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Artykuły w czasopismach na temat "Redox Reaction and Slow Learners"

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ABDULMALIK, SABITU, and TERVER FRANCIS TORPEV. "Impact of Class-Wide Peer-Tutoring Strategy on Secondary School Slow Learners' Performance in Redox Reactions in Funtua, Katsina StateNigeria." Issues and Ideas in Education 4, no. 2 (2016): 83–97. https://doi.org/10.15415/iie.2016.42007.

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The performance of senior secondary school students in chemistry has been very poor over the years in Nigeria. Teachers’ use of inappropriate instructional strategies and students varied abilities has been identified responsible for this problem. This study examined the impact of Class-Wide Peer-Tutoring Strategy on secondary school slow learners’ performance in redox reactions in Funtua Education Zone, Katsina State, Nigeria. Quasi– experimental design was adopted for the study. The study involved a population of 977 SS2 Students. A of sample of 108 slow learners drawn from two secondary scho
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SABITU, ABDULMALIK, and TORPEV TERVER FRANCIS. "Impact of Class-Wide Peer-Tutoring Strategy on Secondary School Slow Learners’ Performance in Redox Reactions in Funtua, Katsina StateNigeria." Issues and Ideas in Education 4, no. 2 (2016): 83–97. http://dx.doi.org/10.15415/iie.2016.42007.

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Thu Pham, Hien Thi, Changshin Jo, Jinwoo Lee, and Yongchai Kwon. "MoO2 nanocrystals interconnected on mesocellular carbon foam as a powerful catalyst for vanadium redox flow battery." RSC Advances 6, no. 21 (2016): 17574–82. http://dx.doi.org/10.1039/c5ra24626a.

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MoO<sub>2</sub> nanocrystals on mesocellular carbon foam are used for a high performance vanadium redox flow battery. This improves the slow reaction of the VO<sup>2+</sup>/VO<sup>2+</sup> redox couple, inducing high efficiencies with high specific capacity.
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Ayina, Bouni1* Emmanuel Mouliom Ndam2 Hippolyte Ntede Nga3 Mohamed Soudani4. "Study of the level of understanding of the student-teachers of physical sciences of the higher teacher training college of Yaounde on the notion of oxidation-reduction reaction in an acid medium." ISRG Journal of Arts Humanities & Social Sciences (ISRGJAHSS) II, no. I (2024): 154–60. https://doi.org/10.5281/zenodo.10633351.

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<em>This research aims to explore the level of understanding of future teachers of physical sciences on the nature of charge carriers exchanged when the oxidation-reduction reaction takes place in an acid medium and to identify the types of reasoning that led to the answers they propose. This is in order to know if they have the cognitive resources necessary to approach with their future learners the concept of redox reaction according to the reaction medium. To do this, 585 student-teachers of physical sciences (physics and chemistry) from the first and second cycles of the higher teacher tra
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Ševčík, P., D. Mišicák, and L’ Adamčíková. "Carbon dioxide production in the oscillating Belousov—Zhabotinsky reaction with oxalic acid." Chemical Papers 60, no. 1 (2006): 1–4. http://dx.doi.org/10.2478/s11696-006-0001-4.

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AbstractA new volumetric method for monitoring the oscillating Belousov—Zhabotinsky reaction with oxalic acid is described. While an oscillatory behavior in the potential of the Pt redox electrode at slow stirring without inert gas bubbling can be observed, a monotonous, nonoscillatory course was found both at the slow and rapid stirring rates for the carbon dioxide evolution. Possible reasons for such observations are discussed.
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Hideg, Éva, and Sándor Demeter. "Binary Oscillation of Delayed Luminescence: Evidence of the Participation of QB- in the Charge Recombination." Zeitschrift für Naturforschung C 40, no. 11-12 (1985): 827–31. http://dx.doi.org/10.1515/znc-1985-11-1212.

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Abstract The flash-induced oscillation of a slowly decaying component of delayed luminescence (half time ~ 42 s) was investigated in spinach chloroplasts for various redox states of the secondary acceptor pool (QB). In preilluminated chloroplasts (30 s light followed by 5 min dark) the slow component exhibited a period-4 oscillation as a function of flash number. Upon oxidation of a major part of the QB pool by dark-adaptation or by ferricyanide treatment of chloroplasts, the period-4 oscillation was converted into a period-2 oscillation, providing direct experimental evi­ dence of the partici
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Chen, Hao. "Study on Preparation of Slow-release Polycarboxylate Superplasticizer by Macromonomer EPEG at Room Temperature." Journal of Physics: Conference Series 2539, no. 1 (2023): 012041. http://dx.doi.org/10.1088/1742-6596/2539/1/012041.

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Abstract Slow-release polycarboxylate superplasticizer was synthetic under room-temperature conditions, a free radical copolymerization reaction occurred under the action of a redox initiator, and the optimal preparation process and temperature effect were discussed in detail. The results show that the best preparation process (EP-15) is: acid-to-ether ratio is 1.89, the amount of NaH2PO2 is 2.27%, the appropriate reaction temperature is 15-25°C, and the suitable macromonomer is EPEG-3000 of OXIRANCHEM. Tests have verified that compared to a commercially available slow-release polycarboxylate
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Br Tarigan, Endah Putri, and Gulmah Sugiharti. "Development of Guided Inquiry-Based Learner Worksheets to Improve Higher Level Thinking Skills of Learners on Redox Reaction Material." Jurnal Teknologi Pendidikan : Jurnal Penelitian dan Pengembangan Pembelajaran 9, no. 2 (2024): 301. http://dx.doi.org/10.33394/jtp.v9i2.11188.

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This research aims to: (1) knowing the level of need for guided inquiry-based Learner Worksheets (LKPD) at Imelda Medan Private High School. (2) to know the design of LKPD based on guided inquiry on redox material. (3) knowing the feasibility of LKPD according to BSNP standards. (4) knowing the improvement of students' higher-level thinking skills and. (5) knowing the students' response to the guided inquiry-based LKPD on redox reaction material that has been developed. This development was carried out using the R&amp;D method with the 4D development model (Define, Design, Develop, Disseminate
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Kweon, Hyunji, Myungeun Choi, and Jongsoon Kim. "Improved Fast-Discharging Performance and Cyclability of Oxygen-Redox-Based P3-Type Na-Layered Cathode via Vacancies in Transition Metal Layers." ECS Meeting Abstracts MA2025-01, no. 2 (2025): 116. https://doi.org/10.1149/ma2025-012116mtgabs.

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The anionic redox reaction is suggested as a promising strategy for improving the energy density of layered oxide cathodes for Na-ion batteries. However, anionic-redox-based cathode materials often encounter challenges such as slow reaction kinetics and structural deteriorization during repeated charge/discharge processes, which degrade their electrochemical performance. In this study, we introduce vacancies(□) within the transition metal layers of P3-type Mn-based layered oxides, Na0.56[Ni0.1Mn0.81□0.09]O2, to induce oxygen redox reactions and improve structural resilience. These vacancies ac
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Kim, Dooyoung, and Thomas S. Teets. "Strategies for accessing photosensitizers with extreme redox potentials." Chemical Physics Reviews 3, no. 2 (2022): 021302. http://dx.doi.org/10.1063/5.0084554.

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Photoredox catalysis has been prominent in many applications, including solar fuels, organic synthesis, and polymer chemistry. Photocatalytic activity directly depends on the photophysical and electrochemical properties of photocatalysts in both the ground state and excited state. Controlling those properties, therefore, is imperative to achieve the desired photocatalytic activity. Redox potential is one important factor that impacts both the thermodynamic and kinetic aspects of key elementary steps in photoredox catalysis. In many challenging reactions in organic synthesis, high redox potenti
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Rozprawy doktorskie na temat "Redox Reaction and Slow Learners"

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Addam, Billey Bright. "Probing learners' conceptual understanding of oxidation and reduction (redox) reactions : a case study." Thesis, Rhodes University, 2004. http://hdl.handle.net/10962/d1002950.

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The new political dispensation in South Africa has seen a lot of changes taking place. The democratic wind, which has been blowing in all spheres of the political arena, could not leave out Education. This has led to the transformation in education and the revision of the curriculum guided by the Outcomes-Based Education philosophy (OBE). Thus, require education authorities as well as educators to look at education more comprehensively. The challenge posed to educators now is to develop tools and strategies that will make learning accessible to as many learners as possible and to teach for und
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Części książek na temat "Redox Reaction and Slow Learners"

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CALZADO-ARAGÓN, Jenny, María del Carmen FUENTES-ALBARRÁN, and Fidel Benjamín ALARCÓN-HERNÁNDEZ. "Performance of a microbial fuel cell using MnO2 as cathode catalyst." In Engineering and Applied Sciences. ECORFAN, 2023. http://dx.doi.org/10.35429/h.2023.6.97.104.

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Microbial fuel cells are electrochemical devices that use microorganisms as catalysts to produce electricity. Oxygen is the most used electron acceptor in the cathodic reaction of these systems, due to its abundance in the environment and high redox potential; however, the slow kinetics in oxygen reduction constitutes a limitation. Platinum (Pt) is the most widely used catalyst to accelerate the oxygen reduction reaction, but its high cost makes its use on a large scale impossible. In this study, the performance of manganese dioxide (MnO2) as a cathodic catalyst in an H-type microbial fuel cel
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Ito, Y. N., and t. Katsuki. "Oxidation of the C=C bond." In Asymmetric Oxidation Reactions. Oxford University PressOxford, 2001. http://dx.doi.org/10.1093/oso/9780198502012.003.0003.

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Abstract Metal complexes promote catalytic epoxidation in two different ways: (i) by activation of an oxidant and subsequent migration of an oxygen from the oxidant to olefins; (ii) by oxidation of a metal ion by an oxidant to the high-valent metal oxide and subsequent oxygen transfer to olefins with the reduction of metal ion which can be reoxidized to the metal oxide in situ.The former types of reactions are catalyzed mostly by early transition metal complexes and the latter type of reactions mainly by group VII-X transition metal complexes. For example, t-butyl hydroperoxide is activated by
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Streszczenia konferencji na temat "Redox Reaction and Slow Learners"

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Yentumi, Richard, Constantin Jurischka, Bogdan Dorneanu, and Harvey Arellano-Garcia. "Optimal Design and Analysis of Thermochemical Storage and Release of Hydrogen via the Reversible Redox of Iron Oxide/Iron." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.121492.

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In this contribution, a thermodynamic model-based approach for the optimal design of a solid-state hydrogen storage and release system utilizing the reversible iron oxide/iron thermochemical redox mechanism is presented. Existing storage processes using this mechanism face significant limitations, including low hydrogen conversion, high energy input requirements, limited storage density, and slow charging/discharging kinetics. To address these challenges, a custom thermodynamic model using NIST thermochemistry data is developed, enabling an in-depth analysis of redox reaction equilibria under
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Shoesmith, D. W. "Used Fuel and Uranium Dioxide Dissolution Studies – A Review Report No.: NWMO-TR-2007-03." In CORROSION 2008. NACE International, 2008. https://doi.org/10.5006/c2008-08rts04.

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Abstract The extensive studies of used fuel dissolution inside a failed nuclear waste container have been reviewed. The primary controlling factor is the redox condition set at the fuel surface by water radiolysis, its evolution with time as radiation fields decay, and how it is influenced by the presence of oxidant scavengers, especially H2, produced by corrosion of the steel liner in the container. If the container fails early, and oxidizing conditions are established, dissolution will be a corrosion reaction driven by radiolytically-produced H2O2. As radiation fields decay and conditions be
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