Produces 02 as a by-product [ Choose ] NADPH releases high-energy [ Choose ] electrons NADP+ picks up high-energy [ Choose ] electrons
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- The Overall Free Energy Change for Photosynthetic NADP+ Reduction What is the overall free energy change (G) for noncyclic photosynthetic electron transport? 4 (700-nm photons) + 4 (680-nm photons) + 2 H2O + 2 NADP+O2 + 2 NADPH + 2H+Match each term with the best description. ______ PGAL a. absorbs light ______ CO2 fixation b. converts light to chemical energy ______ photolysis c. self-feeder ______ ATP forms; NADPH does not d. electrons cycle back to photosystem I ______ photorespiration e. problem in C3 plants ______ photosynthesis f. Calvin-Benson cycle product ______ pigment g. water molecules split ______ autotroph h. rubisco functionMatch each with its most suitable description. _____PGAL formation a. absorbs light _____CO2 fixation b. converts light to _____photolysis chemical energy _____ATP forms; NADPH c. self-feeder does not d. electrons cycle back _____photorespiration to photosystem I _____photosynthesis e. problem in C3 plants _____pigment f. ATP, NADPH _____autotroph required g. water molecules split h. rubisco function
- In photolysis some of the energy captured by chlorophyll is used to split (a) CO2 (b) ATP (c) NADPH (d) H2O (e) both b and cWhat is the significance that the combined absorption spectra of chlorophylls a and b roughly match the action spectrum of photosynthesis? Would photosynthesis be more efficient if their individual absorption spectra coincided exactly?Which of the following is a correct step in the light-dependent reactions of the Z system? a. Light is absorbed at P700, and electrons flow through a pathway to NADP+, the final acceptor of the linear pathway. b. Electrons flow from photosystem II to water. c. NADP+ is oxidized to NADPH as it accepts electrons. d. Water is degraded to activate P680. e. Electrons pass through a thylakoid membrane to create energy to pump H+ through the cytochrome complex.
- Describe the flow of electrons through photosystems I and II in the noncyclic electron transport pathway and the products produced. Contrast this flow with cyclic electron transport.1. In the cells in the leaves of an apple tree, photosystem II replaces the electrons lost by photosystem I. A chlorophyll molecule of photosystem II absorbs two _____ and ejects two _____. These pass to the primary electron acceptor and on to an electron transport chain. The electrons pass down the chain and eventually end up replacing the two electrons lost by the chlorophyll of _____. On their way down the electron transport chain, the electrons perform important work. One of the electron carriers in the chain uses the energy released by the electrons to transport _____ ions from the _____ into the space inside the _____. This creates a buildup of H + , a concentration _____ of H + across the membrane. The H + ions then diffuse through the membrane via a protein complex called _____, which captures their energy to make _____. In photosynthesis, this chemiosmotic production of ATP is called _____. How does photosystem II replace its lost electrons? It gets them by splitting…choose letter pls 1. why is cyclic electron flow important in photosynthesis? a. generates greater amount of energy in simple but efficient pathway.b. allows the plants to conserve energy produced during photosynthesis.c. converts chemical energy from inorganic moleccules with less input of atp.d. allows the plants sensitive to light and living in low light environment to produce atp 2. which of the following does not occur during the light dependent reaction?a. photolysis of h2ob. realease of oxygenc. regeneration of co2 acceptord. phosphorylation of adp forming atp
- 1. Chlorophyll molecules in plants are found in the chloroplast: chloroplast inter membrane space thylakoid membrane stroma chloroplast inner membrane 2. Which of the following plants uses CAM photosynthesis? cactus sugarcane wheat sugar maple 3. During chemiosmosis in Photosystem II, protons are concentrated: in the thylakoids in the cytosol in the intermembrane space in the chloroplast stroma *I do not need an explanation for them, so don't write one. I just need an answer choice for each*using a 14CO2 fixation assimilation method,a plant is found to be fixing carbon at a rate of 140mgh-1 .dm-2 leaf area in the sunlight. In darkness the same plant is losing 30mgh-1.dm-2 . Calculate the photosynthetic capacity of the plant and state with reasons to which photosynthetic type the plant belongsLight energy that is capture in photosynthesis is converted to ______ energy stored in chemical bonds of molecules. Potential Sound Solar Kinetic Why do photosynthesizes contain accessory pigments in addition to chlorophyll a? To reflect different wavelengths on the exterior of the photosynthetic organism. To filter light such that only photons of the right wavelength reach chlorophyll a. To absorb wavelengths of light that chlorophyll a cannon and extend the range of the wavelengths captured. To emit energy beyond the capability of the pigment chlorophyll