scholarly journals Philosophy from the outside in: Rosenzweig’s critical project

2012 ◽  
Vol 23 (2) ◽  
pp. 65-76
Author(s):  
Willi Goetschel

This paper examines Rosenzweig?s philosophic project in the context of his time as a critical intervention in the discussion of the place of Jewish thought in the university and in society. If Hermann Cohen represented the first generation of Jewish philosophers claiming that participation in the university is constitutive for the institution?s claim to universalism, the second generation-represented by Martin Buber - was more diffident about the university and its openness. For Buber, literary modernism offered what the university would refuse. Disappointed about the failure of the recognition of the efforts of the previous two generations, Rosenzweig represents the third generation. He turns the situation into a creative response anchoring philosophy as a project that calls for a resolute move outside the university.

2019 ◽  
Vol 9 (3) ◽  
pp. 279-286
Author(s):  
Justin Yifu Lin

Purpose Development economics is a new sub-discipline in modern economics. The first generation of development economics is structuralism. The second generation of development economics is neoliberalism. Most developing countries followed the above two generations of development economics and failed to achieve industrialization and modernization. The purpose of this paper is to introduce the third generation of development economics, called new structural economics, which advises governments in developing countries to play a facilitating role in the development of industries in a market economy according to the country’s comparative advantages. The paper also discusses how the government may use industrial policies to play this facilitating role and some new theoretical insights from new structural economics. Design/methodology/approach The paper draws on the experiences of success and failure in developing countries to generate new understanding about the nature and causes of economic development in developing countries. Findings The structuralism failed because it ignored the endogeneity of economic structure in a country. The neoliberalism failed because it neglected the endogeneity of distortions in the transition economies. Originality/value The paper proposes new policy and theoretical framework for developing countries.


2021 ◽  
Vol 25 (1) ◽  
pp. 48-59
Author(s):  
S. M. Shcherbakov ◽  
K. K. Kalugyan ◽  
I. I. Miroshnichenko

Purpose of the study. Educational methodological activity plays an important role in the life of the university, on the one hand, it determines the content of the educational process and sets the direction of development, on the other hand, it requires a significant amount of time from teachers, staff and managers. Continuing changes in the system of Russian higher education are reflected in educational methodological activities. When introducing and refining higher education standards and other normative documents, the means of describing the educational process in educational and methodological documentation change. The composition of educational methodological documents and the requirements for them are changing. Such concepts as “competence”, “type of activity”, “tasks of professional activity”, “labor functions”, etc. appear and then transform. The present work aims to track the dynamics of these changes and assess the increase in the complexity of educational methodological support. Materials and Methods. To assess the dynamics of development of educational and methodological support, we will carry out a retrospective substantive analysis of educational and methodological support for each stage of its development, starting with the first generation of state educational standards. The analysis results will be visualized with the Entity-Relationship" diagrams, which allow reflecting the main entities of the scope, their attributes and relationships. Examples of entities are: competence, professional standard, educational result (different forms of skills), topic, module, etc. Such diagrams can be interpreted as metamodels of educational and methodological support. Next, we will carry out a comparative analysis of the obtained sequence of metamodels, which will allow us to understand the dynamics of their development. Results. A set of metamodels of educational and methodological activities was built. The dynamics of the growth of the number of entities and relationships by year was found. We also studied changes in entities and details. A set of metamodels of educational and methodological activities was built, including metamodels for the following stages: state educational standards of the first generation, second generation, federal state educational standards or the third generation, generation 3+, generation 3 ++. If the first two models are characterized by relative simplicity, then the standards of the third generation required the development of a significant number of new entities associated with competencies, and another increase in complexity is observed for generation 3 ++, which is associated with the introduction of professional standards. The dynamics of growth in the number of entities, attributes and especially relationships has been established. Over the past two decades, the number of entities that are used in the creation of educational and methodological support has increased from 9 to 32, and the number of connections between them from 12 to 45. Changes in individual entities and details were also studied as the metamodels of educational and methodological support developed. Conclusion. Based on the results of the analysis, describing tools for the educational and methodological support tend to become considerably more sophisticated. This is reflected in the labor costs of the formation of documents, as well as the time that must be spent by teachers and staff on studying the language of description of educational and methodological documents. Thus, there are risks of the educational and methodological support quality reducing and the risk of a gap between educational and methodological documentation and the real educational process of the university.


1965 ◽  
Vol 97 (12) ◽  
pp. 1303-1318 ◽  
Author(s):  
H. J. Herbert

AbstractIn Nova Scotia one leaf cluster with an adjoining 1 inch of twig taken from the inside of each of 10 apple trees replicated four times is an adequate sample unit to measure the density of the brown mite.The brown mite has one generation with a partial second in some orchards and one with a partial second and partial third in others. The first generation adults in the bivoltine and trivoltine populations lay summer eggs on the leaves and twigs, and diapause eggs on tin twigs. The second generation adults in the bivoltine populations lay only diapause eggs; in the trivoltine populations they lay both summer and diapause eggs. The adults of the third generation lay only diapause eggs.The brown mite is found on both the leaves and woody parts of the tree. In orchards with bivoltine populations the proportion of mites on leaves reached a peak of 80% by mid-July, but thereafter gradually decreased to 10% by the end of August. However, in orchards with trivoltine populations the proportion of mites on leaves reached a peak of 80 to 90% by mid-July, remained constant until mid-August, and thereafter decreased to approximately 40% by the end of August.The number of diapause eggs laid by adults of each generation in both the bivoltine and trivoltine populations varies widely. The eggs are deposited on the trunk as well as on the branches, with the heaviest deposition in the central area of the tree. The diapause eggs laid by adults of the first generation are the last to hatch and those laid by the third generation are the first to hatch the following spring.The factors responsible for the differences in the number of generations and in the number of diapause eggs laid are unknown.


2020 ◽  
Vol 198 ◽  
pp. 04011
Author(s):  
Yuqian Zhang

With the rapid development of technologies, the third generation semiconductor is being studied, as it is leading to the significant change in industry like the manufacture of PC, mobile devices, lighting etc. Till now, due to its irreplaceable physical characteristics, third generation semiconductor is applied to lots of fields. This paper analyzes the application of third generation semiconductor, namely, GaN and SiC. Their characteristics including advantages as well as disadvantages will be discussed through reviewing the result of relevant researches. Meanwhile, comparison between the third generation semiconductors and the second as well as the first generation semiconductors is made in this paper. Through the comparison of physical characteristics, recent marketing, production and limitations, the advantages and disadvantages of each semiconductor is analyzed and the suggestion of how to avoid the disadvantage through application is proposed. At last, the future development is predicted. According to the analysis result of this paper, silicon poses more merits. Silicon is not only cheaper but also performs better making it a preference of GaAs, and GaN in the domain of IC. The second generation semiconductor, GaAs, is widely used in the circuits and photoelectric integration. Furthermore, the third semiconductor material GaN is a promising material for power switching and communication and has the great possibility to play a crucial role in market.


2012 ◽  
Vol 49 (No. 6) ◽  
pp. 252-258 ◽  
Author(s):  
T. Samek

Cameraria ohridella Deschka et Dimic is a polyvoltine species which can complete under suitable conditions the development of as many as three generations a year. In the Czech Republic, however, the third generation suffers from high mortality due to the shortage of food and later also unfavourable weather. If the third generation is not completed the population continuity is ensured by diapausing pupae occurring in each generation. The number of diapausing pupae is determined by the actual abundance of the species and thus also by the actual damage to the horse chestnut (Aesculus hippocastanum L.) foliage. Relationships of the parameters were investigated in the first generation of C. ohridella and their intensity was studied by methods of regression analysis.


1979 ◽  
Vol 111 (8) ◽  
pp. 955-957 ◽  
Author(s):  
H. J. Herbert

AbstractThe pear rust mite, Epitrimerus pyri (Nal.), overwinters in a semi-active state in old leaf scar crevices and under bud chips of the leaf clusters. It becomes active within the bud in mid-April, as soon as the weather warms, and passes through three generations in the growing season as indicated by distinct peak egg populations observed in May, June, and July. The first generation eggs are laid within the swelling bud. The mites feed on the ventral surface of the leaves causing bronzing and on the calyx end of the fruit resulting in russeting of the epidermal tissue. Deutogynes of the third generation begin to enter hibernation by mid-August. Occasionally population levels reach economic injury level resulting in the downgrading of fruit.


2021 ◽  
Vol 11 ◽  
Author(s):  
Li Ma ◽  
Haoyang Li ◽  
Dongpo Wang ◽  
Ying Hu ◽  
Mengjun Yu ◽  
...  

PurposeCirculating cell-free DNA (cfDNA) level has been demonstrated to be associated with efficacy in first generation EGFR TKIs in non-small cell lung cancer (NSCLC). However, the role of dynamic cfDNA analysis using next-generation sequencing (NGS) in patients with subsequent third-generation EGFR TKIs remains unclear.MethodsFrom 2016 to 2019, 81 NSCLC patients with EGFR T790M mutation either in tissue or plasma who received third-generation EGFR TKIs treatment were enrolled. CfDNA were sequenced by NGS with a 425-gene panel. The association of clinical characteristics, pretreatment, dynamic cfDNA and T790M level with outcomes in patients treated with the third-generation TKIs were analyzed.ResultsIn univariate analysis, the median PFS of patients with undetectable cfDNA level during treatment was significantly longer than those with detectable cfDNA (16.97 vs. 6.10 months; HR 0.2109; P < 0.0001). The median PFS of patients with undetectable T790M level during treatment was significantly longer than those with detectable T790M (14.1 vs. 4.4 months; HR 0.2192; P < 0.001). Cox hazard proportion model showed that cfDNA clearance was an independent predictor for longer PFS (HR 0.3085; P < 0.001) and longer OS (HR 0.499; P = 0.034). The most common resistant mutations of the third-generation TKIs were EGFR C797S (24%). CDK6 CNV, GRIN2A, BRCA2, EGFR D761N, EGFR Q791H, EGFR V843I, and ERBB4 mutation genes may possibly be new resistant mechanisms.ConclusionsPatients with undetectable cfDNA during the third-generation EGFR TKI treatment have superior clinical outcomes, and dynamic cfDNA analysis by NGS is valuable to explore potential resistant mechanisms.


2020 ◽  
Vol 36 (1) ◽  
Author(s):  
Nguyen Huu Duc

This study identifies the organizational and academic characteristics of the three generations of world universities and their two transition periods. In particular, from the second-generation university (2GU) to the third-generation university (3GU), the higher education institutions have developed from a closed level to an open and flexible level of training and from single disciplines to interdisciplinary research and innovation. In terms of these academic aspects, 3GU is an iterative development of the characteristics of 1GU university, but at a higher level, more comprehensive and more thorough. About the organization, with the proposed 90-degree rotation matrix structure, the 2GU university can move from a centralized and bureaucratic management model to a high autonomy one. The subsidized financial mechanism has shifted to a competency-based competition mechanism. With that transformation, the 3GU generation university can both meet its mission as well as the requirements of industrial revolution 4.0. In particular, with the way the budget is organized into four flows of finance, the 3GU university can completely break with the direct attentions of the government. Universities become fully independent organizations with autonomy in defining their rules of operation. Instead of trying to ensure quality with its own control, the government can let the university system operate on a market competitive mechanism.


Author(s):  
В.И. Щуров ◽  
А.С. Замотайлов

Развитие первой генерации Corythucha arcuata в предгорьях и низкогорьях Северо-Западного Кавказа начинается в первых числах мая. При нижнем пороге пост-диапаузного развития имаго +11°С и при естественной длине дня ей требуется не менее 43 суток (аккумуляция 333-404 гр.-дн.). Гибель перезимовавших самок в этой зоне наблюдается к концу июня, совпадая с сокращением общей доли самок до 2-7%. В высокогорьях перезимовавшие имаго расселяются и в июне, доживая до июля на ивах и березах. Пик выхода имаго первого поколения приходится на конец июня. Массовая яйцекладка самками первого поколения (начало второго поколения) предваряется миграцией оплодотворенных самок на новые кормовые растения. Развитие преимагиальных стадий второго поколения (без смены кормовых растений) протекает с середины июня. Метаморфоз длится не менее 16-23 суток (361-430 гр.-дн.). Пик выхода имаго второго поколения в конце июля совпадает с массовым расселением, в котором всегда преобладают самки. Третье поколение развивается в августе. Метаморфоз занимает 19-28 суток (329-350 гр.-дн.). Пик выхода имаго третьего поколения приходится на первую декаду сентября. Его предваряет более ранний выход самцов, определяемый по их локальным и региональным миграциями с конца августа. Четвертое поколение является факультативным и развивается (без смены кормовых растений) с конца августа до третьей декады сентября. Развитие преимагиальных стадий этого поколения занимает не менее 26 суток (378 гр.-дн.). Последняя миграция клопов наблюдается в начале-середине октября. Самки третьего поколения первыми уходят в места зимовки в предгорьях и низкогорьях уже в середине сентября. Здесь, в дубовых лесах, зимуют имаго третьего и четвертого поколений обычно с преобладанием самок. В среднегорьях с ними могут зимовать особи-иммигранты второго поколения, но с преобладанием самцов, сохраняющимся с сентября. Development of the first generation of Corythucha arcuata in the climate of the foothills and lowlands of the Northwest Caucasus starts in the early May. With a natural day length and the threshold for post-diapause imago development of 11 °C, it requires 333-404 degree-days and at least 43 days. The death of the overwintered females in this zone is observed by the end of June, coinciding with the reduction of the total portion of females to 2-7%. In the highlands imagoes are dispersing in June as well, surviving until July on willows and birch trees. Peak of the first-generation imago outcome occurs at the end of June. Migration of fertilized females of the first generation to new forage plants is followed by mass egg laying (i.e. beginning of the second generation). During the formation of large nests in the foothills, the flight of bugs is observed even in treeless highlands. Development of the preadult stages of the second generation (without changing feed plants) takes place starting at mid-June. Metamorphosis requires 361-430 degree-days and takes at least 16-23 days. The peak of the emergence of the second generation imagoes at the end of July coincides with their dispersal, which is also dominated by females. The third generation develops in August. It requires 329-350 degree-days and takes 19-28 days. The peak of the emergence of the G3 imagoes falls on the first third of September. It is preceded by anearlier emergence of males, determined by their mass local and regional migrations since the end of August. The fourth generation is obligated and develops (without changing feed plants) from the end of August to the end of September. It requires at least 378 degree-days and takes at least 26 days. Late nymphs resulting from female immigrant of the third generation (on new trees) give imagoes only by mid-October. The last migration of bugs is observed in early to mid-October. Imagoes of the third and fourth generations with the predominance of females hibernate in the oak forests of the foothills and low-mountain. In the midlands they may be accompanied by the overwintering immigrants of the second generation, with the predominance of males, formed in September.


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