The Unity of Science Movement and the United States

2021 ◽  
pp. 303-307
Author(s):  
Charles W. Morris
1988 ◽  
Vol 53 (1) ◽  
pp. 80-91 ◽  
Author(s):  
Patrick Suppes

In his published work and even more in conversations, Tarski emphasized what he thought were important philosophical aspects of his work. The English translation of his more philosophical papers [56m] was dedicated to his teacher Tadeusz Kotarbiński, and in informal discussions of philosophy he often referred to the influence of Kotarbiński. Also, the influence of Leśniewski, his dissertation adviser, is evident in his early papers. Moreover, some of his important papers of the 1930s were initially given to philosophical audiences. For example, the famous monograph on the concept of truth ([33m], [35b]) was first given as two lectures to the Logic Section of the Philosophical Society in Warsaw in 1930. Second, his paper [33], which introduced the concepts of ω-consistency and ω-completeness as well as the rule of infinite induction, was first given at the Second Conference of the Polish Philosophical Society in Warsaw in 1927. Also [35c] was based upon an address given in 1934 to the conference for the Unity of Science in Prague; [36] and [36a] summarize an address given at the International Congress of Scientific Philosophy in Paris in 1935. The article [44a] was published in a philosophical journal and widely reprinted in philosophical texts. This list is of course not exhaustive but only representative of Tarski's philosophical interactions as reflected in lectures given to philosophical audiences, which were later embodied in substantial papers. After 1945 almost all of Tarski's publications and presentations are mathematical in character with one or two minor exceptions. This division, occurring about 1945, does not, however, indicate a loss of interest in philosophical questions but is a result of Tarski's moving to the Department of Mathematics at Berkeley. There he assumed an important role in the development of logic within mathematics in the United States.


2015 ◽  
Vol 1 (4) ◽  
pp. 46-70 ◽  
Author(s):  
Sarah Murray

Scholarly histories of Betty Crocker in the United States present the fictional General Mills character as a model home economist of the domestic science movement and the foremost illustration of midcentury “live trademark” consumer marketing. Yet it was the medium specificity of radio, and the sonic and nonsonic qualities of disembodiment required to sustain a live trademark, that solidified Betty's place in women's home service programming. Betty Crocker's on-air persona is underexplored and formative in the history of golden-age radio. How did radio make Betty, and how did Betty make radio? This article uses archival documents, listener mail, and surviving broadcasts to build a historiography of a distinctly sonic brand. While the on-air Betty Crocker was a cheerful purveyor of homemaking advice, backstage was a concentrated labor force of real women sustaining a radio-dependent brand identity through the aural, written, and physical personification of a beloved national figure.


2020 ◽  
Vol 24 (2) ◽  
pp. 32-58
Author(s):  
Rolf Swensen

After the passing in 1910 of Mary Baker Eddy, founder of the rapidly increasing Christian Science movement, the governing Christian Science Board of Directors of The Mother Church in Boston faced the daunting task of unifying the sometimes unruly and overly exuberant members of a faith noted for its efforts to reintroduce healing to the religious scene. This essay demonstrates that over the next fifteen years the Directors skillfully consolidated their authority and so established centralized control over the fastest-growing religious group in the United States. Divisive litigation between the Directors and the independent-minded Trustees of the Christian Science Publishing Society, 1919–1921, was resolved in favor of the Directors and so provided the capstone for their efforts to bring order to the new faith. In their actions, the Directors often followed business and societal practices, as a means of attaining routinization of charisma.


Author(s):  
A. Hakam ◽  
J.T. Gau ◽  
M.L. Grove ◽  
B.A. Evans ◽  
M. Shuman ◽  
...  

Prostate adenocarcinoma is the most common malignant tumor of men in the United States and is the third leading cause of death in men. Despite attempts at early detection, there will be 244,000 new cases and 44,000 deaths from the disease in the United States in 1995. Therapeutic progress against this disease is hindered by an incomplete understanding of prostate epithelial cell biology, the availability of human tissues for in vitro experimentation, slow dissemination of information between prostate cancer research teams and the increasing pressure to “ stretch” research dollars at the same time staff reductions are occurring.To meet these challenges, we have used the correlative microscopy (CM) and client/server (C/S) computing to increase productivity while decreasing costs. Critical elements of our program are as follows:1) Establishing the Western Pennsylvania Genitourinary (GU) Tissue Bank which includes >100 prostates from patients with prostate adenocarcinoma as well as >20 normal prostates from transplant organ donors.


Author(s):  
Vinod K. Berry ◽  
Xiao Zhang

In recent years it became apparent that we needed to improve productivity and efficiency in the Microscopy Laboratories in GE Plastics. It was realized that digital image acquisition, archiving, processing, analysis, and transmission over a network would be the best way to achieve this goal. Also, the capabilities of quantitative image analysis, image transmission etc. available with this approach would help us to increase our efficiency. Although the advantages of digital image acquisition, processing, archiving, etc. have been described and are being practiced in many SEM, laboratories, they have not been generally applied in microscopy laboratories (TEM, Optical, SEM and others) and impact on increased productivity has not been yet exploited as well.In order to attain our objective we have acquired a SEMICAPS imaging workstation for each of the GE Plastic sites in the United States. We have integrated the workstation with the microscopes and their peripherals as shown in Figure 1.


Sign in / Sign up

Export Citation Format

Share Document