Totally Subcutaneous ICD ‘Viable Alternative’

2011 ◽  
Vol 9 (6) ◽  
pp. 19
Author(s):  
BRUCE JANCIN
2013 ◽  
Vol 61 (S 01) ◽  
Author(s):  
B Sill ◽  
L Eckardt ◽  
C Butter ◽  
M Schlüter ◽  
K Wegscheider ◽  
...  

2013 ◽  
Vol 61 (S 01) ◽  
Author(s):  
B Sill ◽  
N Gosau ◽  
A Aydin ◽  
H Reichenspurner ◽  
H Treede

Author(s):  
Golokesh Santra ◽  
Nitai Sylvetsky ◽  
Gershom Martin

We present a family of minimally empirical double-hybrid DFT functionals parametrized against the very large and diverse GMTKN55 benchmark. The very recently proposed wB97M(2) empirical double hybrid (with 16 empirical parameters) has the lowest WTMAD2 (weighted mean absolute deviation over GMTKN55) ever reported at 2.19 kcal/mol. However, our xrevDSD-PBEP86-D4 functional reaches a statistically equivalent WTMAD2=2.22 kcal/mol, using just a handful of empirical parameters, and the xrevDOD-PBEP86-D4 functional reaches 2.25 kcal/mol with just opposite-spin MP2 correlation, making it amenable to reduced-scaling algorithms. In general, the D4 empirical dispersion correction is clearly superior to D3BJ. If one eschews dispersion corrections of any kind, noDispSD-SCAN offers a viable alternative. Parametrization over the entire GMTKN55 dataset yields substantial improvement over the small training set previously employed in the DSD papers.


2019 ◽  
Author(s):  
Golokesh Santra ◽  
Nitai Sylvetsky ◽  
Gershom Martin

We present a family of minimally empirical double-hybrid DFT functionals parametrized against the very large and diverse GMTKN55 benchmark. The very recently proposed wB97M(2) empirical double hybrid (with 16 empirical parameters) has the lowest WTMAD2 (weighted mean absolute deviation over GMTKN55) ever reported at 2.19 kcal/mol. However, our xrevDSD-PBEP86-D4 functional reaches a statistically equivalent WTMAD2=2.22 kcal/mol, using just a handful of empirical parameters, and the xrevDOD-PBEP86-D4 functional reaches 2.25 kcal/mol with just opposite-spin MP2 correlation, making it amenable to reduced-scaling algorithms. In general, the D4 empirical dispersion correction is clearly superior to D3BJ. If one eschews dispersion corrections of any kind, noDispSD-SCAN offers a viable alternative. Parametrization over the entire GMTKN55 dataset yields substantial improvement over the small training set previously employed in the DSD papers.


Author(s):  
John Bishop

The argument of this chapter is that the foundational problem of evil is the existential problem of maintaining hopeful commitment to virtuous living in the face of all that may undermine human fulfilment. Dealing with this problem at the cognitive level involves commitment to a view of reality as favourable to practical commitment to ethical ideals. An intellectual problem of evil then arises to the extent that it seems that the fact of evil is evidence against the truth of the salvific worldview we are inclined to adopt for dealing with it. In relation to theism’s ‘revelatory’ worldview, this intellectual problem is expressible as an Argument from Evil. A ‘normatively relativized’ version of the Argument from Evil is proposed that seeks to exclude rational belief in the ‘personal omniGod’. As a viable alternative conception of God is possible, however, the Argument fails to justify outright atheism.


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