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Multifunctional 4-

There are difficulties of detecting defects in axial canal because of solid sediment layer of 1. 2 mm thick on the canal surface. When using known defectoscope devices a preliminary labor-intensive mechanical treatment of the axial canal surface is needed. The experience of application of different methods of rotor axial canal control in multifunction automatic device ROTOR - K has pointed to the fact that the most effective method is eddy current one [1]. All the dangerous cracks were just detected by the eddy current method, the part of the cracks were not... [Pg.346]

W. Nuding, Ch. Sauerwein, S. Schekira, H. Wiacker Multifunctional X-ray Inspection System... [Pg.496]

BE-2013 Virtual environment interface by sensory integration for inspection manioulation control in multifunctional underwater vehicles. Ptol. David Broome Tschnical Softvvare Conauttanta... [Pg.935]

An example of using one predicted property to predict another is predicting the adsorption of chemicals in soil. This is usually done by first predicting an octanol water partition coelficient and then using an equation that relates this to soil adsorption. This type of property-property relationship is most reliable for monofunctional compounds. Structure-property relationships, and to a lesser extent group additivity methods, are more reliable for multifunctional compounds than this type of relationship. [Pg.121]

Werner, J. A. Werner, T. G. Multifunctional Base Unknowns in the Introductory Analytical Ghemistry Lab, ... [Pg.359]

In some cases of multifunctional monomers the possibility exists for branches on branches, which ultimately result in cross-linked products and effectively infinite molecular weights well before p reaches unity. [Pg.299]

For simplicity, we assume that the reaction mixture still contains only A and B as reactive groups, but that either one (or both) of these is present (totally or in part) in a molecule that contains more than two of the reactive groups. We use f to represent the number of reactive groups in a molecule when this quantity exceeds 2, and represent a multifunctional molecule Af or Bj-. For... [Pg.314]

The fraction of A groups present in multifunctional molecules as defined by the ratio... [Pg.316]

The fraction of unreacted B groups is rp, so this gives the probability of reaction for B. Since p is the fraction of A groups on multifunctional monomers, rp must be multiplied by 1 - p to give the probability of B reacting with an AA monomer. The total probability for the chain shown is the product of the probabilities considered until now ... [Pg.317]

The terminal B group reacts with an A group from a multifunctional monomer ... [Pg.317]

Our interest from the outset has been in the possibility of crosslinking which accompanies inclusion of multifunctional monomers in a polymerizing system. Note that this does not occur when the groups enclosed in boxes in Table 5.6 react however, any reaction beyond this for the terminal A groups will result in a cascade of branches being formed. Therefore a critical (subscript c) value for the branching coefficient occurs at... [Pg.318]

For a fixed extent of reaction, the presence of multifunctional monomers in an equimolar mixture of reactive groups increases the degree of polymerization. Conversely, for the same mixture a lesser extent of reaction is needed to reach a specified with multifunctional reactants than without them. Remember that this entire approach is developed for the case of stoichiometric balance. If the numbers of functional groups are unequal, this effect works in opposition to the multifunctional groups. [Pg.322]

In resists of this class, the imaging layer contains a multifunctional monomer that can form an intercormected network upon polymerization, and a photosensitizer to generate a flux of initiating free radicals. Although not stricdy required for imaging, the composition usually includes a polymeric binder (typically an acryhc copolymer) to modify the layer s physical properties. Figure 7b shows the chemical stmctures of typical components. [Pg.117]

Multifunctional Acrylates in Rwidiation Curing Celanese Co., New York. [Pg.174]

In addition to their role in composites, high performance fibers are also found in coated and laminated textile products, three-dimensional fabric stmctures, multifunctional property improvement, and intelligent or self-adaptive materials. [Pg.64]

Other multifunctional hydroxycarboxylic acids are mevalonic and aldonic acids which can be prepared for specialized uses as aldol reaction products (mevalonic acid [150-97-0] (13)) and mild oxidation of aldoses (aldonic acids). [Pg.518]

Multifunctional nucleophiles may undergo 1,4-conjugate addition to the double bond, followed by reaction at the carbonyl moiety to give heterocycHc products (15—18). [Pg.246]

Cross-linking agents or oligomers with multifunctional unsaturation sites include the following ... [Pg.427]

Certain polymeric stmctures can also be blended with other coreactive polymers or multifunctional reactive oligomers that affect curing reactions when exposed to ir radiation. These coreactive polymers and cross-linking oligomers undergo condensation or addition reactions, which cause the formation of network stmctures (Table 9) (4,5,47). [Pg.430]

The detailed analysis, involving many respondents inside and outside the company, led to changes in the overall innovation process, ie, a company-wide priority system for innovation projects, measures of innovation for each functional and business area, training and supportive management systems for project managers, informal multifunctional teams in concept development and market development, a stmctured needs identification process, and appointment of a process steward to monitor the innovation process, measure how it functions, and coordinate innovation projects. [Pg.133]

Multifunctional Hydroxy, Mercapto, and Amino Compounds. These are used to cross-link halogenated polymers. Depending on the labihty of the halogen, the cross-linking agents can be capped to reduce reactivity or used in combination with accelerators to increase the rate of reaction. Benzoyl capping is common with hydroxy and mercapto compounds forming the carbamate by reaction with one equivalent of carbon dioxide is used with diamines. [Pg.225]

Relative hydrolysis and condensation rate studies of multifunctional silanes, Si(OR), under acidic and basic catalysis showed that the first (OR) group hydroly2es much more readily than subsequent groups (195). Sdanol—sdanol condensation is much slower than sdanol—alkoxysilane condensation, even if the alkoxysilane is monofunctional, thus suggesting that chain extension is insignificant ia the presence of a cross-linker (196—199). [Pg.49]

Polyurethane adhesives are known for excellent adhesion, flexibihty, toughness, high cohesive strength, and fast cure rates. Polyurethane adhesives rely on the curing of multifunctional isocyanate-terrninated prepolymers with moisture or on the reaction with the substrate, eg, wood and ceUulosic fibers. Two-component adhesives consist of an isocyanate prepolymer, which is cured with low equivalent weight diols, polyols, diamines, or polyamines. Such systems can be used neat or as solution. The two components are kept separately before apphcation. Two-component polyurethane systems are also used as hot-melt adhesives. [Pg.350]


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1.2- Dithiolenes multifunctional compounds

Acid-Base-Metal Combined Multifunctional Nanocatalyst

Acrylates, multifunctional, energy

Active multifunctional

Advantages and limitations of using multifunctional rare earth organic inhibitors for corrosion protection

Aldehydes multifunctional

Amines, multifunctional

Amino acid multifunctional

Block Copolymers for Multifunctional Self-assembled Systems

Catalyst multifunctional

Catalytic reactors multifunctional reactor

Chiral multifunctional phosphine

Cleaner, multifunctional

Cleavage, multifunctional

Combined Multifunctional Impinging

Combined Multifunctional Impinging Stream Gas-Liquid Reactor

Compact multifunctional heat exchange

Compounds multifunctional

Core multifunctional initiators

Cross-linked polyol fibrous substrates as multifunctional and multi-use intelligent materials

Dendrimer multifunctional

Dendrimer-multifunctional protein

Design of Multifunctional Hyaluronic Acid-based Delivery Systems

Drugs multifunctional

Eight-channel Sixteen-port Multifunctional Valve

Enantioselective Synthesis of Propargyl Alcohols as Multifunctional Synthons

Engineering Mono- and Multifunctional Nanocatalysts for Cascade Reactions

Environmental Applications of Multifunctional Nanocomposite Catalytic Materials Issues with Catalyst Combinations

Enzyme system multifunctional

Epoxides multifunctional catalysts

Epoxy resin systems Multifunctional

Ethers multifunctional

Flame-retardant multifunctional

Fullerene multifunctional

Functional groups multifunctional)

Functional multifunctional

Heterobimetallic multifunctional catalyst

Heterogeneous Multifunctional Nanocatalysts

Hybrid (Multifunctional) Reactors

ILs-Based Multifunctional Compounds for Electrocatalysis and Biosensors

Initiators, multifunctional

Lanthanides Containing Multifunctional Heterobimetallic and Heteropolymetallic Asymmetric Catalysis

Linker multifunctional

Linker multifunctional cleavage

Linkers multifunctional linker advantages

Linking agents, multifunctional

Manufacturing and characterization of multifunctional polymer-reduced graphene oxide nanocomposites

Modeling multifunctional polymer molecule

Molecular magnetic materials multifunctional

Molecules multifunctional

Monomer multifunctional

Monomers, reactive multifunctional

Multifunction

Multifunction Mechanisms

Multifunction boards

Multifunction combination

Multifunctional (Block) Copolymers

Multifunctional Catalysis and Simple Models

Multifunctional Coatings

Multifunctional Dielectrics

Multifunctional Linker Strategies

Multifunctional Magnetic Materials

Multifunctional Materials in Selective Catalytic Oxidation

Multifunctional Materials to Combine NH3-SCR and NSR Cycles

Multifunctional Molecular-level Systems - Photochromic Flavylium Compounds

Multifunctional Nanofibre

Multifunctional Nanomedicine

Multifunctional Nanoparticle

Multifunctional Nanostructure

Multifunctional Nanotechnology

Multifunctional Nanotips

Multifunctional Natural

Multifunctional Naturally occurring

Multifunctional Needle

Multifunctional Neutral

Multifunctional Nitrogen

Multifunctional Nuclear magnetic resonance

Multifunctional Nucleophilic

Multifunctional Number average molecular weight

Multifunctional Oligomeric

Multifunctional Optical

Multifunctional Optimisation

Multifunctional Organic

Multifunctional Organolead Alkoxides

Multifunctional Oxygen

Multifunctional Protein

Multifunctional Reactor Concepts

Multifunctional Transition Metal Ligands

Multifunctional acrylates

Multifunctional acrylic oligomers

Multifunctional acrylic oligomers synthesis

Multifunctional additives

Multifunctional additives properties

Multifunctional agents, characteristics

Multifunctional amorphous

Multifunctional amorphous coatings

Multifunctional analysis

Multifunctional anchors

Multifunctional anhydride monomers

Multifunctional artificial receptor

Multifunctional artificial reefs

Multifunctional assumption

Multifunctional biomaterials

Multifunctional biomaterials adhesiveness

Multifunctional calmodulin-dependent

Multifunctional calmodulin-dependent kinases

Multifunctional capsules

Multifunctional carbanions

Multifunctional catalysis

Multifunctional catalysts, applications

Multifunctional catalytic

Multifunctional chlorosilane

Multifunctional chromophores

Multifunctional complexes

Multifunctional composite

Multifunctional composite solids

Multifunctional concept

Multifunctional condensation

Multifunctional cooperativity

Multifunctional copolymer

Multifunctional core

Multifunctional core-shell polymeric

Multifunctional corrosion inhibitors

Multifunctional coupling reagents

Multifunctional crosslinking agent

Multifunctional delivery system

Multifunctional dendrimers

Multifunctional dithiolenes

Multifunctional drug carriers

Multifunctional element

Multifunctional envelope-type nano

Multifunctional envelope-type nano device

Multifunctional enzyme

Multifunctional enzyme protein

Multifunctional enzyme type

Multifunctional epoxides

Multifunctional geotextiles

Multifunctional heat exchanger

Multifunctional hydrophilic and hydrophobic

Multifunctional inhibitors for steel

Multifunctional initiation

Multifunctional integration

Multifunctional isocyanates

Multifunctional ligands

Multifunctional liposomes

Multifunctional lubricants

Multifunctional macromolecule

Multifunctional materials

Multifunctional materials for protection

Multifunctional methacrylates

Multifunctional microscopy

Multifunctional monomers, polymerizations

Multifunctional myoelectric control

Multifunctional nanocatalysts

Multifunctional nanocomposites

Multifunctional nanocomposites reinforced with carbon nanopapers

Multifunctional organic glasses

Multifunctional organic linker

Multifunctional organic linker molecule

Multifunctional organic molecule

Multifunctional organocatalysts

Multifunctional orthopedic implants

Multifunctional parallelism with

Multifunctional pharmaceutical carriers

Multifunctional photothermal

Multifunctional photothermal agents

Multifunctional piezoelectric composite

Multifunctional piperidine derivative

Multifunctional polarizer

Multifunctional polyester-based

Multifunctional polyester-based materials

Multifunctional polyester-based poly

Multifunctional polymer architecture

Multifunctional polymeric composites

Multifunctional polymerization

Multifunctional polymerization initiators

Multifunctional polymers

Multifunctional polymers enzyme-inhibiting

Multifunctional polymers mucoadhesive

Multifunctional polymers properties

Multifunctional polypeptides

Multifunctional polysilsesquioxane

Multifunctional processes

Multifunctional protein CAD

Multifunctional protein CAD chimera

Multifunctional random copolymer

Multifunctional rare earth organic

Multifunctional rare earth organic corrosion inhibitors

Multifunctional reactor engineering

Multifunctional reactor with integrated

Multifunctional reactors

Multifunctional scaffolds

Multifunctional signalling

Multifunctional silanes

Multifunctional soil

Multifunctional solid catalyst

Multifunctional solid catalyst active sites

Multifunctional spectroscopy

Multifunctional steel inhibitors

Multifunctional structure

Multifunctional substitution

Multifunctional substrates

Multifunctional supramolecular

Multifunctional supramolecular materials

Multifunctional termination

Multifunctional transfer agents

Multifunctional unsaturated monomers

Multifunctional vinyl monomers

Multifunctional zeolites

Multifunctional, applications

Multiple/multifunctional catalysts

Multistate / multifunctional

Multistate / multifunctional molecular-level system

Nanomedicine multifunctional nanoparticles

Organic synthesis multifunctional catalysts

Peroxides multifunctional

Photoinitiators-multifunctional

Photorefractive multifunctional polymers

Piezoelectrics and Multifunctional Composites

Piperidines multifunctional derivatives

Polycondensation Methods (Multifunctional Condensation)

Polycondensation multifunctional

Polymeric and Multifunctional Initiators

Protein kinase multifunctional

SMPs multifunctional

Self multifunctional coatings

Self multifunctional ligands

Self-Cleaning and Multifunctional Sol-Gel Coatings

Side-chain multifunctional polymer

Silsesquioxanes multifunctional

Smart and multifunctional orthopedic implants

Stationary phases, multifunctional

Styrene multifunctional catalysts

Surfactants multifunctional

Switch, multifunctional

Tetramethyldisiloxane-based multifunctional

Transfer multifunctional

Tunable multifunctional corrosion-resistant metallic coatings containing rare earth elements

Types and performance of multifunctional inhibitors

Use of Multifunctional Materials to Combust C(s) and Trap NOx

Use of Multifunctional Monomers

Users needs multifunction

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