EEN 110: CONCEPTS IN ENVIRONMENTAL EDUCATION AND SUSTAINABLE DEVELOPMENT
| Institution | UNIVERSITY |
| Course | BACHELOR OF EDUCATIO... |
| Year | 1st Year |
| Semester | Unknown |
| Posted By | stephen oyake rabilo |
| File Type | |
| Pages | 90 Pages |
| File Size | 573.22 KB |
| Views | 7367 |
| Downloads | 2 |
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Description
The term environment comes from a French word ‘environmer’ meaning the surrounding. It is
perceived as that part of the world with which humans interact, a sum of the total natural and
socio components which are or may be in direct interaction with humans. The environment is
also seen as a social construct made up of four dimensions; the biophysical, social, economic
and political dimensions. The environment with its dimensions form a system whose dimensions
interact affect and is affected by other dimensions. When any of the dimensions is affected
negatively or positively the entire environment is affected. Environment is a system made up of
components that interact with each other, the environment is complex system affecting the
development of humanity, and it provides resources for economic growth and for ecological and
social wellbeing.
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SZL 2111: HIV/AIDs -Lesson 9
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General introduction: Public health and hygiene, human reproductive system, sex and sexuality. History of sexually transmitted diseases (STDs); History of Human Immunodeficiency virus/Acquired Immune deficiency Syndrome (HIV/AIDS), Comparative information on trends, global and local distribution, Justification of importance of course. Biology of HIV/AIDS; Overview
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SZL 2111: HIV/AIDs - Lesson 10
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General introduction: Public health and hygiene, human reproductive system, sex and sexuality. History of sexually transmitted diseases (STDs); History of Human Immunodeficiency virus/Acquired Immune deficiency Syndrome (HIV/AIDS), Compara-
tive information on trends, global and local distribution, Justification of importance of course.
38 Pages
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SMA 2104: Mathematics for Sciences - Course Outline
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This unit aims at providing a good foundation in mathematics for students who plans to do more specialized work in the university, especially in the Computing, Medicine, Engineering, etc.
3 Pages
8531 Views
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266.54 KB
SMA 2104: Mathematics for Sciences - Lesson 1 Quadratic equations
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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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SMA 2104: Mathematics for Sciences - Lesson 2 Algebra
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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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344.76 KB
SMA 2104: Mathematics for Sciences - Lesson 3 Sequences and series
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Upon completing this topic, you should be able to:
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325.42 KB
SMA 2104: Mathematics for Sciences - Lesson 4 Factorisable polynomials
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Upon completing this topic, you should be able to factorise and solve polynomials of degree higher than 2
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277.4 KB
SMA 2104: Mathematics for Sciences - Lesson 5 Permutations and Combination
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Permutations and Combination
Permutations - This is defined as the number of different ways of arranging different objects in order.
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273.38 KB
SMA 2104: Mathematics for Sciences - Lesson 6 Binomial expansion
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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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282.79 KB
SMA 2104: Mathematics for Sciences - Lesson 7 Probability
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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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8390 Views
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395.57 KB