The JUNO experiment locates in Jinji town, Kaiping city, Jiangmen city, Guangdong province. The geographic location is east longitude 112 • 31'05' and North latitude 22 • 07'05'. The experimental site is 43 km to the southwest of the Kaiping city, a county-level city in the prefecture-level city Jiangmen in Guangdong province. There are five big cities, Guangzhou, Hong Kong, Macau, Shenzhen, and Zhuhai, all in ∼200 km drive distance, as shown in figure 3.
This study conceptualizes a cultural model of parenting. It is argued that cultural models are expressed in the degree of familism, which informs socialization goals that are embodied in parenting ethnotheories. Three cultural models were differentiated a priori: independent, interdependent, and autonomous-related. Samples were recruited that were expected to represent these cultural models: German, Euro-American, and Greek middle-class women representing the independent cultural model; Cameroonian Nso and Gujarati farming women representing the interdependent cultural model; and urban Indian, urban Chinese, urban Mexican, and urban Costa Rican women representing the autonomous-related model. These a priori classifications were confirmed with data that addressed different levels of the cultural models of parenting. The authors further confirmed that socialization goals mediate between broader sociocultural orientations (familism) and parenting ethnotheories concerning beliefs about good parenting. The data reveal that the model of autonomous relatedness needs further theoretical and empirical refinement. Problems with empirical studies comparing participants with very different lifestyles are discussed.
We report on the production and characterization of liquid scintillators for the detection of electron antineutrinos by the Daya Bay Reactor Neutrino Experiment. One hundred eighty-five tons of gadolinium-loaded (0.1% by mass) liquid scintillator (Gd-LS) and two hundred tons of unloaded liquid scintillator (LS) were successfully produced from a linear-alkylbenzene (LAB) solvent in six months. The scintillator properties, the production and purification systems, and the quality assurance and control (QA/QC) procedures are described.
The discovery of the Higgs boson with its mass around 125 GeV by the ATLAS and CMS Collaborations marked the beginning of a new era in high energy physics. The Higgs boson will be the subject of extensive studies of the ongoing LHC program. At the same time, lepton collider based Higgs factories have been proposed as a possible next step beyond the LHC, with its main goal to precisely measure the properties of the Higgs boson and probe potential new physics associated with the Higgs boson. The Circular Electron Positron Collider (CEPC) is one of such proposed Higgs factories. The CEPC is an e + e − circular collider proposed by and to be hosted in China. Located in a tunnel of approximately 100 km in circumference, it will operate at a center-of-mass energy of 240 GeV as the Higgs factory. In this paper, we present the first estimates on the precision of the Higgs boson property measurements achievable at the CEPC and discuss implications of these measurements.
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