CERN Accelerating science

000908867 001__ 908867
000908867 003__ SzGeCERN
000908867 005__ 20060612102152.0
000908867 041__ $$aeng
000908867 100__ $$aCotae, Vlad
000908867 245__ $$aLHC II system sensitivity to magnetic fluids
000908867 260__ $$c2005
000908867 520__ $$aExperiments have been designed to reveal the influences of ferrofluid treatment and static magnetic field exposure on the photosynthetic system II, where the light harvesting complex (LHC II) controls the ratio chlorophyll a/ chlorophyll b (revealing, indirectly, the photosynthesis rate). Spectrophotometric measurement of chlorophyll content revealed different influences for relatively low ferrofluid concentrations (10-30 mul/l) in comparison to higher concentrations (70-100 mul/l). The overlapped effect of the static magnetic field shaped better the stimulatory ferrofluid action on LHC II system in young poppy plantlets.
000908867 595__ $$aSIS INSP2005
000908867 595__ $$iE200512-9004111 (Compendex)
000908867 65017 $$2SzGeCERN$$aHealth Physics and Radiation Effects
000908867 690C_ $$aARTICLE
000908867 695__ $$9INSPEC$$a708-4, 701-2, 741-1, 802-2, 804-1, 741-3
000908867 695__ $$9INSPEC$$aBiosynthesis
000908867 695__ $$9INSPEC$$aChlorophyll
000908867 695__ $$9INSPEC$$aChlorophyll-ratio
000908867 695__ $$9INSPEC$$aFerrofluid-treatment
000908867 695__ $$9INSPEC$$aharvesting-complexes-LHC
000908867 695__ $$9INSPEC$$aMagnetic-field-effects
000908867 695__ $$9INSPEC$$aMagnetic-fluids
000908867 695__ $$9INSPEC$$aNucleic-acid-biosynthesis
000908867 695__ $$9INSPEC$$aNucleic-acids; Biotechnology
000908867 695__ $$9INSPEC$$aPhotosynthesis; Spectrophotometers
000908867 695__ $$9INSPEC$$aPlants-botany
000908867 700__ $$aCreanga, Ioan
000908867 773__ $$c459-462$$pJ. Magn. Magn. Mater.$$v289$$y2005
000908867 901__ $$uDivision Iasi
000908867 916__ $$sn$$w200552
000908867 960__ $$a13
000908867 961__ $$c20081118$$h1139$$lCER01$$x20051121
000908867 963__ $$aPUBLIC
000908867 970__ $$a002578787CER
000908867 980__ $$aARTICLE