scholarly journals Incorporating the Relation into the Language?

2021 ◽  
pp. 1-29
Author(s):  
Luis Estrada-González ◽  
Alessandro Giordani ◽  
Tomasz Jarmużek ◽  
Mateusz Klonowski ◽  
Igor Sedlár ◽  
...  
Keyword(s):  

In this paper we discuss whether the relation between formulas in the relating model can be directly introduced into the language of relating logic, and present some stances on that problem. Other questions in the vicinity, such as what kind of functor would be the incorporated relation, or whether the direct incorporation of the relation into the language of relating logic is really needed, will also be addressed.

2020 ◽  
Vol 13 ◽  
Author(s):  
Sara Cesarec ◽  
Jonathan A. Robson ◽  
Laurence S. Carroll ◽  
Eric O. Aboagye ◽  
Alan C. Spivey

Background: One of the challenges in positron emission tomography (PET) is labelling complex aliphatic molecules. Objective: To develop a method of metal-catalysed radiofluorination that is site-selective and works in moderate to good yields under facile conditions. Methods: We report here on the optimisation of an aliphatic C-H to C-18F bond transformation catalysed by a Mn(porphyrin) complex. Results: The successful oxidation of 11 aliphatic molecules including progesterone are reported. Radiochemical Incorporations (RCIs) up to 69% were achieved within 60 min without the need for pre-activation or specialist equipment. Conclusion: The method features mild conditions (60 °C) and promises to constitute a valuable approach to labelling of biomolecules and drug substances.


2019 ◽  
Vol 20 (7) ◽  
pp. 1079-1095
Author(s):  
Noor Aisha Abdul Rahman

AbstractThe accommodation of religious personal law systems is an issue that has arisen in many countries with significant Muslim minorities. The types of accommodations can range from direct incorporation into the state legal system to mere recognition of religious tribunals as private organs. Different forms of accommodation raise different types of legal, social, and political issues. Focusing on the case of Singapore, I examine one form of accommodation which entails the direct incorporation of this law regulating marriage, divorce, and inheritance for Muslims into the state system. Administered by the Administration of the Muslim Law Act, 1966, the Muslim law binds Muslims unless they abjure Islam. The resulting pluralistic legal system is deemed necessary to realize the aspirations of and give respect to the Muslim minority community, the majority of whom are constitutionally acknowledged as indigenous to the country. This Article examines the ramifications of this arrangement on the rights and well-being of members of this community in the context of change. It argues that, while giving autonomy to the community to determine its personal law and advancing group accommodation, the arrangement denies individuals the right to their choice of law, a problem exacerbated by traditionalism and the lack of democratic process in this domain. Consequently, the Muslim law pales in comparison to the civil law for non-Muslims. The rise of religious resurgence since the 1970s has but compounded the problem. How the system can accommodate the Muslim personal law without compromising the rights of individual Muslims is also discussed.


2021 ◽  
Vol 9 ◽  
Author(s):  
Birthe Meineke ◽  
Johannes Heimgärtner ◽  
Alexander J. Craig ◽  
Michael Landreh ◽  
Lindon W. K. Moodie ◽  
...  

Bioorthogonal chemistry allows rapid and highly selective reactivity in biological environments. The copper-catalyzed azide–alkyne cycloaddition (CuAAC) is a classic bioorthogonal reaction routinely used to modify azides or alkynes that have been introduced into biomolecules. Amber suppression is an efficient method for incorporating such chemical handles into proteins on the ribosome, in which noncanonical amino acids (ncAAs) are site specifically introduced into the polypeptide in response to an amber (UAG) stop codon. A variety of ncAA structures containing azides or alkynes have been proven useful for performing CuAAC chemistry on proteins. To improve CuAAC efficiency, biologically incorporated alkyne groups can be reacted with azide substrates that contain copper-chelating groups. However, the direct incorporation of copper-chelating azides into proteins has not been explored. To remedy this, we prepared the ncAA paz-lysine (PazK), which contains a picolyl azide motif. We show that PazK is efficiently incorporated into proteins by amber suppression in mammalian cells. Furthermore, PazK-labeled proteins show improved reactivity with alkyne reagents in CuAAC.


2009 ◽  
Vol 62 ◽  
pp. 395-395
Author(s):  
M. Brownbridge ◽  
R.J. Townsend ◽  
T.L. Nelson ◽  
B. Gicquel ◽  
M. Gengos

The Australian pasture pest Adoryphorus couloni (redheaded cockchafer RHCC) continues to slowly spread from the Port Hills and Banks Peninsula through Christchurch towards productive agricultural land on the Canterbury Plains There are currently no products chemical or biological registered in New Zealand to control this pest In Christchurch several parks used extensively for human recreation were badly damaged by RHCC grubs in the autumn/early winter of 2008 and had to be treated with chemical insecticides (diazinon) Laboratory trials were thus carried out to assess the susceptibility of New Zealand populations of RHCC to a microbial biocontrol agent Metarhizium anisopliae DATF001 (ChaferGuard) registered in Australia Fungal activity was directly influenced by temperature and mode of application Infection and mortality occurred faster at 20C than 15C High mortality levels (90100 after 7 weeks) were obtained when larvae were treated by topical application (105 conidia/grub) or exposure to the dry ChaferGuard formulation in soil; >80 of the cadavers in these treatments were mycosed Direct incorporation of conidia into soil was the least effective treatment Grass grub (Costelytra zealandica) was unaffected by the fungus This trial confirmed the efficacy of DATF001 and its potential for use against New Zealand populations of RHCC


2008 ◽  
Vol 591-593 ◽  
pp. 673-678 ◽  
Author(s):  
Michelangelo Durazzo ◽  
Humberto Gracher Riella

The direct incorporation of Gd2O3 powder into UO2 powder by dry mechanical blending is the most attractive process for producing UO2-Gd2O3 nuclear fuel. However, previous experimental results by our group indicated that pore formation due to the Kirkendall effect delays densification and, consequently, diminishes the final density of this type of nuclear fuel. Considering this mechanism as responsible for the poor sintering behavior of UO2-Gd2O3 fuel prepared by the mechanical blending method, it was possible to propose, discuss and, in certain cases, preliminarily test feasible adjustments in fabrication procedures that would minimize, or even totally compensate, the negative effects of pore formation due to the Kirkendall effect. This work presents these considerations.


1998 ◽  
Vol 536 ◽  
Author(s):  
J.-N. Chazalviel ◽  
F. Ozanam

AbstractAs-prepared porous silicon comes out covered with covalently bonded hydrogen. This hydrogen coating provides a good electronic passivation of the surface, but it exhibits limited stability, being removed by thermal desorption or converted into an oxide upon prolonged storage in air. Starting from the hydrogenated surface, an oxide layer with good electronic properties is also obtained by anodic oxidation or rapid thermal oxidation.The hydrogenated surface may be nitridized using thermal treatments in nitrogen or ammonia. Fast halogenation of the surface may be obtained at room temperature, but the resulting coating is rapidly converted to an oxide in the presence of moisture. Many metals have been incorporated into the pores, using chemical or vacuum techniques, or even direct incorporation during porous silicon formation.More interestingly, organic derivatization may increase surface stability or provide chemical functionalities. The poor reactivity of the hydrogenated surface can be remedied by using various methods: thermal desorption of hydrogen, hydroxylation or halogenation of the surface, thermal or UV assisted reaction. However, most promising results have been obtained through either Lewis-acid catalyzed grafting or electrochemical activation of the surface. The latter method has been used for grafting formate, alkoxy, and recently methyl groups. In most of these methods, oxidation is present as a parallel path, and care must be taken if it is not desired. Also, 100% substitution of the hydrogens by organic groups has never been attained, due to steric hindrance problems. The electrochemical method appears especially fast, and has led to 80% substitution of the hydrogens by methyl groups, with no photoluminescence loss and a chemical stability increased by one order of magnitude.


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