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Thermos

Cryogenics We use several types of evacuated stainless steel cryostats of about 1 htre capacity to provide the 77 K cooling with hquid nitrogen. The simplest, best valued and easiest to handle one is a ordinary thermos flask available from the supermarket (see fig.3). It is sufficient for a measurement period of more than 12 hours. A specially designed stainless steel vessel gains cooling periods of 30 hours. [Pg.300]

Figure Bl.27.8. Schematic view of Picker s flow microcalorimeter. A, reference liquid B, liquid under study P, constant flow circulating pump and 2, Zener diodes acting as heaters T and T2, thennistors acting as temperature sensing devices F, feedback control N, null detector R, recorder Q, themiostat. In the above A is the reference liquid and C2is the reference cell. When B circulates in cell C this cell is the working cell. (Reproduced by pemiission from Picker P, Leduc P-A, Philip P R and Desnoyers J E 1971 J. Chem. Thermo. B41.)... Figure Bl.27.8. Schematic view of Picker s flow microcalorimeter. A, reference liquid B, liquid under study P, constant flow circulating pump and 2, Zener diodes acting as heaters T and T2, thennistors acting as temperature sensing devices F, feedback control N, null detector R, recorder Q, themiostat. In the above A is the reference liquid and C2is the reference cell. When B circulates in cell C this cell is the working cell. (Reproduced by pemiission from Picker P, Leduc P-A, Philip P R and Desnoyers J E 1971 J. Chem. Thermo. B41.)...
The overall free energy can be partitioned into individual contributions if the thermo-lynamic integration method is used [Boresch et al. 1994 Boresch and Karplus 1995]. The itarting point is the thermodynamic integration formula for the free energy ... [Pg.590]

Fractionating columns these may be provided with thermo couples near each end. [Pg.222]

In practice, synthetic polymers are sometimes divided into two classes, thermosetting and thermo-plMtic. Those polymers which in their original condition will fiow and can be moulded by heat and pressime, but which in their finished or cured state cannot be re softened or moulded are known as thermo setting (examples phenol formaldehyde or urea formaldehyde polymer). Thermoplastic polymers can be resoftened and remoulded by heat (examples ethylene polymers and polymers of acrylic esters). [Pg.1014]

By allowing compounds to react in a calorime ter It IS possible to measure the heat evolved in an exothermic reaction or the heat absorbed in an en dothermic reaction Thousands of reactions have been studied to produce a rich library of thermo chemical data These data take the form of heats of reaction and correspond to the value of the enthalpy change AH° for a particular reaction of a particular substance... [Pg.86]

One of the fundamental equations of thermo dynamics concerns systems at equilibrium and relates the equilibrium constant K to the dif ference in standard free energy (A6°) between the products and the reactants... [Pg.122]

You have seen that measurements of heats of reaction such as heats of combustion can pro vide quantitative information concerning the relative stability of constitutional isomers (Section 2 18) and stereoisomers (Section 3 11) The box in Section 2 18 described how heats of reaction can be manipulated arithmetically to generate heats of formation (AH ) for many molecules The following material shows how two different sources of thermo chemical information heats of formation and bond dissociation energies (see Table 4 3) can reveal whether a particular reaction is exothermic or en dothermic and by how much... [Pg.174]

FIGURE 10 8 Energy dia gram showing relationship of kinetic control to thermo dynamic control in addition of hydrogen bromide to 1 3 butadiene... [Pg.407]

Crystalline Amorphous 81 Thermoset Thermo set Thermoset Thermoset 310-365... [Pg.1046]

The thermospray inlet/ion source does not produce a good percentage yield of ions from the original sample, even with added salts (Figure 11.2). Often the original sample is present in very tiny amounts in the solution going into the thermospray, and the poor ion yield makes the thermo-spray/mass spectrometer a relatively insensitive combination when compared with the sensitivity attainable by even quite a modest mass spectrometer alone. Various attempts have been made to increase the ion yield. One popular method is described here. [Pg.73]

Ions formed by thermo- or plasmaspray are extracted through a small hole into the mass spectrometer analyzer, where a mass spectrum of the original dissolved sample is obtained. [Pg.392]

Thermogravimetry Thermoid Thermolite Thermo luminescence Thermolysin... [Pg.983]

Tables 1 and 2 list some physical piopeities and thermo dynamic information for DMF (3,4). Tables 1 and 2 list some physical piopeities and thermo dynamic information for DMF (3,4).
R. D. McCarty, Interactive FORTRAN Programs for Micro Computers to Calculate the Thermo Physical Properties of Twelve Fluids [MIPROPS], NBS Technical... [Pg.18]

Pendent waste drop suspended from thermo couple junction... [Pg.56]

Thermo dynamic data for nitric acid are given ia Table 2. Properties for the ternary systems sulfuric acid—nitric acid—water (5,14) and magnesium nitrate—nitric acid—water (11,15—17) used ia processes for concentrating nitric acid are available. [Pg.39]

The wheel cover of claim 4, wherein said thermo-... [Pg.29]

Polyamides, like other macromolecules, degrade as a result of mechanical stress either in the melt phase, in solution, or in the soHd state (124). Degradation in the fluid state is usually detected via a change in viscosity or molecular weight distribution (125). However, in the soHd state it is possible to observe the free radicals formed as a result of polymer chains breaking under the appHed stress. If the polymer is protected from oxygen, then alkyl radicals can be observed (126). However, if the sample is exposed to air then the radicals react with oxygen in a manner similar to thermo- and photooxidation. These reactions lead to the formation of microcracks, embrittlement, and fracture, which can eventually result in failure of the fiber, film, or plastic article. [Pg.230]

A series of glycol bis(aUyl phthalates) and bis(aUyl succinates) and their properties are reported in reference 88. In homopolymerizations, cyclization increases in the order diaUyl aliphatic carboxylates < glycol bis(allyl succinates) < glycol bis(allyl phthalates). Copolymerizations with small amounts of DAP can give thermo set moldings of improved impact (89). [Pg.87]

Small amounts of TAIC together with DAP have been used to cure unsaturated polyesters in glass-reinforced thermo sets (131). It has been used with polyfunctional methacrylate esters in anaerobic adhesives (132). TAIC and vinyl acetate are copolymerized in aqueous suspension, and vinyl alcohol copolymer gels are made from the products (133). Electron cure of poly(ethylene terephthalate) moldings containing TAIC improves heat resistance and transparency (134). [Pg.88]

Cycloahphatic diamines react with dicarboxyUc acids or their chlorides, dianhydrides, diisocyanates and di- (or poly-)epoxides as comonomers to form high molecular weight polyamides, polyimides, polyureas, and epoxies. Polymer property dependence on diamine stmcture is greater in the linear amorphous thermoplastic polyamides and elastomeric polyureas than in the highly crosslinked thermo set epoxies (2—4). [Pg.208]

AH of the amine hydrogens are replaced when MDA or PMDA reacts with epoxides to form amine based polyols. These polyols can be used in reactions with isocyanates to form urethanes or with additional epoxide to form cross-linked thermo set resins. [Pg.248]


See other pages where Thermos is mentioned: [Pg.329]    [Pg.332]    [Pg.988]    [Pg.2543]    [Pg.586]    [Pg.159]    [Pg.319]    [Pg.335]    [Pg.62]    [Pg.222]    [Pg.339]    [Pg.869]    [Pg.870]    [Pg.111]    [Pg.407]    [Pg.983]    [Pg.984]    [Pg.984]    [Pg.984]    [Pg.12]    [Pg.119]    [Pg.100]    [Pg.149]    [Pg.229]    [Pg.241]    [Pg.80]    [Pg.85]    [Pg.85]   
See also in sourсe #XX -- [ Pg.125 ]




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A Study on Thermo-Chemical Changes of Natural Rubber

Analyzer, Thermo Systems electrical

B.E. Gelfand et al., Thermo-Gas Dynamics of Hydrogen Combustion and Explosion

Bacterium thermo

Biomass thermo-chemical conversion

Capillary thermo

Characterization Thermo gravimetric analysis

Charge Detector (QD) Thermo Scientific

Chemiluminescence thermo

Clothing thermo-regulated textiles

Combustion instability thermo-acoustic instabilities

Controlled drug delivery system thermo

Copolymers Thermo-sensitive gels

Cross-linking thermo

Cyclization thermo

Detectors thermo-ionic

Differences Between Thermal and Thermo-Oxidative Degradation of Phosphorus Containing Polysulfones

Differential thermo analysis

Diffusion thermo

Diffusion-thermo effect

Dispersion and the thermo-optic coefficient

Drug carriers thermo-responsive

Electrical properties thermo-electric

Epoxy resins thermo-oxidation

Equilibrium from thermo

Equilibrium from thermo examples

Hot Needle Thermo Spray Injection Technique

Hot needle thermo spray injection

Hydrogel thermo

Hydrogels Thermo-responsive behavior

Hydrogen thermo physical properties

INDUSTRIAL THERMO

Lead stearate, thermo-oxidative

Long-term prediction of thermo-oxidative degradation

Materials to improve thermo-physiological comfort of protective clothing

Natural thermo-sensitive polymers

Neutronics/thermo-fluid coupled analysis

Neutronics/thermo-fluid coupled analysis code system

Nylon thermo-oxidation

Oxygen thermo cell

PH- and thermo-responsive polymers

Photo-, thermo- and electrochromic behaviour

Photo-biodegradation thermo-oxidation

Plastic thermo

Plastics Thermo-setting

Poly Thermo-sensitive gels

Poly thermo-oxidative degradation

Poly thermo-responsive polymer

Polyamide thermo-oxidized

Polyamides thermo-oxidation

Polyester thermo sets

Polymer grafting thermo-initiated

Polymer thermo

Polymer thermo-reversible gelation

Polymers thermo-oxidatively stable

Polyolefins thermo-oxidative

Polypropylene thermo-oxidation

Polystyrene thermo-oxidation

Preparation of the Thermo-Activated Silica (TSi) Samples

Protein adsorption on thermo-responsive surfaces

Protein-surface interactions thermo-responsive surfaces

Regional and continental-scale thermo-tectonic imaging

Reverse thermo-gelation property system

Rheology thermo

Sintering Thermo

Spectrophotometer Thermo Scientific Evolution

Stabilization of Polyethylene against Thermo-oxidative Degradation

Starch thermo-oxidation

Stress thermo-mechanical induced

Synthetic thermo-responsive polymers

TGA (Thermo Gravimetric Analysis

THERMO project

The Application of Thermo-analytical Methods in Environment Protection

Thermal and Thermo-Mechanical Properties

Thermal and Thermo-oxidative Degradation

Thermo Electron

Thermo Electron Corporation

Thermo Fischer Scientific

Thermo Fisher Scientific

Thermo LTQ

Thermo Microbalance

Thermo PNIPAM

Thermo Scientific

Thermo Scientific Evolution

Thermo Scientific ITQ

Thermo Systems Inc

Thermo Systems Incorporated

Thermo Systems electrical aerosol

Thermo Systems electrical aerosol analyzer

Thermo dilatometry

Thermo elastic

Thermo electrometry

Thermo forming

Thermo gravimetric analysis

Thermo hydrodynamics

Thermo ionic current

Thermo lyses

Thermo lytic

Thermo neutral conditions

Thermo set resins

Thermo sets

Thermo therapy

Thermo, term

Thermo- and Photo-oxidation Products

Thermo- and Photochemical Reactions of Carbonyl Compounds in the Solid State

Thermo- and Solvatochromism

Thermo- and pH-Responsive NT-Polymer Composites

Thermo- and photoinduced

Thermo- and photospillover of hydrogen atoms in multicomponent systems

Thermo-)kinetics

Thermo-/photo-oxidation products

Thermo-Acoustic Oscillations

Thermo-Calc

Thermo-Mechanical Behavior

Thermo-Mechanical Gel Dynamics

Thermo-Mechanical Properties

Thermo-Mechanical Response

Thermo-Mechanical Treatment

Thermo-Oxidative Decomposition

Thermo-Physical Properties

Thermo-Physical Property Prediction Methods

Thermo-activated reactions

Thermo-active group

Thermo-analytical methods

Thermo-annealing

Thermo-capillary flow

Thermo-catalytic

Thermo-cell

Thermo-chemical

Thermo-chemical conversion

Thermo-chemical description

Thermo-chemical process

Thermo-chemical recuperation

Thermo-chemical units

Thermo-chemistry

Thermo-compression distillation

Thermo-compressor

Thermo-couple

Thermo-diffusive functions

Thermo-elastic inversion

Thermo-elastic inversion effect

Thermo-elasticity

Thermo-elastoplastic properties

Thermo-electric cooling

Thermo-electric generators

Thermo-electric properties

Thermo-electricity

Thermo-emf

Thermo-extruder

Thermo-formation

Thermo-gravimetric

Thermo-hydro coupling

Thermo-hydro-chemical

Thermo-hydro-chemical coupling

Thermo-hydro-mechanical

Thermo-hydro-mechanical analysis

Thermo-hydro-mechanical bentonite

Thermo-hydro-mechanical codes

Thermo-hydro-mechanical coupling

Thermo-hydro-mechanical fractures

Thermo-hydro-mechanical near-field repositories

Thermo-hydro-mechanical systems

Thermo-labile

Thermo-luminescence

Thermo-mechanical

Thermo-mechanical analysis

Thermo-mechanical analysis , film

Thermo-mechanical coupling

Thermo-mechanical coupling media

Thermo-mechanical coupling processes

Thermo-mechanical coupling temperature effects

Thermo-mechanical cyclic tensile test

Thermo-mechanical effect

Thermo-mechanical fatigue - the route to standardisation (TMF-STANDARD)

Thermo-mechanical properties progress with

Thermo-mechanical pulp

Thermo-mechanical stresses

Thermo-mechanical techniques

Thermo-mechanics model

Thermo-optic Switches

Thermo-optic analysis

Thermo-optic effect

Thermo-optic properties, polymer

Thermo-optic sensors

Thermo-optic switching

Thermo-optical absorbance detection

Thermo-optical analysis

Thermo-optical coefficient

Thermo-optical polymer devices

Thermo-osmosis

Thermo-osmosis in biological systems

Thermo-osmosis of gases and gaseous mixtures

Thermo-osmotic concentration difference

Thermo-osmotic pressure difference

Thermo-oxidation

Thermo-oxidation Process

Thermo-oxidation behaviour

Thermo-oxidation destruction

Thermo-oxidation mechanism

Thermo-oxidation polyethylene

Thermo-oxidation, stabilized

Thermo-oxidative Degradation of PET

Thermo-oxidative Degradation of Poly(alkane imide)

Thermo-oxidative Degradation of Polyesterimides, Polyamidoimides, Aliphatic-Aromatic Polyamides

Thermo-oxidative Stabilisation

Thermo-oxidative ablation

Thermo-oxidative aging

Thermo-oxidative degradation

Thermo-oxidative degradation accelerated testing

Thermo-oxidative degradation activation energy

Thermo-oxidative degradation free-radical chain mechanism

Thermo-oxidative degradation mechanism

Thermo-oxidative degradation, reactions

Thermo-oxidative instability

Thermo-oxidative processes

Thermo-oxidative processes Thermoplastics

Thermo-oxidative processes comparison

Thermo-oxidative processes effect

Thermo-oxidative processes materials

Thermo-oxidative processes polyamides

Thermo-oxidative stability

Thermo-oxidative stability degradation mechanism

Thermo-oxidative stabilization

Thermo-physiological

Thermo-physiological comfort

Thermo-potential

Thermo-programmed reduction

Thermo-recording

Thermo-redox

Thermo-regulated textiles

Thermo-regulator

Thermo-responsive LCEs

Thermo-responsive SMPs

Thermo-responsive behavior

Thermo-responsive controlled delivery

Thermo-responsive polymer

Thermo-responsive polymers block copolymer

Thermo-responsive polymers characteristics

Thermo-responsive polymers interactions

Thermo-responsive polymers lower critical solution temperature

Thermo-responsive polymers properties

Thermo-responsive polymers structure and design of smart materials

Thermo-responsive polymers temperature sensitivity

Thermo-responsive polymers thermosensitive polymer

Thermo-responsive polymers transition

Thermo-responsive polymers upper critical solution temperature

Thermo-reversible

Thermo-reversible gel

Thermo-reversible gelation

Thermo-sensitive compounds

Thermo-sensitive gel

Thermo-sensitive gels solutions

Thermo-sensitive gels temperature

Thermo-sensitive polymers

Thermo-shrinking polymers

Thermo-solvatochromism

Thermo-stability

Thermo-stable aromatic polyesters

Thermo-stable plastics

Thermo-stable polymers

Thermo-stimulated current

Thermo-viscosity-elasticity

Thermo-volumetric relationship

Thermodynamic theory of thermo-osmosis

Thermogravimetric and Thermo-Differential Analyses

Thermoresistant heterochain polymers thermo-oxidation

Thermos bottles

Thermos flask

Thermos, development

Transport thermo-hydro coupling

Transport thermo-hydro-mechanics

Types of thermo-responsive polymers

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