ENERGY SOURCES

Institution TVET
Course Certificate in ICT
Year 1st Year
Semester Unknown
Posted By stephen oyake rabilo
File Type pdf
Pages 11 Pages
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ENERGY SOURCES All of these different sources of energy are used to produce electricity. Types of Sources of Energy These can be broken down into renewable and non-renewable energy sources. Renewable Energy Source Renewable energy sources are natural resources that can be harnessed to generate energy in an environmentally sustainable way. These sources are replenished by natural processes and are considered a clean and green alternative to fossil fuels. Some of the most common renewable energy sources include: The major types or sources of renewable energy are: i) Solar Energy: Solar energy is harnessed from the sun's radiation using photovoltaic (PV) cells to generate electricity or solar thermal systems to produce heat for various applications. Solar panels are commonly used to capture sunlight and convert it into electricity for residential, commercial, and industrial use. ii) Wind Energy: Wind turbines capture the kinetic energy of moving air and convert it into electricity. Wind farms consist of multiple turbines and are often located in areas with consistent wind patterns. Wind energy is a significant source of electricity generation in many regions. iii) Hydroelectric Power: Hydroelectric power is generated by capturing the energy of flowing or falling water, typically in dams and reservoirs. The movement of water turns turbines, which produce electricity. Hydropower is a well-established and widely used renewable energy source. iv) Geothermal Energy: Geothermal energy is derived from the heat within the Earth's core. It is typically harnessed by tapping into underground reservoirs of hot water or steam, which can be used for heating buildings, generating electricity, or providing direct-use applications like greenhouse heating. v) Biomass Energy: Biomass energy is produced from organic materials, such as wood, agricultural residues, and organic waste. These materials can be burned directly for heat or converted into biofuels like bioethanol and biodiesel for transportation and electricity generation. vi) Ocean Energy: Ocean energy includes various forms of energy generated from the movement of tides, waves, and ocean currents. It is an emerging and still-evolving source of renewable energy with the potential for sustainable power generation near coastlines. vii)Tidal Energy: Tidal energy is generated by the rise and fall of tides in coastal areas. Turbines placed in tidal streams can capture the kinetic energy of the moving water and convert it into electricity. viii)Wave Energy: Wave energy is harnessed from the up and down movement of ocean waves. Various technologies, including oscillating water columns and point absorbers, can capture wave energy and convert it into electricity. ix) Algal Biofuel: Algae can be cultivated and converted into biofuels, such as biodiesel and bioethanol, offering a sustainable alternative to fossil fuels.
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SMA 2104: Mathematics for Sciences - Lesson 1 Quadratic equations Trending!
Upon completing this topic, you should be able to: Solve quadratic equations by factoring Learning outcomes Solve quadratic equations using the method of extraction of roots Determine the nature of the solutions to a quadratic equation Understand the logic underlying the method of completing Solve a quadratic equation using the method of completing
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By the end of this topic you should be able to; Understand the laws of indices and their application in Learning outcomes simplifying algebraic expressions. Define index, Establish the laws of indices, Solve simple problems using the laws of indices, Understand the theory of logarithms and surds and their applications in manipulating expressions.
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By the end of this topic you should be able to; Understand the laws of indices and their application in simplifying algebraic expressions. Define index, Establish the laws of indices, Solve simple problems using the laws of indices. Understand the theory of logarithms and surds and their applications in manipulating expressions. Define logarithm
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SMA 2104: Mathematics for Sciences - Lesson 3 Sequences and series Trending!
Upon completing this topic, you should be able to: Differentiate between a series and a sequence, Use Sigma notation in representing a series, Understand the properties of arithmetic and geometric progressions, Define an Arithmetic progression (A.P.), Obtain the formula for nth term and the first n terms of an A.P, Define a geometric progression (G.P.)
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SMA 2104: Mathematics for Sciences - Lesson 4 Factorisable polynomials Trending!
Upon completing this topic, you should be able to factorise and solve polynomials of degree higher than 2
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SMA 2104: Mathematics for Sciences - Lesson 5 Permutations and Combination Trending!
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SMA 2104: Mathematics for Sciences - Lesson 6 Binomial expansion Trending!
Upon completing this topic you should be able to understand the binomial theorem and it’s application in the expansion of expressions and in approximations.
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SMA 2104: Mathematics for Sciences - Lesson 7 Probability Trending!
Upon completing this topic,you should be able to;- Apply the principles of probability to solve problems in real-world contexts. Understand and use the language of probability and to compute the probabilities of composite events using the basic rules of probability.
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Upon completing this topic,you should be able to Collect, organize, and represent data, and be able to recognize and describe relationships. Apply the principles of statistics to solve problems in real world contexts. Demonstrate knowledge of statistical terms. Differentiate between the two branches of statistics. Identify types of data. Understand and use the basic measure of central tendency
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