scholarly journals The Absolute Frame of Reference

2020 ◽  
Author(s):  
Ninh Khac Son
2001 ◽  
Vol 25 (3) ◽  
pp. 521-555 ◽  
Author(s):  
Gunter Senft

Members of the MPI for Psycholinguistics are researching the interrelationship between language, cognition and the conceptualization of space in various languages. Research results show that there are three frames of spatial reference, the absolute, the relative, and the intrinsic frame of reference. This study first presents results of this research in general and then discusses the results for Kilivila. Speakers of this Austronesian language prefer the intrinsic frame of reference for the location of objects with respect to each other in a given spatial configuration. But they prefer an absolute frame of reference system in referring to the spatial orientation of objects in a given spatial configuration. Moreover, the hypothesis is confirmed that languages seem to influence the choice and the kind of conceptual parameters their speakers use to solve non-verbal problems within the domain of space.


Author(s):  
Marcello Berzeri ◽  
Marcello Campanelli ◽  
A. A. Shabana

Abstract The equivalence of the elastic forces of finite element formulations used in flexible multibody dynamics is the focus of this investigation. Two conceptually different finite element formulations that lead to exact modeling of the rigid body dynamics will be used. These are the floating frame of reference formulation and the absolute nodal coordinate formulation. It is demonstrated in this study that different element coordinate systems, which are used for the convenience of describing the element deformations in the absolute nodal coordinate formulation, lead to similar results as the element size is reduced. The equivalence of the elastic forces in the absolute nodal coordinate and the floating frame of reference formulations is shown. The result of this analysis clearly demonstrates that the instability observed in high speed rotor analytical models due to the neglect of the geometric centrifugal stiffening is not a problem inherent to a particular finite element formulation but only depends on the beam model that is used. Fourier analysis of the solutions obtained in this investigation also sheds new light on the fundamental problem of the choice of the deformable body coordinate system in the floating frame of reference formulation. A new method is presented and used to obtain a simple expression for the elastic forces in the absolute nodal coordinate formulation. This method, which employs a nonlinear elastic strain-displacement relationship, does not result in an unstable solution when the angular velocity is increased.


2019 ◽  
Vol 45 (2) ◽  
pp. 241-276
Author(s):  
Sarah E. Gollust ◽  
Joanne M. Miller

Abstract Context: Although research has begun to examine perceptions of being on the losing side of politics, it has been confined to electoral politics. The context of health disparities, and particularly the opioid crisis, offers a case to explore whether frames that emphasize racial disadvantage activate loser perceptions and the political consequences of such beliefs. Methods: White survey participants (N = 1,549) were randomized into three groups: a control which saw no news article, or one of two treatment groups which saw a news article about the opioid crisis framed to emphasize either the absolute rates of opioid mortality among whites or the comparative rates of opioid mortality among whites compared to blacks. Findings: Among control group participants, perceiving oneself a political loser was unrelated to attitudes about addressing opioids, whereas those who perceived whites to be on the losing side of public health had a less empathetic response to the opioid crisis. The comparative frame led to greater beliefs that whites are on the losing side of public health, whereas the absolute frame led to more empathetic policy opinions. Conclusions: Perceptions that one's racial group has lost ground in the public health context could have political consequences that future research should explore.


Lightspeed ◽  
2019 ◽  
pp. 144-158
Author(s):  
John C. H. Spence

The confused state of theoretical physics in 1900 and the great unresolved issues are summarized, one of which led to the birth of quantum mechanics, and the other to relativity. How it seemed impossible to reconcile Bradley’s measurements of the speed of light with Fresnel’s Aether drag hypothesis, which was well supported by Fizeau’s measurements in Paris of the speed of light in a moving medium (flowing water). Maxwell’s equations predicted a constant speed of light, suggesting an absolute frame of reference in the universe, but did not “transform” in the same way as Newton’s equations from one moving observer to another. How Einstein made sense of all these rival theories and experimental results with his unifying theory of relativity, based on two assumptions. His life and work is discussed, and a simple explanation given of his relativity theory. How the failure of this search for an absolute frame of reference in our universe led him inexorably to perhaps the most famous equation in physics E = mc2, giving the energy release from nuclear explosions and the stars.


Author(s):  
John C. H. Spence

This book tells the human story of one of mankind’s greatest intellectual adventures—how we understood that light travels at a finite speed, so that when we look up at the stars we are looking back in time. And how the search for an absolute frame of reference in the universe led inexorably to Einstein’s famous equation E = mc2 for the energy released by nuclear weapons which also powers our sun and the stars. From the ancient Greeks measuring the distance to the Sun, to today’s satellite navigation and Einstein’s theories, the book takes the reader on a gripping historical journey. How Galileo with his telescope discovered the moons of Jupiter and used their eclipses as a global clock, allowing travellers to find their longitude. How Roemer, noticing that the eclipses were sometimes late, used this delay to obtain the first measurement of the speed of light, which takes eight minutes to get to us from the Sun. From the international collaborations to observe the transits of Venus, including Cook’s voyage to Australia, to the extraordinary achievements of Young and Fresnel, whose discoveries eventually taught us that light travels as a wave but arrives as a particle, and the quantum weirdness which follows. In the nineteenth century we find Faraday and Maxwell, struggling to understand how light can propagate through the vacuum of space unless it is filled with a ghostly vortex Aether foam. We follow the brilliantly gifted experimentalists Hertz, discoverer of radio, Michelson with his search for the Aether wind, and Foucault and Fizeau with their spinning mirrors and lightbeams across the rooftops of Paris. The difficulties of sending messages faster than light, using quantum entanglement, and the reality of the quantum world conclude this saga.


Author(s):  
Remy De´nos ◽  
V. Jerez Fidalgo ◽  
P. Adami

The main sources of excitation for the rotor of a transonic turbine stage are the vane shocks and wakes. Numerical and experimental results are analyzed to understand how these non-uniformities are transported across the rotor. When transposing the pitchwise variations of static and total pressure from the absolute frame of reference into the rotor relative frame of reference in order to derive the rotor relative inlet total pressure, the distortion due to the static pressure dominates. The rotor traverses tangentially the vane trailing edge shock. In particular, the shock sweeps the blade surface from the crown towards the leading edge creating large unsteady variation of static pressure around the blade section. Reflected shocks cause additional fluctuations in the passage. The wake traverses zones of high and low pressure established by the shock. It is convected, distorted and stretched inside the passage. The relative total pressure inside the passage is influenced by both vane shocks and wakes. Downstream of the stage, the signature of the vane non-uniformities is still present. The minimum of the time-averaged pitchwise total pressure variation does not coincide with the vane wake avenue identified thanks to turbulent viscosity plots. It is demonstrated that the vane shock is able to impose total pressure variation downstream of the stage that are larger than that caused by the vane wakes.


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