Type 2 (other)
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Type 2 (other)
Type 2 or Type II may refer to: * Type II, a Japanese submachine gun * Type 2 12 cm Mortar, a Japanese weapon * Type 2 20 mm AA machine cannon, a Japanese weapon * Type 2 AT mine * Type 2 cannon, a 30 mm Japanese weapon * Type 2 encryption * Type II female genital mutilation * Type-2 Gumbel distribution * Type 2 Ho-I, a Japanese tank * Type 2 Ka-Mi, a Japanese tank * Type II keratin * Type II error used in statistics for a "false negative" error * Type II lattice * Type II string theory * Type-II superconductor * Type II supernova * Type 2 sequence * Activin type 2 receptors * Atelosteogenesis, type II * Belgian State Railways Type 2, a class of 0-6-0 locomotives built 1874–1884 * British Railways Type 2 Diesel locomotives * Diabetes mellitus type 2 * German Type II submarine * Glutaric acidemia type 2 * Glycogen storage disease type II * Hyper-IgM syndrome type 2 * Hyperfinite type II factor * Type 2 connector, used for charging electric vehicles * IEC 62196 Typ ...
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Experimental Model 2 Submachine Gun
The was a pre–World War II experimental submachine gun of Japanese origin chambered in the 8mm Nambu round. History The Type 2 was a development of the earlier Type 1 submachine gun, designed in response to criticisms of the Type 1's awkward ergonomics. The Type 2 offered a more conventional Magazine (firearms), magazine feed and Stock (firearms), stock, but wholly retained the Type 1's method of operation and was essentially the same gun in a different body. It was initially produced in the mid-1930s and was tested by the Imperial Japanese Army, but rejected. During World War II, an urgent demand for automatic infantry weapons saw the revival of several experimental weapon projects, including the Type 2 submachine gun. Blueprints of the weapon was sent to the Mukden Arsenal in Manchukuo in 1944 for use in development of cheap submachine guns. Instead, those blueprints were used by the Communist-controlled China (1927–1949), Chinese communists to produce submachine guns to ...
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Activin Type 2 Receptors
The activin type 2 receptors belong to a larger TGF-beta receptor family and modulate signals for transforming growth factor beta ligands. These receptors are involved in a host of physiological processes including, growth, cell differentiation, homeostasis, osteogenesis, apoptosis and many other functions. There are two activin type two receptors: ACVR2A and ACVR2B. Despite the large amount of processes that these ligands regulate, they all operate through essentially the same pathway: A ligand binds to a type 2 receptor, which recruits and trans-phosphorylates a type I receptor. The type I receptor recruits a receptor regulated SMAD (R-SMAD) which it phosphorylates. The RSMAD then translocates to the nucleus where it functions as a transcription factor. Function Several ligands that signal through the activin type 2 receptors regulate muscle growth. Myostatin, a TGF-beta superfamily member, is a negative regulator of muscle growth. Myostatin binds to ACVR2B and to a lesse ...
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Kawanishi H8K
The Kawanishi H8K was a flying boat used by the Imperial Japanese Navy Air Service during World War II for maritime patrol duties. The Allied reporting name for the type was "Emily". The Kawanishi H8K was a large, four-engine aircraft designed for long range and extended endurance on patrols or bombing missions typically flown alone over the ocean. The prototype first flew in January 1941, and H8K1s made their first combat sortie in March 1942. The robust H8K2 "Emily" flying boat was also fitted with powerful defensive armament, for which Allied pilots had substantial respect wherever this aircraft was encountered in the Pacific theater. Aircraft historian René Francillon called the H8K "the most outstanding water-based combat aircraft of the Second World War." Design and development At the same time the type's predecessor, the Kawanishi H6K, was entering service in 1938 the Navy ordered the development of a larger, longer-ranged patrol aircraft under the designation Navy E ...
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JDBC Type 2 Driver
A JDBC driver is a software component enabling a Java application to interact with a database. JDBC drivers are analogous to ODBC drivers, ADO.NET data providers, and OLE DB providers. To connect with individual databases, JDBC (the Java Database Connectivity API) requires drivers for each database. The JDBC driver gives out the connection to the database and implements the protocol for transferring the query and result between client and database. JDBC technology drivers fit into one of four categories. # JDBC-ODBC bridge # Native-API driver # Network-Protocol driver (Middleware driver) # Database-Protocol driver (Pure Java driver) or thin driver. Type 1 driver – JDBC-ODBC bridge The JDBC type 1 driver, also known as the JDBC-ODBC bridge, is a database driver implementation that employs the ODBC driver to connect to the database. The driver converts JDBC method calls into ODBC function calls. The driver is platform-dependent as it makes use of ODBC which in turn depend ...
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IEC 62196
IEC 62196 ''Plugs, socket-outlets, vehicle connectors and vehicle inlets – Conductive charging of electric vehicles'' is a series of international standards that define requirements and tests for plugs, socket-outlets, vehicle connectors and vehicle inlets for conductive charging of electric vehicles and is maintained by the technical subcommittee SC 23H “Plugs, Socket-outlets and Couplers for industrial and similar applications, and for Electric Vehicles” of the International Electrotechnical Commission (IEC). Plugs, socket-outlets, vehicle connectors and vehicle inlets according to this series of standards are used in EV supply equipment according to IEC 61851 series or IEC 62752 and in electric vehicles according to ISO 17409 or ISO 18246. Most plugs, socket-outlets, vehicle connectors and vehicle inlets according to this series of standards provide additional contacts that support specific functions that are relevant for charging of electric vehicles, e.g. power is not s ...
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Type 2 Connector
The IEC 62196-2 Type 2 connector (often referred to as Mennekes for the company that designed it) is used for charging electric vehicles, mainly within Europe, as it was declared standard by the EU. Based on widespread red IEC 60309 three phase plugs with five pins, which come in different diameters according to maximum current (most common are 16 A and 32 A), a single size was selected, as maximum possible power will be communicated to the car via two additional communication pins and by a simple resistor coding within the cable. The onboard charger inside the car has to limit the current accordingly. The connector is circular in shape, with a flattened top edge; the original design specification carried an output electric power of 3–50 kW for charging battery electric vehicles using single-phase electric power, single-phase (230V) or three-phase electric power, three-phase (400V) alternating current (AC), with a typical maximum of 32 A 7.2 kW using single-phase ...
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Hyperfinite Type II Factor
In mathematics, there are up to isomorphism exactly two separably acting hyperfinite type II factors; one infinite and one finite. Murray and von Neumann proved that up to isomorphism there is a unique von Neumann algebra that is a factor of type II1 and also hyperfinite; it is called the hyperfinite type II1 factor. There are an uncountable number of other factors of type II1. Connes proved that the infinite one is also unique. Constructions *The von Neumann group algebra of a discrete group with the infinite conjugacy class property is a factor of type II1, and if the group is amenable and countable the factor is hyperfinite. There are many groups with these properties, as any locally finite group is amenable. For example, the von Neumann group algebra of the infinite symmetric group of all permutations of a countable infinite set that fix all but a finite number of elements gives the hyperfinite type II1 factor. *The hyperfinite type II1 factor also arises from the group-m ...
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Hyper-IgM Syndrome Type 2
Hyper IgM Syndrome Type 2 is a rare disease. Unlike other hyper-IgM syndromes, Type 2 patients identified thus far did not present with a history of opportunistic infections. One would expect opportunistic infections in any immunodeficiency syndrome. The responsible genetic lesion is in the AICDA gene found at 12p13. Hyper IgM syndromes Hyper IgM syndromes is a group of primary immune deficiency disorders characterized by defective CD40 signaling; ''via'' B cells affecting class switch recombination (CSR) and somatic hypermutation. Immunoglobulin (Ig) class switch recombination deficiencies are characterized by elevated serum IgM levels and a considerable deficiency in Immunoglobulins G (IgG), A (IgA) and E (IgE). As a consequence, people with HIGM have an increased susceptibility to infections.update 2013 Signs and symptoms Hyper IgM syndrome can have the following syndromes: * Infection/ ''Pneumocystis'' pneumonia (PCP), which is common in infants with hyper IgM s ...
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Glycogen Storage Disease Type II
Glycogen storage disease type II, also called Pompe disease, is an autosomal recessive metabolic disorder which damages muscle and nerve cells throughout the body. It is caused by an accumulation of glycogen in the lysosome due to deficiency of the lysosomal acid alpha-glucosidase enzyme. It is the only glycogen storage disease with a defect in lysosomal metabolism, and the first glycogen storage disease to be identified, in 1932 by the Dutch pathologist J. C. Pompe. The build-up of glycogen causes progressive muscle weakness (myopathy) throughout the body and affects various body tissues, particularly in the heart, skeletal muscles, liver and the nervous system. Signs and symptoms Newborn The infantile form usually comes to medical attention within the first few months of life. The usual presenting features are cardiomegaly (92%), hypotonia (88%), cardiomyopathy (88%), respiratory distress (78%), muscle weakness (63%), feeding difficulties (57%) and failure to thrive (50%). ...
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Glutaric Acidemia Type 2
Glutaric acidemia type 2 is an autosomal recessive metabolic disorder that is characterised by defects in the ability of the body to use proteins and fats for energy. Incompletely processed proteins and fats can build up, leading to a dangerous chemical imbalance called acidosis. Genetics Mutations in the '' ETFA'', '' ETFB'', and ''ETFDH'' genes cause glutaric acidemia type II. Mutations in these genes result in a deficiency in one of two enzymes that normally work together in the mitochondria, which are the energy-producing centers of cells. The ETFA and ETFB genes encode two subunits of the enzyme electron transfer flavoprotein, while the ETFDH gene encodes the enzyme electron-transferring-flavoprotein dehydrogenase. When one of these enzymes is defective or missing, the mitochondria cannot function normally, partially broken-down proteins and fats accumulate in the cells and damage them; this damage leads to the signs and symptoms of glutaric acidemia type II. This cond ...
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German Type II Submarine
The Type II U-boat was designed by Nazi Germany as a coastal U-boat, modeled after the CV-707 submarine, which was designed by the Dutch dummy company NV Ingenieurskantoor voor Scheepsbouw Den Haag (I.v.S) (set up by Germany after World War I in order to maintain and develop German submarine technology and to circumvent the limitations set by the Treaty of Versailles) and built in 1933 by the Finnish Crichton-Vulcan shipyard in Turku, Finland. It was too small to undertake sustained operations far away from the home support facilities. Its primary role was found to be in the training schools, preparing new German naval officers for command. It appeared in four sub-types. Background Germany was stripped of its U-boats by the Treaty of Versailles at the end of World War I, but in the late 1920s and early 1930s began to rebuild its armed forces. The pace of rearmament accelerated under Adolf Hitler, and the first Type II U-boat was laid down on 11 February 1935. Knowing that the w ...
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Diabetes Mellitus Type 2
Type 2 diabetes, formerly known as adult-onset diabetes, is a form of diabetes mellitus that is characterized by high blood sugar, insulin resistance, and relative lack of insulin. Common symptoms include increased thirst, frequent urination, and unexplained weight loss. Symptoms may also include increased hunger, feeling tired, and sores that do not heal. Often symptoms come on slowly. Long-term complications from high blood sugar include heart disease, strokes, diabetic retinopathy which can result in blindness, kidney failure, and poor blood flow in the limbs which may lead to amputations. The sudden onset of hyperosmolar hyperglycemic state may occur; however, ketoacidosis is uncommon. Type 2 diabetes primarily occurs as a result of obesity and lack of exercise. Some people are genetically more at risk than others. Type 2 diabetes makes up about 90% of cases of diabetes, with the other 10% due primarily to type 1 diabetes and gestational diabetes. In type 1 diabet ...
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