Colin Maclaurin

1934 ◽  
Vol 27 (3) ◽  
pp. 155-156
Author(s):  
Vera Sanford

Colin maclaurin seems to have been a prodigy in mathematics. He entered the University of Glasgow at the age of eleven and took his masters degree at fifteen. At nineteen, he earned the post of professor of mathematics at Aberdeen by competitive examination. He spent several years in travel as tutor to an English family. In 1724 he won a prize offered by the French Academy of Sciences with an essay on the percussion of bodies. In 1740, he divided a similar prize with Euler and Daniel Bernoulli, his entry being an essay on tides. In 1725 he was made the deputy of the mathematics professor at Edinburgh and later became professor of mathematics there. The Edinburgh appointment was one in which Newton was greatly interested and Ball says that “Newton privately wrote offering to bear the cost so as to enable the university to secure the services of Maclaurin.”*

2011 ◽  
pp. S1-S13 ◽  
Author(s):  
P. R. ANDJUS ◽  
S. S. STOJILKOVIC ◽  
G. CVIJIC

The founder of physiology studies in the Balkans and the pioneer of research on hypothermia, Ivan Djaja (Jean Giaja) was born 1884 in L’Havre. Giaja gained his PhD at the Sorbonne in 1909. In 1910 he established the first Chair of Physiology in the Balkans and organized the first Serbian Institute for Physiology at the School of Philosophy of the University of Belgrade. He led this Institute for more than 40 subsequent years. His most notable papers were in the field of thermoregulation and bioenergetics. Djaja became member of the Serbian and Croatian academies of science and doctor honoris causa of Sorbonne. In 1952 for the seminal work on the behavior of deep cooled warm blooded animals he became associate member of the National Medical Academy in Paris. In 1955 the French Academy of Sciences elected him as associate member in place of deceased Sir Alexander Fleming. Djaja died in 1957 during a congress held in his honor. He left more than 200 scientific and other papers and the golden DaVincian credo “Nulla dies sine experimento”. His legacy was continued by several generations of researchers, the most prominent among them being Stefan Gelineo, Radoslav Andjus and Vojislav Petrović.


Geophysics ◽  
1982 ◽  
Vol 47 (11) ◽  
pp. 1606-1606 ◽  
Author(s):  
S. Kaufman

The Consortium for Continental Reflection Profiling (COCORP) announces the availability of data packages and tapes for the Minnesota and Arkansas areas for the cost of reproduction and shipping. These data were produced by COCORP whose operation is part of the U.S. Geodynamics Project sponsored by the National Academy of Sciences and funded by the National Science Foundation. The executive group of the consortium consists of members from Cornell University, Dartmouth College, Princeton University, Rice University and the University of Wisconsin. Cornell University is the operating institution.


Geophysics ◽  
1982 ◽  
Vol 47 (10) ◽  
pp. 1484-1484 ◽  
Author(s):  
S. Kaufman

The Consortium for Continental Reflection Profiling (COCORP) announces the availability of the data package and tapes for the Oklahoma area, part II, for the cost of reproduction and shipping. These data were obtained and processed by COCORP whose operation is part of the U.S. Geodynamics Project sponsored by the National Academy of Sciences and funded by the National Science Foundation. The executive group of the consortium consists of members from Cornell University, Dartmouth College, Princeton University, Rice University, and the University of Wisconsin. Cornell University is the operating institution.


Author(s):  
Daniel R. Headrick

Not all those who contributed to the culture of information were members of the bourgeoisie. In the area of visual representation, two names—Cassini and Harrison—illustrate how widely the culture of information had spread to all classes of society. For over a century, four generations of Cassinis dominated French astronomy and cartography. The founder of this illustrious lineage, Giovanni Domenico Cassini (1625 –1712), was a professor of astronomy at the University of Bologna when he was recruited to head the Paris Observatory in 1669. He became a French citizen, changed his name to Jean-Dominique Cassini, and entered into the privileged elite of the Old Regime. At the observatory, Jean Cassini discovered the rotation of the planets and developed a method of determining longitude by sighting the moons of Jupiter. He also launched the most elaborate cartographic project of his time, the map of France known as “la carte de Cassini.” His son Jacques Cassini (1677–1756), known as Cassini II, succeeded him at the observatory and as a member of the French Academy of Sciences. Jacques carried on his father’s work of measuring the arc of the meridian—a necessary but preliminary step in constructing an accurate map of France. In this effort, which was to take fifty years, Jacques Cassini was seconded by his son César-François Cassini de Thury (1714 –1784), known (of course) as Cassini III, who was also a member of the Academy and director of the observatory. When César-François died in 1784, his son Jacques-Dominique (1748 – 1845), count of Cassini (Cassini IV), carried on as head of the observatory, member of the academy, and director of the map project. The Cassinis’ Carte de France, completed in 1793, was a masterpiece of Old Regime cartography. Jacques­ Dominique’s son Gabriel (1784 –1832) broke with the family tradition and became a botanist. In contrast to this story of distinction and privilege, John Harrison’s life was one of struggle and hardship, rewarded by success only at the very end. Harrison (1693 –1776) was the son of a carpenter who taught himself how to build clocks.


Geophysics ◽  
1984 ◽  
Vol 49 (7) ◽  
pp. 1120-1121 ◽  
Author(s):  
S. Kaufman

The Consortium for Continental Reflection Profiling (COCORP) announces the availability of the data package and tapes for the Utah area, Part I and for the Mojave, California area for the cost of reproduction and shipping. The COCORP operation is part of the U.S. Geodynamics Project sponsored by the National Academy of Sciences and funded by the National Science Foundation. The executive group of the consortium consists of members from Cornell University, Dartmouth College, Princeton University, Rice University, and the University of Wisconsin. Cornell University is the operating institution.


1995 ◽  
Vol 34 (03) ◽  
pp. 289-296 ◽  
Author(s):  
B. H. Sielaff ◽  
D. P. Connelly ◽  
K. E. Willard

Abstract:The development of an innovative clinical decision-support project such as the University of Minnesota’s Clinical Workstation initiative mandates the use of modern client-server network architectures. Preexisting conventional laboratory information systems (LIS) cannot be quickly replaced with client-server equivalents because of the cost and relative unavailability of such systems. Thus, embedding strategies that effectively integrate legacy information systems are needed. Our strategy led to the adoption of a multi-layered connection architecture that provides a data feed from our existing LIS to a new network-based relational database management system. By careful design, we maximize the use of open standards in our layered connection structure to provide data, requisition, or event messaging in several formats. Each layer is optimized to provide needed services to existing hospital clients and is well positioned to support future hospital network clients.


2004 ◽  
Vol 54 (3) ◽  
pp. 377-386
Author(s):  
Anita Pelle ◽  
László Jankovics

(1) The Halle Insitute for Economic Research (Institut für Wirtschaftsforschung Halle, IWH) in cooperation with the European University Viadrina, Frankfurt an der Oder held a conference on 13-14 May 2004 in Halle (Saale), Germany on Continuity and Change of Foreign Direct Investments in Central Eastern Europe. (Reviewed by Anita Pelle); (2) The University of Debrecen, Faculty of Economics and Business Administration in cooperation with the Regional Committee of the Hungarian Academy of Sciences and the Hungarian Economic Association organised an international symposium on the issue of Globalisation: Challenge or Threat for Emerging Economies on 29 April 2004 in Debrecen, Hungary. (Reviewed by László Jankovics)


2017 ◽  
Vol 41 (S1) ◽  
pp. s834-s834 ◽  
Author(s):  
S. Khouadja ◽  
R. Ben Soussia ◽  
S. Younes ◽  
A. Bouallagui ◽  
I. Marrag ◽  
...  

IntroductionTreatment resistance to clozapine is estimated at 40–70% of the treated population. Several clozapine potentiation strategies have come into clinical practice although often without evidence-based support.ObjectiveThe aim of our work was to identify the potentiation strategies in ultra-resistant schizophrenia depending on the subtype of schizophrenia.MethodologyThis is a prospective study conducted on patients with the diagnosis of schizophrenia, based on DSM-IV-TR criteria, and hospitalized in the psychiatric department of the university hospital in Mahdia, Tunisia. The study sample consisted of patients meeting the resistant schizophrenia criteria as defined by national institute for clinical excellence (NICE), and the prescription of clozapine for 6 to 8 weeks was shown without significant improvement.Resultswe have collected 10 patients. The mean serum level of clozapine was 462.25 mg/L. The potentiation strategies were different depending on the subtype of schizophrenia. For the undifferentiated schizophrenia, we have chosen ECT sessions. For the disorganized schizophrenia, we opted for amisulpiride and aripiprazole. For the paranoid forms, we have chosen the association of risperidone and ECT. A psychometric improvement was noted in BPRS ranging from 34 to 40%.ConclusionEvery potentiation strategy entails a cost, whether it is an additional monetary cost, adverse effects or greater stress to caregivers. The cost/benefit equation should be thoroughly evaluated and discussed before commencing a strategy.Disclosure of interestThe authors have not supplied their declaration of competing interest.


1832 ◽  
Vol 122 ◽  
pp. 539-574 ◽  

I have for some time entertained an opinion, in common with some others who have turned their attention tot he subject, that a good series of observations with a Water-Barometer, accurately constructed, might throw some light upon several important points of physical science: amongst others, upon the tides of the atmosphere; the horary oscillations of the counterpoising column; the ascending and descending rate of its greater oscillations; and the tension of vapour at different atmospheric temperatures. I have sought in vain in various scientific works, and in the Transactions of Philosophical Societies, for the record of any such observations, or for a description of an instrument calculated to afford the required information with anything approaching to precision. In the first volume of the History of the French Academy of Sciences, a cursory reference is made, in the following words, to some experiments of M. Mariotte upon the subject, of which no particulars appear to have been preserved. “Le même M. Mariotte fit aussi à l’observatoire des experiences sur le baromètre ordinaire à mercure comparé au baromètre à eau. Dans l’un le mercure s’eléva à 28 polices, et dans Fautre l’eau fut a 31 pieds Cequi donne le rapport du mercure à l’eau de 13½ à 1.” Histoire de I'Acadérmie, tom. i. p. 234. It also appears that Otto Guricke constructed a philosophical toy for the amusement of himself and friends, upon the principle of the water-barometer; but the column of water probably in this, as in all the other instances which I have met with, was raised by the imperfect rarefaction of the air in the tube above it, or by filling with water a metallic tube, of sufficient length, cemented to a glass one at its upper extremity, and fitted with a stop-cock at each end; so that when full the upper one might be closed and the lower opened, when the water would fall till it afforded an equipoise to the pressure of the atmo­sphere. The imperfections of such an instrument, it is quite clear, would render it totally unfit for the delicate investigations required in the present state of science; as, to render the observations of any value, it is absolutely necessary that the water should be thoroughly purged of air, by boiling, and its insinuation or reabsorption effectually guarded against. I was convinced that the only chance of securing these two necessary ends, was to form the whole length of tube of one piece of glass, and to boil the water in it, as is done with mercury in the common barometer. The practical difficulties which opposed themselves to such a construction long appeared to me insurmount­able; but I at length contrived a plan for the purpose, which, having been honoured with the approval of the late Meteorological Committee of this Society, was ordered to be carried into execution by the President and Council.


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