitly failed to address the massive evidence for explosive demolition." In particular, Gage argues that the buildings of the World Trade Center could not have collapsed at the speed that has been observed without tearing apart several columns of their structures with the help of explosives. To support its position, Architects & Engineers for 9/11 Truth points to the "free fall" acceleration of 7 WTC during part of the collapse, to "lateral ejection of steel," and to "mid-air pulverization of concrete." Gage also said that the absence of "large gradual deformations" associated with the collapse would indicate that the buildings have been destroyed by controlled demolition.
ASI had already spent Rs 2.25 crores (about US $ 0.45 million) on conservation in a four-year period and Rs 1.15 crores (US $ 0.23 million) was allotted for further restoration work at the sites. The pillars of Lila Masjid and Nagina Masjid were subject to deterioration due to wind, humidity and moisture (bio- deterioration) and the stones were “pulverized”; at Lila Masjid, the top parts of the architectural detailing of two pillars had been lost. Further pulverization was prevented by spraying on OH-100 (ethyl silicate) and also in a few cases deteriorated areas were filled with stone powder mixed with OH-100. Other treatment measures included removing insoluble salts using a 2% solution of sodiumhexa meta phosphate, ferrous salts with a 2% solution of EDTA and removing bat excreta with a 5% solution of liquid ammonia and non- ionic detergent followed by a second stage of treatment by applying a mixture of ammonium carbonate and ammonium bicarbonate, with EDTA as an additive.

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