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1 n all branches of catalysis, including bio-, electro-, and photocatalysis.
2  and nano-electromechanical switches or with electro- and all-optical beam steering which have direct
3                      Simultaneously recorded electro- and impedance cardiogram (dZ/dt) along with art
4 ntal 'brain states', measured using combined electro- and magneto-encephalography (EMEG), generated a
5                                              Electro- and magneto-optical phenomena play key roles in
6 rms of afferentation, the pretectum receives electro- and mechanoreceptive inputs in addition to reti
7 nical systems with potentially game-changing electro- and opto-mechanical properties, however, the en
8                The Pt-acetylide segments are electro- and photoactive, and they serve as conduits for
9  understanding the fundamental principles of electro- and photocatalysis, as well as for developing h
10 ow structures find in the emerging fields of electro- and photocatalysis, particularly in the context
11  on covalently bonded materials relevant for electro- and photocatalysis.
12    In the M-ITS-cg3 system we can tailor the electro- and photocatalytic properties of chalcogels thr
13 f the metals) are becoming ubiquitous, from (electro-)catalysis to biomedical applications, due to th
14  various important nanoceramics (e.g., bio-, electro-, magnetic), are discussed.
15 oscillatory phenomena, measured in humans by electro- or magnetoencephalography (EEG/MEG).
16 talyst for hydrogen production from water by electro- or photocatalysis is of current scientific and

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