Polyphenolic additives in sequencing-by-synthesis

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Polyphenolic additives in sequencing by synthesis

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POLYPHENOLIC ADDITIVES IN SEQUENCING-BY-SYNTHESIS

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Polyphenolic Additives in Sequencing by Synthesis

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Alternative nucleotide flows in sequencing-by-synthesis methods

Номер патента: US09605308B2. Автор: Jonathan Schultz,John Davidson. Владелец: Life Technologies Corp. Дата публикации: 2017-03-28.

Alternative nucleotide flows in sequencing-by-synthesis methods

Номер патента: US09416413B2. Автор: Jonathan Schultz,John Davidson. Владелец: Life Technologies Corp. Дата публикации: 2016-08-16.

Predictive model for use in sequencing-by-synthesis

Номер патента: EP2633470A2. Автор: Michael Meyer,Melville Davey. Владелец: Life Technologies Corp. Дата публикации: 2013-09-04.

Predictive Model for Use in Sequencing-by-Synthesis

Номер патента: US20140222399A1. Автор: Michael Meyer,Melville Davey. Владелец: Life Technologies Corp. Дата публикации: 2014-08-07.

Phase-protecting reagent flow orderings for use in sequencing-by-synthesis

Номер патента: US09428807B2. Автор: Earl Hubbell,Jonathan Schultz. Владелец: Life Technologies Corp. Дата публикации: 2016-08-30.

Enhancing Sequencing Performance in Sequencing-by-Synthesis

Номер патента: US20180127819A1. Автор: Luisa Andruzzi,Angela DELUCIA,Ben Mcnally,Dona Hevroni. Владелец: Qiagen Waltham Inc. Дата публикации: 2018-05-10.

ALTERNATIVE NUCLEOTIDE FLOWS IN SEQUENCING-BY-SYNTHESIS METHODS

Номер патента: US20130172201A1. Автор: SCHULTZ Jonathan,DAVIDSON John. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2013-07-04.

ALTERNATIVE NUCLEOTIDE FLOWS IN SEQUENCING-BY-SYNTHESIS METHODS

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ALTERNATIVE NUCLEOTIDE FLOWS IN SEQUENCING-BY-SYNTHESIS METHODS

Номер патента: US20140031238A1. Автор: SCHULTZ Jonathan,DAVIDSON John. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2014-01-30.

ALTERNATIVE NUCLEOTIDE FLOWS IN SEQUENCING-BY-SYNTHESIS METHODS

Номер патента: US20200024659A1. Автор: SCHULTZ Jonathan,DAVIDSON John. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2020-01-23.

PHASE-PREOTECTING REAGENT FLOW ORDERING FOR USE IN SEQUENCING-BY-SYNTHESIS

Номер патента: US20170044602A1. Автор: SCHULTZ Jonathan,HUBBELL Earl. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2017-02-16.

MULTIBASE DELIVERY FOR LONG READS IN SEQUENCING BY SYNTHESIS PROTOCOLS

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MULTIBASE DELIVERY FOR LONG READS IN SEQUENCING BY SYNTHESIS PROTOCOLS

Номер патента: US20140255919A1. Автор: Ronaghi Mostafa,Eltoukhy Helmy A.. Владелец: Illumina, Inc.. Дата публикации: 2014-09-11.

Multibase delivery for long reads in sequencing by synthesis protocols

Номер патента: US20150211062A1. Автор: Mostafa Ronaghi,Helmy A. Eltoukhy. Владелец: Illumina Inc. Дата публикации: 2015-07-30.

PHASE-PROTECTING REAGENT FLOW ORDERINGS FOR USE IN SEQUENCING-BY-SYNTHESIS

Номер патента: US20200190571A1. Автор: SCHULTZ Jonathan,HUBBELL Earl. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2020-06-18.

Phase-protected reagent flow ordering for use in sequencing-by-synthesis

Номер патента: CN105861645B. Автор: J·舒尔茨,E·胡贝尔. Владелец: Life Technologies Corp. Дата публикации: 2020-02-21.

Multibase delivery for long reads in sequencing by synthesis protocols

Номер патента: EP2379748A4. Автор: Mostafa Ronaghi,Helmy A Eltoukhy. Владелец: Illumina Inc. Дата публикации: 2012-08-29.

Alternative nucleotide flows in sequencing-by-synthesis methods

Номер патента: US10392660B2. Автор: Jonathan Schultz,John Davidson. Владелец: Life Technologies Corp. Дата публикации: 2019-08-27.

Paired-end reads in sequencing by synthesis

Номер патента: US20100304447A1. Автор: Timothy D. Harris. Владелец: Helicos Biosciences Corp. Дата публикации: 2010-12-02.

Control nucleic acid sequences for use in sequencing-by-synthesis and methods for designing the same

Номер патента: US12098424B2. Автор: Marcin Sikora. Владелец: Life Technologies Corp. Дата публикации: 2024-09-24.

Control nucleic acid sequences for use in sequencing-by-synthesis and methods for designing the same

Номер патента: US09926597B2. Автор: Marcin Sikora. Владелец: Life Technologies Corp. Дата публикации: 2018-03-27.

Control nucleic acid sequences for use in sequencing-by-synthesis and methods for designing the same

Номер патента: US20210102249A1. Автор: Marcin Sikora. Владелец: Life Technologies Corp. Дата публикации: 2021-04-08.

Control nucleic acid sequences for use in sequencing-by-synthesis and methods for designing the same

Номер патента: US20180312918A1. Автор: Marcin Sikora. Владелец: Life Technologies Corp. Дата публикации: 2018-11-01.

Control nucleic acid sequences for use in sequencing-by-synthesis and methods for designing the same

Номер патента: US20150031551A1. Автор: Marcin Sikora. Владелец: Life Technologies Corp. Дата публикации: 2015-01-29.

CONTROL NUCLEIC ACID SEQUENCES FOR USE IN SEQUENCING-BY-SYNTHESIS AND METHODS FOR DESIGNING THE SAME

Номер патента: US20150031551A1. Автор: SIKORA Marcin. Владелец: . Дата публикации: 2015-01-29.

CONTROL NUCLEIC ACID SEQUENCES FOR USE IN SEQUENCING-BY-SYNTHESIS AND METHODS FOR DESIGNING THE SAME

Номер патента: US20210102249A1. Автор: SIKORA Marcin. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2021-04-08.

CONTROL NUCLEIC ACID SEQUENCES FOR USE IN SEQUENCING-BY-SYNTHESIS AND METHODS FOR DESIGNING THE SAME

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PHASE-PROTECTING REAGENT FLOW ORDERINGS FOR USE IN SEQUENCING-BY-SYNTHESIS

Номер патента: US20130288904A1. Автор: SCHULTZ Jonathan,HUBBELL Earl. Владелец: . Дата публикации: 2013-10-31.

ALTERNATIVE NUCLEOTIDE FLOWS IN SEQUENCING-BY-SYNTHESIS METHODS

Номер патента: US20170121766A1. Автор: SCHULTZ Jonathan,DAVIDSON John. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2017-05-04.

MULTIBASE DELIVERY FOR LONG READS IN SEQUENCING BY SYNTHESIS PROTOCOLS

Номер патента: US20160348170A1. Автор: Ronaghi Mostafa,Eltoukhy Helmy A.. Владелец: Illumina, Inc.. Дата публикации: 2016-12-01.

Predictive model for use in sequencing-by-synthesis

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Predictive Model for Use in Sequencing-by-Synthesis

Номер патента: US20140222399A1. Автор: Meyer Michael,Davey Melville. Владелец: LIFE TECHNOLOGIES CORPORATION. Дата публикации: 2014-08-07.

Targeted gene addition in stem cells

Номер патента: WO2006121579A3. Автор: Gordon M Keller,Els Henckaerts,R Michael Linden,Nathalie Dutheil. Владелец: Nathalie Dutheil. Дата публикации: 2007-09-13.

SYSTEM FOR INSERTING ADDITIVES IN A FLOWING LIQUID FOODSTUFF

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New conductive additive in lithium and sodium batteries

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Graphene as additive in truck tire tread applications

Номер патента: WO2023288270A4. Автор: Michael Brendan Rodgers,Adel F. Halasa,Douglas PASCHALL. Владелец: Akron Polymer Solutions, Inc.. Дата публикации: 2023-02-23.

Synergistic effects on blending multiple additives in UHMWPE

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Synergistic effects of blending multiple additives in UHMWPE

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Method and apparatus for reducing additives in a hydrocarbon stream

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Polyisobutene derivatives as an additive in rubbers

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Graphene as additive in silica tread applications

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Graphene as additive in silica tread applications

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Triazabutadienes as additives in adhesive systems

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Apparatus for dosing powdered or granulated additives in water works, namely swimming pools

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Reactive additives in membrane preparation

Номер патента: WO2020261116A1. Автор: Frank Schneider,Mathias Stroschke,Stefan Weuster,Daniel P. Malek. Владелец: 3M INNOVATIVE PROPERTIES COMPANY. Дата публикации: 2020-12-30.

METHOD FOR OBTAINING STEROID DERIVATIVES 1 The invention relates to a new method for producing steroid derivatives having a hydrocarbon residue in the 17a position, saturated or unsaturated, substituted or unsubstituted, or a dicloalkyl radical, and having physiological activity. a prenatal radical, for example, compounds of 3-oxo-13p-ethyl-17a-ethynyl-17, p-oxygone — 4,9,11-triene, consisting in the fact that 3-ethylenedioxy-17-oxo-13 is prepared first | 3-ethylgon- 4,9,1 i-triene which is reacted with an ethynylation reagent followed by hydrolysis of the ketal group at the 3 G7a-ethynyl derivative position. However, the ketalization of the 3-oxo group of the corresponding 3,17-dioxosteroid is not selective, with a low yield of the intermediate 3-ketal, which reduces the yield of the target product. In addition, in the known method, a 4,9,11-trienoic steroid with a closed ring A is used as a starting product, which can be obtained with the complete synthesis of a steroid only from an intermediate with an open Ring A. The purpose of the proposed method is to eliminate these drawbacks and increase the yield of the target product. The above objective is achieved due to the fact that a 9,11-diene steroid with an open ring 5 C, which is easily available during steroid synthesis, is used as a starting product. which is ketalized predominantly in the presence of lower alkyl orthoformate, the resulting 3,5-bisethylen-dioxy-13p-alkyl-17-oxo-4,5-secogon-9,11-diene is reacted with a metal-10 organic reagent, formed with A compound that has a hydrocarbon residue in position 17a and is 3,5-diketal hydrolyzes ketal groups and closes ring A in an alkaline medium.15 The invention describes a method for producing steroid derivatives of the general formula 2025 In which R represents an alkyl radical containing from 1 to 4 carbon atoms; X is a saturated or unsaturated, substituted or unsubstituted 30 hydrocarbon residue containing from 1 to 6 carbon atoms, or cycloalkyl radicals

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Electrolyte additives in lithium-ion batteries

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Reduced feed roll wear using carbon nanotube additives in rubbers

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The additive in food, drug, cosmetics for supplying $g(g) linolenic acid and the process of producing them

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The additive in food, drug, cosmetics for supplying gamma linolenic acid and theprocess of producing them

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Beverage container elastically stored in the additive in the cap

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Method and apparatus for addition in preparation of histogram in an image processor

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Use of a feed additive in low protein feed for poultry

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Hybrid Grain Boundary Additives in Granular Media

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NOSA-MODIFIED STARCH AS AN ADDITIVE IN DAIRY PRODUCTS

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USE OF 2-AMINOETHANOL AS ADDITIVE IN AQUEOUS SUSPENSIONS OF CALCIUM CARBONATE COMPRISING MATERIALS

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TEST KIT AND METHOD FOR DETECTION OF ADDITIVES IN FUEL COMPOSITIONS

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NATURAL AND SUSTAINABLE SEAWEED FORMULA THAT REPLACES SYNTHETIC ADDITIVES IN SWINE FEED

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NATURAL AND SUSTAINABLE SEAWEED FORMULA THAT REPLACES SYNTHETIC ADDITIVES IN FISH FEED

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Use of Frequency Addition in a PLL Control Loop

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URL Parameter Insertion and Addition in Adaptive Streaming

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Non-Polar Solvents As An Adhesion Promoter Additive In PEDOT/PSS Dispersions

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PRINTER WITH PHOTODETECTOR FOR DETECTING FLUORESCENT ADDITIVES IN TONER

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MEDICAL FLUID CONNECTORS AND METHODS FOR PROVIDING ADDITIVES IN MEDICAL FLUID LINES

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Systems and methods for management of additives in electrochemical cells

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Phenols as additives in kraft pulping

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URL Parameter Insertion and Addition in Adaptive Streaming

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FOCUSING LOCATION OF ANTIMICROBIAL ADDITIVES IN FLUID DISPENSERS

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ANTIMICROBIAL ADDITIVE IN WOVEN POLYPROPYLENE FABRICS

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SELECTION METHOD FOR ADDITIVES IN PHOTOPOLYMERS

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ELECTROLYTE ADDITIVES IN LITHIUM-ION BATTERIES

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Systems and methods for management of additives in electrochemical cells

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Combination of cannabis, derivatives thereof and additives in oral care compositions

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SELECTION METHOD FOR ADDITIVES IN PHOTOPOLYMERS

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USE OF FLUOROISOPROPYL DERIVATIVES AS ADDITIVES IN ELECTROLYTES

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STORAGE SYSTEMS CONFIGURED FOR STORAGE VOLUME ADDITION IN SYNCHRONOUS REPLICATION USING ACTIVE-ACTIVE CONFIGURATION

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NANOCRYSTALLINE CELLULOSE AS AN ADDITIVE IN GOLF BALLS

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SELECTION METHOD FOR ADDITIVES IN PHOTOPOLYMERS

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CHARACTERIZATION OF FLUIDS WITH DRAG REDUCING ADDITIVES IN A COUETTE DEVICE

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FUNCTIONAL LITHIATED AGENT-CONTAINING ADDITIVES IN LI-ION BATTERY ELECTRODES

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NATURAL AND SUSTAINABLE SEAWEED FORMULA THAT REPLACES SYNTHETIC ADDITIVES IN SWINE FEED

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Progressive Objective Addition in Multi-objective Heuristic Systems and Methods

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USE OF A SALT MIXTURE AS AN ADDITIVE IN A LITHIUM-GEL BATTERY

Номер патента: US20200350630A1. Автор: DESCHAMPS Marc,Rolland Julien,Bouchet Renaud,LECUYER Margaud. Владелец: . Дата публикации: 2020-11-05.

ELECTROLYTE ADDITIVES IN LITHIUM-ION BATTERIES

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HIGH-VOLTAGE LINEAR LED LIGHTING WITH DIFFUSING ADDITIVE IN COVERING

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Node addition in cloud networks

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Progressive Objective Addition in Multi-objective Heuristic Systems and Methods

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NODE ADDITION IN CLOUD NETWORKS

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Method and apparatus for determination of additives in metal plating baths

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Method and apparatus for determination of additives in metal plating baths

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Removal of fine particles from a gas stream by solid particle addition in venturi contactor

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Device for sucking and mixing of an additive in a fluid conduit

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structure of injecting additive in Washing machine

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Rice bran extract and its use as an additive in paste products

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Double cap for adding addition in use

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Washing machine and apparatus for injection liquid additive in the washing machine

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Keyed insert for dispensing of laundry additives in automatic machine

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A Sanitary-cap For adding addition in use

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FRANGIBLE CARTRIDGE FOR EXTINGUISHING ADDITIVES IN PRESSURIZED WATER EXTINGUISHERS AT THE TIME OF USE WITH COMPRESSED GAS.

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METHOD AND SYSTEM FOR AUTOMATIC DOSING OF AN ADDITIVE IN A HYDROCARBON

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SYSTEM FOR INJECTING AND MIXING AN ADDITIVE IN AN EXHAUST TUBE.

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METHOD AND SYSTEM FOR STORING AND INJECTING AN ADDITIVE IN EXHAUST GASES OF AN ENGINE

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DEVICE FOR INTRODUCING A LIQUID ADDITIVE IN A THERMAL ENGINE EXHAUST LINE

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DEVICE FOR INJECTING AQUEOUS ADDITIVES IN AN EXHAUST LINE OF A MOTOR VEHICLE

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DEVICE FOR INJECTING AN ADDITIVE IN A CANALIZATION.

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DEVICE FOR DELIVERING A DOSED QUANTITY OF A LIQUID ADDITIVE IN A WASHING MACHINE

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VAPOR PUSH BUTTON AGENCY FOR MIXING AN ADDITIVE IN THE JET EMISSION

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METHOD AND DEVICE FOR MIXING POWDER-SHAPED TO SMALL-PART ADDITIVES IN A LIQUID REACTION COMPONENT

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Apparatus for continuous mixing of liquid additives in a fluid

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Method for improved absorption of additives in molded edible products

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THE USE OF POLYMER PARTICULARS AS ADDITIVES IN X-RAY CONTRAST AGENTS BARIUM SULPHATE OR SIMILAR

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DEVICE FOR VARIING THE DOSING OF AN ADDITIVE IN A LIQUID, PUMP AND DOSING SYSTEM EQUIPPED WITH SUCH A DEVICE

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ALTERNATIVE NUCLEOTIDE FLOWS IN SEQUENCING-BY-SYNTHESIS METHODS

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Predictive Model for Use in Sequencing-by-Synthesis

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PHASE-PROTECTING REAGENT FLOW ORDERINGS FOR USE IN SEQUENCING-BY-SYNTHESIS

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MULTIBASE DELIVERY FOR LONG READS IN SEQUENCING BY SYNTHESIS PROTOCOLS

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Chemical additive in birds forage

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GAS-OXYGEN FURMA3 P T B ^ • ^ - ^: ":" "- - W'SH1 The invention relates to the field of metallurgy, in particular, can be used in steelmaking. A known gas-oxygen lance for blowing melts with preliminary mixing of gases ( fuel and oxygen), which consists of coaxially arranged pipes and a head with nozzles with a central supply of cooling water. However, this lance is not equipped with a device that prevents flame from leaking from the nozzles to the mixing unit. Combustion of a mixture of gas and oxygen inside the annular supply path leads to cut In the proposed gas-oxygen tuyere, in order to prevent flame penetration from the purge nozzles into the fuel-oxygen path, the latter in the lower part is divided by an annular water-cooled partition with openings (an annular partition is manufactured metal, for example copper), an annular gas manifold is placed under the partition, which communicates with the purge nozzles. FIG. 1 shows the gas-oxygen |) urma in section; in fig. 2 is the same; the section along A — A in FIG. 1. The described lance consists of three coaxial alipulations of the pipes, through which, like in an ordinary oxygen lance, the head I is fed, and water is drained from it, and purging gas is fed into it. The lance has a central-axial supply of water 2 to the head I 5 for cooling, channels 3 for draining water from the cetiral cavity of the head into the inter-pipe cavity 4 of the lance. Channels 3 are evenly distributed between the nozzles 5. In the tail part of the tuyere, as in the known tuyeres, there are 10 nozzles b and 7, respectively, for iodachi in the tuyere and removal of water for cooling from it, as well as the nozzles 8 and 9, respectively, for introducing oxygen into the tuyere and fuel (gas). In addition, in the tail part of the tuyere, at the 15th level of the tubing 9, there is a mixing ring 10, which overlaps the annular gap formed by the central (axial) pipe 11 and the separation pipe 12. The mixing ring 10 is sealed 20 (for example, by welding), welded or with one of these pipes or with both. In the first case, the circumferential docking with the pipe has a seal 13. The mixing ring 10 contains a series of vertical holes — mixing nozzles 14, through which from the upper part 15 of the annular gap, blocked by ring 10, oxygen passes into the fuel-oxygen path 16. The mixing nozzles 14 in the lower part are articulated with openings 17, which serve to supply gaseous

Номер патента: SU472980A1. Автор: Михаил Андреевич Третьяков,Витольд Марианович Лупэйко,Александр Михайлович Лирман,Леонид Георгиевич Коломийцев,Геннадий Кузьмич Огородников,Николай Андреевич Фомин,Виктор Аркадьевич Низель,Оскар Хайрулович Габидулин,Виктор Григорьевич Удовенко,Василий Андреевич Денисов,Геннадий Елизарович Овчинников,Георгий Борисович Рогов. Владелец: Уральский Научно-Исследовательский Институт Черных Металлов". Дата публикации: 1975-06-05.

DRIVE GRAYFER1 The invention relates to devices for gripping and lifting large sunken objects or submerged to a great depth. Objects are known as a gripping grapple containing a flooring frame, on which the jaws are articulated with two power cylinders. the capture of objects sunken or immersed to a greater depth. The purpose of the invention is to capture objects sunken or immersed to a greater depth. The above objective is achieved by the fact that the power cylinders are located above the They are connected by hinges with the jaws and are equipped with a common hollow rod, which communicates between the cavity of the power cylinders. In addition, in order to prevent the spontaneous opening of the jaws on one of them, the latch is made in the form of two bars rigidly connected between themselves and having curly cuts interacting with the corresponding finger of the hinge of the other jaw. To reduce the scooping efforts and prevent the formation of an earth cushion when gripping, the jaws are provided with soil-clearing nozzles connected to the water section of the collection-1015202530torae located in the body of each jaw. In order to transfer information about the jaw closure, the bar has latches in each jaw. figure cutouts are fitted with contact sensors for remote signaling. In FIG. Figure 1 shows the proposed grapple (In the closed CONDITION; in Fig. 2 — the same in the opened state;, in Fig. 3 • - the power drive in the section; in Fig. 4 - section A — A in Fig. 1. Drive The grab consists of frame 1, left 2 and right 3 crescent rotary jaws, two power pneumatic or hydraulic cylinders 4 \ 5, and a common for both cylinders of rod 6. There is a nozzle 7 for supplying the working medium to cylinder 5 (FIG 3) has an internal through channel for the passage of the working medium into the second crank'Indr 4. The rotary jaws 5! 2 and 3 are hinged on the axes S and P of the frame / The upper ends of the jaws are hingedly connected to the power cylinders 4 and 5. On the fingers 10 of the hinges of the jaw 3, there is a folding catch 11, made in the form of two bars rigidly interconnected. The free ends of the bars have figured cuts interacting with the fingers 12 of the hinges of the jaw 2. Over fi-

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