Search results for "mass [target]"

showing 10 items of 514 documents

Solar Surface Magnetism and Irradiance on Time Scales from Days to the 11-Year Cycle

2009

The uninterrupted measurement of the total solar irradiance during the last three solar cycles and an increasing amount of solar spectral irradiance measurements as well as solar imaging observations (magnetograms and photometric data) have stimulated the development of models attributing irradiance variations to solar surface magnetism. Here we review the current status of solar irradiance measurements and modelling efforts based on solar photospheric magnetic fields. Thereby we restrict ourselves to the study of solar variations from days to the solar cycle. Phenomenological models of the solar atmosphere in combination with imaging observations of solar electromagnetic radiation and meas…

Solar minimumSunspotMeteorologyintegumentary systemPhysics::Instrumentation and DetectorsPhysics::Medical PhysicsIrradiancefood and beveragesAstronomy and AstrophysicsSolar maximumAtmospheric sciencesSolar irradianceCoronaSolar cycleSpace and Planetary Sciencebiological sciencesPhysics::Space PhysicsCoronal mass ejectionEnvironmental scienceAstrophysics::Solar and Stellar AstrophysicsAstrophysics::Earth and Planetary AstrophysicsSpace Science Reviews
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Equilibrium between Hydroxycycloalkanones and Oxabicycloalkanols

2009

Guido Kramer, Annette Oehlhof, and Herbert Meier Institute of Organic Chemistry, University of Mainz, Duesbergweg 10 – 14, 55099 Mainz, Germany Reprint requests to Prof. Dr. H. Meier. Fax: +49-(0)6131-3925396. E-mail: hmeier@mail.uni-mainz.de Z. Naturforsch. 2009, 64b, 847 – 850; received April 8, 2009 Hydroxycycloalkanones 1 of medium ring size (8 – 10) exist in a transannular tautomeric equilibrium with the corresponding oxabicycloalkan-1-ols 2, which represent hemiacetals. Normally, the bicyclic structures 2 predominate in solution although their portion decreases with increasing solvent polarity. A correlation of the Gibbs reaction enthalpies ∆G (1→2) with the solvent parameters ET (30)…

SolventBicyclic moleculeEquilibrium thermodynamicsChemistryThermodynamic equilibriumPartition equilibriumThermodynamicsGeneral ChemistryTautomerDynamic equilibriumLaw of mass actionZeitschrift für Naturforschung B
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A mathematical model of mass transfer in spherical geometry: plum (Prunus domestica) drying

2003

In this paper the analytical solution of a mathematical model of mass transfer in spherical geometry is presented for boundary conditions useful for simulating drying processes of fruit with near spherical stones. This model is applied to analyse the efficiency of a new pre-treatment for a prune drying processes. The new proposed physical abrasion pre-treatment increases the plum drying rate at 60 degreesC. The mathematical model here presented allows a complete comparison of the experimental results obtained with this pre-treatment and with traditional ones. In particular the greater efficiency of the new physical pre-treatment appears to be due to the enhancement of the water diffusivity …

Spherical geometrySpherical modelChemistryAbrasion (mechanical)Mass transferBotanyMechanicsBoundary value problemThermal diffusivityFood Science
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Laser desorption/ionization cluster studies for calibration in mass spectrometry

2003

Precise mass calibration is mandatory in many fields of mass spectrometry. We have performed laser desorption/ionization cluster studies with a MALDI-TOF mass spectrometer on gold and fullerene targets to produce atomic clusters. These investigations demonstrate that clusters are ideally suited for this purpose. Pulsed N 2 -laser and Nd:YAG-laser ablation was used to produce positively as well as negatively charged clusters. Earlier observations of dianionic metal clusters are confirmed. First results from the tandem Penning trap mass spectrometer ISOLTRAP using carbon clusters as mass references show how carbon clusters can be applied to precision mass spectrometry by providing absolute ma…

Static secondary-ion mass spectrometryMaterials scienceMass spectrometryISOLTRAPAtomic and Molecular Physics and OpticsAtomic massPhysics::Atomic and Molecular ClustersMass spectrumPhysics::Atomic PhysicsAtomic physicsTime-of-flight mass spectrometryNuclear ExperimentQuadrupole mass analyzerHybrid mass spectrometerThe European Physical Journal D - Atomic, Molecular and Optical Physics
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Integral relations, a simplified method to find interfacial resistivities for heat and mass transfer.

2007

International audience; Integral relations were used to predict interface film transfer coefficients for evaporation and condensation. According to these, all coefficients can be calculated for one-component systems, using the thermal resistivity and the enthalpy profile through the interface. The expressions were verified in earlier work using non-equilibrium molecular dynamics simulations for argon-like particles, which interacted with a short-range Lennard-Jones (LJ) spline potential, which becomes zero at about 1.7 times the LJ-diameter. In this paper we verify the validity of these relations for a long-range LJ spline potential which becomes zero at 2.5 times the diameter. In an earlie…

Statistics and ProbabilityPhysicsPhase transitionWork (thermodynamics)CondensationEnthalpyThermodynamics02 engineering and technologyCondensed Matter Physics01 natural sciences[PHYS.PHYS.PHYS-CHEM-PH] Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph][CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryMolecular dynamicsSpline (mathematics)[CHIM.THEO] Chemical Sciences/Theoretical and/or physical chemistry[ PHYS.PHYS.PHYS-CHEM-PH ] Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]Thermal conductivity020401 chemical engineeringMass transfer0103 physical sciences[ CHIM.THEO ] Chemical Sciences/Theoretical and/or physical chemistry[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]0204 chemical engineering010306 general physicsComputingMilieux_MISCELLANEOUS
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Main individual and product characteristics influencing in-mouth flavour release during eating masticated food products with different textures: mech…

2013

Research Areas: Life Sciences & Biomedicine - Other Topics; Mathematical & Computational Biology; A mechanistic model predicting flavour release during oral processing of masticated foods was developed. The description of main physiological steps (product mastication and swallowing) and physical mechanisms (mass transfer, product breakdown and dissolution) occurring while eating allowed satisfactory simulation of in vivo release profiles of ethyl propanoate and 2-nonanone, measured by Atmospheric Pressure Chemical Ionization Mass Spectrometry on ten representative subjects during the consumption of four cheeses with different textures. Model sensitivity analysis showed that the main paramet…

Statistics and Probability[ INFO.INFO-MO ] Computer Science [cs]/Modeling and SimulationPhysiology[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionFlavourAroma compoundMass spectrometryModels BiologicalDynamic modelMass SpectrometryGeneral Biochemistry Genetics and Molecular BiologyEatingchemistry.chemical_compound[SPI]Engineering Sciences [physics]CheeseMass transfer[ SPI ] Engineering Sciences [physics]HumansAroma compoundMass transferFood scienceParticle SizeSalivaMasticationAromaFood oral processing2. Zero hungerMass transfer coefficientMouthGeneral Immunology and MicrobiologybiologyAirApplied MathematicsSaliva ArtificialGeneral MedicineKetonesbiology.organism_classification[INFO.INFO-MO]Computer Science [cs]/Modeling and SimulationDeglutitionchemistryFoodTasteModeling and SimulationMasticationDigestionPropionatesBolus (digestion)General Agricultural and Biological Sciences[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Magnetohydrodynamic study on the effect of the gravity stratification on flux rope ejections

2013

Context. Coronal mass ejections (CMEs) are the most violent phenomenon found on the Sun. One model that explains their occurrence is the flux rope ejection model. A magnetic flux rope is ejected from the solar corona and reaches the interplanetary space where it interacts with the pre-existing magnetic fields and plasma. Both gravity and the stratification of the corona affect the early evolution of the flux rope. Aims. Our aim is to study the role of gravitational stratification on the propagation of CMEs. In particular, we assess how it influences the speed and shape of CMEs and under what conditions the flux rope ejection becomes a CME or when it is quenched. Methods. We ran a set of MHD…

Sun: coronal mass ejections (CMEs) – Sun: corona – magnetohydrodynamics (MHD)PhysicsSpace and Planetary SciencePhysics::Space PhysicsAstrophysics::Solar and Stellar AstrophysicsStratification (water)Astronomy and AstrophysicsAstrophysics::Earth and Planetary AstrophysicsMagnetohydrodynamic driveMechanicsMagnetohydrodynamicsSettore FIS/06 - Fisica Per Il Sistema Terra E Il Mezzo CircumterrestreRopeProceedings of the International Astronomical Union
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Tracing the ICME plasma with a MHD simulation

2021

The determination of the chemical composition of interplanetary coronal mass ejection (ICME) plasma is an open issue. More specifically, it is not yet fully understood how remote sensing observations of the solar corona plasma during solar disturbances evolve into plasma properties measured in situ away from the Sun. The ambient conditions of the background interplanetary plasma are important for space weather because they influence the evolutions, arrival times, and geo-effectiveness of the disturbances. The Reverse In situ and MHD APproach (RIMAP) is a technique to reconstruct the heliosphere on the ecliptic plane (including the magnetic Parker spiral) directly from in situ measurements a…

Sun: coronal mass ejections (CMEs)FOS: Physical sciencesInterplanetary mediumAstrophysicsSpace weathermagnetohydrodynamics (MHD)Physics - Space PhysicsPhysics::Plasma PhysicsAstrophysics::Solar and Stellar AstrophysicsSun: abundancesSolar and Stellar Astrophysics (astro-ph.SR)PhysicsAstronomy and AstrophysicsPlasmasolar-terrestrial relationsSpace Physics (physics.space-ph)Physics - Plasma PhysicsComputational physicsPlasma Physics (physics.plasm-ph)Solar windAstrophysics - Solar and Stellar AstrophysicsSpace and Planetary SciencePhysics::Space PhysicsHeliospheric current sheetMagnetohydrodynamicsInterplanetary spaceflightHeliosphere
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Supercritical CO2 extraction of essential oil from orange peel; effect of the height of the bed

2000

Abstract The influence of the height of the particle bed on the kinetics of supercritical fluid extraction (SFE) of essential oil from orange peel is analyzed in this article. Peel of dehydrated oranges of the satsuma and naveline cultivars was used. A series of experiments were designed wherein, for the same conditions, particle height varied widely. These experiments were also carried out on different scales with extraction volumes of 0.5 and 5 l. The results of the experiments were interpreted using Sovova's extended flow model as has been done in previous studies. The bibliography indicates that a number of phenomena may distort the process. One of these phenomena is the formation of ma…

Supercritical carbon dioxideGeneral Chemical EngineeringSupercritical fluid extractionMineralogyMechanicsOrange (colour)Condensed Matter Physicslaw.inventionchemistry.chemical_compoundchemistrylawDragMass transferCarbon dioxideFluid dynamicsPhysical and Theoretical ChemistryEssential oilThe Journal of Supercritical Fluids
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Application of fractal geometry to dissolution kinetic study of a sweetener excipient

2001

Abstract In the context of relationship study between dissolution kinetic and particle morphology using the fractal geometry tool, we use a commercially available quality of saccharin powder. The characterization of molecular feature and image analysis study allows us to conclude to the statistic self-similarity of particles of four sieved particles size fractions, permitting the fractal approach. Calculation of reactive fractal dimension is performed using two forms of mass transfer equation: −d Q /d t = kQ D R /3 Δ C and −d Q /d t = k′R D R −3 Δ C , with Δ C ={ C f /[ln  C s /( C s − C f )]}. Based on comparison of the surface fractal dimension D S on the two values of reactive fractal di…

Surface (mathematics)Surface Properties[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringPharmaceutical ScienceThermodynamicsMineralogyContext (language use)02 engineering and technologyKinetic energyFractal dimensionExcipientsFractalSaccharin020401 chemical engineeringX-Ray DiffractionMass transfer[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering0204 chemical engineeringParticle SizeDissolutionComputingMilieux_MISCELLANEOUSChemistry[SDV.IDA] Life Sciences [q-bio]/Food engineering021001 nanoscience & nanotechnologyFractalsMicroscopy Electron ScanningParticle0210 nano-technology
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