scholarly journals Researchers Reproduce Processes Behind Astrophysical Shocks

Eos ◽  
2019 ◽  
Vol 100 ◽  
Author(s):  
Rachel Crowell

Studying shock precursors in a laboratory setting enables researchers to take a different look at the precursors’ properties and the physics behind them.

2018 ◽  
Author(s):  
David Thomas Mellor ◽  
Catherine Tarsiewicz ◽  
Rebecca Jordan

Females of a widespread species of the rock‐dwelling haplochromine cichlids of Lake Malawi, Maylandia zebra, show preference for males that successfully evict intruding males from their territory. This behaviour, experimentally induced by the investigators in a laboratory setting, was also preferred over males that were not permitted to interact with any other individual.


2021 ◽  
Vol 252-253 ◽  
pp. S15
Author(s):  
Denise I Quigley ◽  
Zoe K Lewis ◽  
Timothy Tidwell ◽  
Adam Clayton ◽  
Brandon Chandler ◽  
...  

Biomedicines ◽  
2021 ◽  
Vol 9 (8) ◽  
pp. 884
Author(s):  
Hideyuki Maeda ◽  
Noritoshi Fukushima ◽  
Akihiro Hasumi

Zebrafish are easy to breed in a laboratory setting as they are extremely fertile and produce dozens of eggs per set. Because zebrafish eggs and the skin of the early-stage larvae are transparent, their embryos and the hearts and muscles of their larvae can be easily observed. Multiple rapid analyses of heart rate and behavior can be performed on these larvae simultaneously, enabling investigation of the influence of neuroactive substances on abnormal behavior, death, and associated pathogenetic mechanisms. Zebrafish larvae are becoming increasingly popular among researchers and are used in laboratories worldwide to study various vertebrate life phenomena; more experimental systems using zebrafish will undoubtedly be developed in the future. However, based on the available literature, we believe that the conceptualization of a protocol based on scientific evidence is necessary to achieve standardization. We exposed zebrafish larvae at 6–7 days post-fertilization to 50 repeated light–dark stimuli at either 15-min or 5-min intervals. We measured the traveled distance and habituation time through a video tracking apparatus. The traveled distance stabilized after the 16th repetition when the zebrafish were exposed to light–dark stimuli at 15-min intervals and after the 5th repetition when exposed at 5-min intervals. Additionally, at 15-min intervals, the peak of the traveled distance was reached within the first minute in a dark environment, whereas at 5-min intervals, it did not reach the peak even after 5 min. The traveled distance was more stable at 5-min intervals of light/dark stimuli than at 15-min intervals. Therefore, if one acclimatizes zebrafish larvae for 1 h and collects data from the 5th repetition of light/dark stimuli at intervals of 5 min in the light/dark test, a stable traveled distance result can be obtained. The establishment of this standardized method would be beneficial for investigating substances of unknown lethal concentration.


2021 ◽  
pp. 014920632199681
Author(s):  
Ronald Bledow ◽  
Jana Kühnel ◽  
Mengzi Jin ◽  
Julius Kuhl

When the social fabric of organizations limits individual autonomy, new ideas are needed that satisfy a person’s will as well as the constraints imposed by the social context. To explain when people achieve this synthesis and display creativity under low job autonomy, we examine the influence of their action-state orientation. The theory of action versus state orientation contrasts two responses people display when faced by a situation that conflicts with their will. An action-oriented response entails that people readily disengage from processing the situation and initiate goal-striving, while a state-oriented response entails that people remain focused on the situation. We argue that creativity under low job autonomy requires the integration of the competing processes underlying action and state orientation and is most frequently displayed by people in the midrange of the action-state orientation continuum. We test this theorizing with three studies. In a constrained laboratory setting, we induced a focus on an unwanted situation and demonstrated an inverted-U-shaped relationship between action-state orientation and creativity. A field study showed that the inverted-U-shaped relationship between action-state orientation and daily self-reports of creativity was strongest under low job autonomy and disappeared under high job autonomy. A multisource study replicated and extended these relationships using managerial ratings of creativity.


2005 ◽  
Vol 70 (5) ◽  
pp. 823-842 ◽  
Author(s):  
Daniel Stewart

Despite a fair amount of conjecture regarding the circumstances that lead to the generation of status orders, most of the previous literature in this area typically has studied the effects of social cues within a laboratory setting. This article analyzes the evolution of the status hierarchy within a large-scale, natural setting. The results of empirical analyses assessing a large online community of software developers show that in the process of status attainment, community members tend to evaluate a focal actor's reputation according to publicly available social references. Ironically, these same social references also work to constrain an actor's status mobility.


Author(s):  
A. Lipchitz ◽  
Lilian Laurent ◽  
G. D. Harvel

Several Generation IV nuclear reactors, such as sodium fast reactors and lead-bismuth fast reactors, use liquid metal as a coolant. In order to better understand and improve the thermal hydraulics of liquid metal cooled GEN IV nuclear reactors liquid metal flow needs to be studied in experimental circulation loops. Experimental circulation loops are often located in a laboratory setting. However, studying liquid metal two phase flow in laboratory settings can be difficult due to the high temperatures and safety hazards involved with traditional liquid metals such as sodium and lead-bismuth. One solution is to use a low melt metal alloy that is as benign as reasonably achievable. Field’s metal is a eutectic alloy of 51% Indium, 32.5% Bismuth and 16.5% Tin by weight and has a melting point of 335K making it ideal for use in a laboratory setting. A study is undertaken to determine its suitability to use in a two-phase experimental flow loop enhanced by magnetohydrodynamic forces. The study investigated its reactivity with air and water, its ability to be influenced by magnetic fields, its ability to flow, and its ease of manufacture. The experiments melted reference samples of Field’s metal and observed its behaviour in a glass beaker, submerged in water and an inclined stainless steel pipe. Then Field’s metal was manufactured in the laboratory and compared to the sample using the same set of experiments and standards. To determine Field’s metal degree of magnetism permanent neodymium magnets were used. Their strength was determined using a Gaussmeter. All experiments were recorded using a COHU digital camera. Image analysis was then performed on the video to determine any movements initiated by the magnetic field forces. In conclusion, Field’s metal is more than suitable for use in experimental settings as it is non-reactive, non-toxic, simple to manufacture, easy to use, and responds to a magnetic force.


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