Search results for "G force"

showing 4 items of 54 documents

Resonance in Interacting Induced-Dipole Polarizing Force Fields: Application to Force-Field Derivatives

2009

The Silberstein model of the molecular polarizability of diatomic molecules, generalized by Applequist et al. for polyatomic molecules, is analyzed. The atoms are regarded as isotropically polarizable points located at their nuclei, interacting via the fields of their induced dipoles. The use of additive values for atom polarizabilities gives poor results, in some cases leading to artificial predictions of absorption bands. The molecular polarizability of methane and its derivative are computed. The agreement with experimental mean molecular polarizabilities is within 1–5%. A hypothesis is indispensable for a suitable representation of polarizability derivative.

lcsh:T55.4-60.8Molecular physicsForce field (chemistry)lcsh:QA75.5-76.95Theoretical Computer Scienceelectric field gradientPolarizabilityAtomPhysics::Atomic and Molecular ClustersMoleculederivativelcsh:Industrial engineering. Management engineeringPhysics::Atomic PhysicsPhysics::Chemical PhysicsPhysicspolarizing force fieldNumerical AnalysisPolyatomic iondipole momentDiatomic moleculepolarizabilityelectric fieldComputational MathematicsDipoleComputational Theory and Mathematicsresonanceinteracting induced-dipole polarizationlcsh:Electronic computers. Computer scienceElectric field gradientAlgorithms
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Percutaneous transrenal catheter retrieval.

1984

Percutaneous transrenal catheter retrieval was successfully performed in 6 of 7 patients using the percutaneous transrenal access. Three broken nephrostomy tubes and 3 indwelling splints were extracted. The instruments used were deflecting guide wire in 1, grasping forceps in 2, and Dormia stone basket in 3 instances. No complications were encountered.

medicine.medical_specialtyPercutaneousGrasping forcepsbusiness.industryUrologymedicine.medical_treatmentNephrostomy tubeKidneyDilatationSurgeryCatheterizationRadiographySplintsCatheterPercutaneous nephrostomyMethodsMedicineHumansRadiology Nuclear Medicine and imagingPolyethylenesbusinessUrologic radiology
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Particle radiation in microelectronics

2012

The unavoidable presence of particle radiation in space and on the ground combined with constantly evolving technology necessitates a deep understanding of the basic mechanisms underlying radiation effects in materials and electronic devices. This thesis provides an overview of the different radiation environments, with a review of the interaction mechanisms between energetic particles and matter. In this work a new semi-empirical model for estimating the electronic stopping force of solids for heavy ions is introduced. Radiation effects occurring in microelectronics due to particle radiation are also discussed with a brief introduction to radiation hardness assurance (RHA) testing of elect…

silicon dioxidemikroelektroniikkastopping forceradiaton effectselectronicssiliconfysiikkaheavy ionsrecombinationhiukkassäteily
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Developments in the biomechanics and equipment of Olympic cross-country skiers

2018

Source at: http://doi.org/10.3389/fphys.2018.00976 Here, our aim was to describe the major changes in cross-country (XC) skiing in recent decades, as well as potential future developments. XC skiing has been an Olympic event since the very first Winter Games in Chamonix, France, in 1924. Over the past decades, considerable developments in skiing techniques and improvements in equipment and track preparation have increased skiing speed. In contrast to the numerous investigations on the physiological determinants of successful performance, key biomechanical factors have been less explored. Today’s XC skier must master a wide range of speeds, terrains, and race distances and formats (e.g., dis…

skiing techniqueVDP::Medisinske Fag: 700::Idrettsmedisinske fag: 850::Treningslære: 851performance; pole; poling force; ski; skiing technique; track preparationPhysiologyComputer sciencepoleContext (language use)track preparationskilcsh:PhysiologyVDP::Medical disciplines: 700::Sports medicine: 850::Exercise techniques: 85103 medical and health sciences0302 clinical medicineAeronauticsPhysiology (medical)Health SciencesVDP::Technology: 500::Industrial and product design: 640poling forceFlexibility (engineering)Cross countrylcsh:QP1-981030229 sport sciencesHälsovetenskaperVDP::Teknologi: 500::Industri- og produktdesign: 640Perspective030217 neurology & neurosurgeryperformance
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