Photosynthesis Vs. Cellular Respiration

Richard harvey concerto antico pdf to word. Concerto Antico. Copyright © 2013 Richard Harvey. Search Richard Harvey; Select Concerto Antico. Yesterday, Hans Zimmer and his co-composers, Jacob Shea and Jasha Klebe of Bleeding Fingers Music. Richard Harvey (born 25 September 1953). This is the Third Movement of Mr Harvey's Concerto Antico; the rest of Richard's concerto is equally lovely. Richard Harvey conducts the Royal Philharmonic. To convert to MP3 or many other formats. NOTE FROM Richard HARVEY Concerto Antico is a suite of tunes based on old dance and song forms from differents parts of Europe. I use the 'concerto', though, in its original sense to mean a concerted, collaborative effort, with the guitar often involved in interplay with or accompanying a variety of other instruments. Richard Harvey Concerto Antico.

Both photosynthesis and cellular respiration are the main pathways of energy transportation in organisms. However, the reactants and the products are exact opposites in photosynthesis and in cellular respiration. In photosynthesis, cells take in carbon dioxide (CO2) and water (H2O) by absorbing energy from the sun, and then the cells release oxygen (O2) and store glucose (C6H12O6). The formula of photosynthesis is: Light energy6CO2+6H2O → C6H12O6+6O2 In cellular respiration, glucose and oxygen are taken into the cells, then they are converted to carbon dioxide, water and ATP energy and some other energy. Some of the ATP energy is used in photosynthesis; a large amount of…show more content…
The light reactions also generate ATP by using chemiosmosis through a process called photosphorylation. The light energy is converted into chemical energy in the form of two compounds, which are NADPH and ATP. The Calvin cycle occurs with the incorporation of carbon dioxide into organic molecules in carbon fixation. In this process, the fixed carbon is reduced with electrons provided by NADPH. The Calvin cycle takes place during daylight hours, in which the NADPH and ATP can be provided. The Calvin cycle occurs in the stroma, while the light reactions occur in the thylakoids. In contrast, there are four metabolic stages happened in cellular respiration, which are the glycolysis, the citric acid cycle, and the oxidative phosphorylation. Glycolysis occurs in the cytoplasm, in which catabolism is begun by breaking down glucose into two molecules of pyruvate. Two molecules of ATP are produced too. Some of they either enter the citric acid cycle (Krebs cycle) or the electron transport chain, or go into lactic acid cycle if there is not enough oxygen, which produces lactic acid. The citric acid cycle occurs in the mitochondrial matrix, which completes the breakdown of glucose by oxidizing a derivative of pyruvate into carbon dioxide. The citric acid cycle produced some more ATPs and other molecules called NADPH and FADPH. After this, electrons are passed to the electron transport chain through
Cellular

Photosynthesis uses water, sunlight, and carbon dioxide from the atmosphere to create glucose molecules, and releases oxygen as a by-product. Cellular respiration uses glucose molecules and oxygen to produce ATP molecules and carbon dioxide as the by-product. Photosynthesis involves conversion of one type of energy into another: light energy.

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Introduction Cells are the basic units of life and their processes are vital to the functioning of all organism. The reactions of photosynthesis and cellular respiration are complimentary and are also the most important pathways on the Earth. Photosynthesis is a process that converts carbon dioxide into organic compounds in presence of sunlight. Cellular respiration is the set of metabolic reactions that take in cells of living organisms that convert nutrients like sugar into energy , which is known as ATP (adenosine triphosphate), and waste products. The two processes are closely related and likewise, they share many similarities and differences Processes in a Nutshell The main difference between photosynthesis and cellular respiration is that photosynthesis takes place in the chloroplast and cellular respiration takes place in the mitchondrion. Plants contain mitochondria and chloroplasts so both they may undergo both processes. However, animals and other heterotrophs undergo cellular respiration, but not photosynthesis. In a nutshell, the purpose of these processes is to convert free energy into ATP. Discovery of PhotosynthesisThe beginning of the discovery of photosynthesis began in the mid-17th century when J.B. Van Helmont carefully measured the mass of the soil used by a plant and the mass of the plant as it grew. After this noticed that the soil mass changed very little. He then hypothesized that the mass of the growing plant must come from the water.