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1.
Long S.P. A survey of the quantum yields of CO[2] uptake in C[3] cpecies of contrasting habitat, form and taxonomic affinity // Physiol. plant., 1990. Vol. 79, N 2.-С.130

2.
Sosik Heidi M. Absorption, fluorescence, and quantum yield for growth in nitrogen-limited Dunaliella tertiolecta // Limnol. and Oceanogr., 1991. Vol. 36, N 5.-С.910-921

3.
Angiotensin 1-7 increase quantal content and facilitation at the frog neuromuscular junction // Brain Res., 2002. Vol. 927, N 2.-С.208-211

4.
Angiotensin 1-7 increase quantal content and facilitation at the frog neuromuscular junction // Brain Res., 2002. Vol. 927, N 2.-С.208-211

5.
Assessment of photosynthetic performance of prochloron in Lissoclinum patella in hospite by chlorophyll fluorescence measurements // Plant and Cell Physiol., 1997. Vol. 38, N 8.-С.945-951

6.
Changes in the potential quantum yield of photosystem II and the integrity of cell membranes relative to the elemental content of the epilithic desert lichen Ramalina maciformis // Environ. Toxicol. and Chem., 2002. Vol. 21, N 4.-С.848-858

7.
Van der Kloot W. Cholinergic agonists decrease quantal output at the frog neuromuscular junction by targeting a calcium channel that can be blocked by 'омега'-conotoxin GVIA // J. Physiol. Proc., 1997. Vol. 504.-С.13-14

8.
Ottosen C.-O. Clonal variation in oxygen evolution in Ficus benjamina L // Photosynthetica, 1989. Vol. 23, N 4.-С.537-542

9.
Campbell Complementary chromatic adaptation alters photosynthetic strategies in the cyanobacterium Calothrix // Microbiology, 1996. Vol. 142, N 5.-С.1255-1263

10.
Campbell Complementary chromatic adaptation alters photosynthetic strategies in the cyanobacterium Calothrix // Microbiology, 1996. Vol. 142, N 5.-С.1255-1263

11.
Long Stephen P. Effect of the long-term elevation of CO[2] concentration in the field on the quantum yield of photosynthesis of the C[3] sedge, Scirpus olneyi // Plant Physiol., 1991. Vol. 96, N 1.-С.221-226

12.
Ogawa t. Effects of bleaching by nitrogen deficiency on the quantum yield of Photosystem II in Synechocystis sp. PCC 6803 revelaed by ChI fluorescence measurements // Plant and Cell Physiol., 2016. Vol. 57, N 3.-С.558-567

13.
Long S.P. Effects of long-term CO[2] elevation on quantum yield and photoinhibition of photosynthesis // Physiol. plant., 1990. Vol. 79, N 2.-С.128

14.
Peterson Richard B. Effects of O[2] and CO[2] concentrations on quantum yields of photosystems I and II in tobacco leaf tissue // Plant Physiol., 1991. Vol. 97, N 4.-С.1388- 1394

15.
Schanz Environmental effects on light utilization by phytoplankton in a meromictic alpine lake // Verh. Vol. 25. Pt 1. Congr.,Barcelona, 1992. -Stuttgart, 1993.-С.621-624

16.
Schanz Environmental effects on light utilization by phytoplankton in a meromictic alpine lake // Verh. Vol. 25. Pt 1. Congr.,Barcelona, 1992. -Stuttgart, 1993.-С.621-624

17.
Huot Estimating variability in the quantum yield of sun-induced chlorophyll fluorescence: A global analysis of oceanic waters // Remote Sens. Environ., 2013. Vol. 132.-С.238-253

18.
Winters In situ measured seasonal variations in F[v]/F[m] of two common Red Sea corals // Coral Reefs, 2006. Vol. 25, N 4.-С.593-598

19.
Winters In situ measured seasonal variations in F[v]/F[m] of two common Red Sea corals // Coral Reefs, 2006. Vol. 25, N 4.-С.593-598

20.
Candeias L.P. Ionization of purines and their nucleosides by 193 nm laster photolysis // Int. J. Radiat. Biol., 1990. Vol. 58, N 5.-С.889

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