... The enhancement is due to the resonant enhancement of the fundamental field in the cavity mode and the fulfillment of the phase matching condition at the photonic band gap edges of the photonic crystal and in the vicinity of the microcavity mode. ... The resonant THG enhancement was found in angular TH intensity spectra in the vicinity of the cavity mode and at the edges of the photonic band gap. ... Dashed lines indicate the angular shift of the THG resonance from the position of the cavity mode. ...
... concentration with respect to the anion A, calculated from the position of the elements in the Periodic Table; (b) AA(n/m') or C'C (this depends on the VECA value) which correspond to the average number of electrons 0108-7681/90/010007-17503.00 per tetrahedron available for bonds between anions or between central atoms (and/or for electron lone pairs on the central atom), respectively; and finally (c) C'AC ' which expresses the average ... No base tetrahedron with this code is possible. ...
[pic] Список профилей (специализаций) направления подготовки "специалиста" 020201 Биоинженерия и биоинформатика Обучение по направлению подготовки специалиста 020201 Биоинженерия и биоинформатика не предусматривает подготовку по специализациям. Требования к результатам освоения основной образовательной Программы Выпускник по специальности «Биоинженерия и биоинформатика» с квалификацией (степенью) специалист по биоинженерии и биоинформатике должен обладать следующими компетенциями, предусмотренным
The beamer class Manual for version 3.06. \begin{frame} \frametitle{There Is No Largest Prime Number} \framesubtitle{The proof uses \textit{reductio ad absurdum}.} \begin{theorem} There is no largest prime number. \end{theorem} \begin{proof} \begin{enumerate} \item<1-| alert@1> Suppose $p$ were the largest prime number. \item<2-> Let $q$ be the product of the first $p$ numbers. \item<3-> Then $q+1$ is not divisible by any of them. \item<1-> Thus $q+1$ is also prime and greater than $p$.\qedhere