1. BIOLOGICAL CLASSIFICATION Aristotle’s classification - Aristotle was the earliest to attempt a more scientific basis for classification of organisms. - He classified plants into trees‚ shrubs & herbs and animals into two groups‚ those which had red blood and those that did not. Two-kingdom classification - In Linnaeus’ time Two Kingdom classification (Kingdom Plantae & Kingdom Animalia) was developed. Drawbacks of 2-kingdom classification Prokaryotes (Bacteria‚ cyanobacteria) and eukaryotes
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stirs a demand in the main city centres. The increase in abattoirs and butcheries also signifies the business opportunity. There is also a market for sheep dung‚ which used for fertilizer as well as for research purposes aimed at producing fuel and biogas. Additionally‚ there is potential for the business to supply wool for the production of clothing and sheepskin for
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manufacturing company‚ suggests that the company use the spent grain generated through the process of beer manufacturing to create commercial products. Ramona explains how the wasted grain can be broken down through the process of fermentation to generate biogas and compounds that can be used to make personal care products and clothes. In the context of William Miller’s research‚ into which area is Ramona channeling her creativity? A. Organization creativity B. Relationship creativity C. Event creativity
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of energy which are the Solar Energy i.e. the energy from sun‚ Wind Energy‚ as the name suggests the energy from wind or the fast moving air‚ the Geothermal Energy i.e. the energy from the earth‚ energy generated from water known as hydro energy‚ biogas and many more. Which are no doubt very good energy sources and the qualities like everlasting and clean that is negligible pollution makes them the best in the lot. The present generation of energy is more from the non renewable resources which
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emissions. In Canada‚ municipal and industrial waste disposal is a considerable problem. Alberta is emerging as a major player in second-generation biofuel production from waste. Edmonton and Calgary municipal landfills employ technology to capture biogas and convert waste to useable biofuel. At an Edmonton landfill site‚ the waste to biofuel project aims to divert 30% of household waste to produce 38 million litres of viable biofuels annually for use in transport and energy. Led by Enerkem‚ this project
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Faculty of Commerce Department of Business Management Master of Commerce Degree in Strategic Management and Corporate Governance 1.2 Module : Production and Operations Management Module Code : MBM 705 NAME OF LECTURER : Mr A.Mafuka Semester 2‚ 2012 NAME : Gwyneth Ngoma Registration Number : R 12228 A Date : 31st August 2012 ASSIGNMENT 1 : Evaluate ways of reconciling capacity and demand in either a service or manufacturing organisation you are familiar with. . Submitted in partial
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with micropores‚ mesopores‚ macropores and a high surface area. In this case the iron catalyst will be supported by zeolite which is widely used as a catalyst as well as a support in various industries such as petroleum industry‚ nuclear industry and biogas industry. The main reason this support is chosen is due to its highly porous structure. Therefore zeolites are used for variety of applications. Zeolite is a crystalline type support. It has three dimensions structure hence a large surface area and
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the solid waste management in Dhaka city (volume 1). Dhaka City Corporation‚ the People’s Republic of Bangladesh. Memon‚ Mushtaq Ahmed‚ 2002: Solid Waste Management in Dhaka‚ Bangladesh Innovation in Community Driven Composting Grameen Shakti‚ 2006: Biogas Projukthi Nirdeshika
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is a leading manufacturer of gas reciprocating engines and generator sets for power generation applications ranging up to 3 megawatts. Besides the company is known for its innovative capabilities in the sector of cogeneration and the utilization of biogas and waste gases. Therefore an acquisition of Jenbacher would enable General Electric to gain the position of a market leader in this field while incorporating the know-how in order to retain the competitive advantage. Here are the most important
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The Extraction of Bio-ethanol from Apple (Malus domesticus) and Banana (Musa accuminata Colla) Peelings through the Process of Fermentation and Distillation Abstract Apple (Malus domesticus) and banana (Musa accuminata Colla) peelings are common household waste products. This study sought to extract bioethanol from these two peelings and to compare which sample can produce more bioethanol. About 400 grams of apple and banana peeling was obtained from the 1 kilogram bought from the supermarket
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