scholarly journals Experimental background and theory ladenness of experimentation

2016 ◽  
pp. 79-89
Author(s):  
V.S. Pronskikh
Synthese ◽  
2021 ◽  
Author(s):  
Themistoklis Pantazakos

AbstractRecent years have seen enticing empirical approaches to solving the epistemological problem of the theory-ladenness of observation. I group these approaches in two categories according to their method of choice: testing and refereeing. I argue that none deliver what friends of theory-neutrality want them to. Testing does not work because both evidence from cognitive neuroscience and perceptual pluralism independently invalidate the existence of a common observation core. Refereeing does not work because it treats theory-ladenness as a kind of superficial, removable bias. Even if such treatment is plausible, there is likely no method to ascertain that effects of this bias are not present. More importantly, evidence from cognitive neuroscience suggests that a deeper, likely irremovable kind of theory-ladenness lies within the perceptual modules.


PEDIATRICS ◽  
1955 ◽  
Vol 15 (3) ◽  
pp. 368-368

Die BCG-Schuzimpfung represents an extensive survey of the development and application of BCG vaccination. Written in French and German, it is the product of teamwork between Swedish, French, and German workers. The first part of the book discusses the experimental background including investigation of the virulence of the BCG strain and the different reactions following vaccination. J. Rosenberg reports in one chapter the results of De Assis "Vaccinacao concorrente" in Brazil since 1945. Time method consists of the administration of repeated oral doses of BCG substance to newborns.


2020 ◽  
Vol 80 (9) ◽  
Author(s):  
M. Aker ◽  
K. Altenmüller ◽  
A. Beglarian ◽  
J. Behrens ◽  
A. Berlev ◽  
...  

AbstractThe KArlsruhe TRItium Neutrino experiment (KATRIN) aims to determine the effective electron (anti)-neutrino mass with a sensitivity of 0.2eV/c$$^2$$ 2 by precisely measuring the endpoint region of the tritium $$\beta $$ β -decay spectrum. It uses a tandem of electrostatic spectrometers working as magnetic adiabatic collimation combined with an electrostatic (MAC-E) filters. In the space between the pre-spectrometer and the main spectrometer, creating a Penning trap is unavoidable when the superconducting magnet between the two spectrometers, biased at their respective nominal potentials, is energized. The electrons accumulated in this trap can lead to discharges, which create additional background electrons and endanger the spectrometer and detector section downstream. To counteract this problem, “electron catchers” were installed in the beamline inside the magnet bore between the two spectrometers. These catchers can be moved across the magnetic-flux tube and intercept on a sub-ms time scale the stored electrons along their magnetron motion paths. In this paper, we report on the design and the successful commissioning of the electron catchers and present results on their efficiency in reducing the experimental background.


Author(s):  
D. DOWSON ◽  
G.R. HIGGINSON

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