Nehal Fenster Subject: The Solar System Grade Level: Kindergarten Time Allotted: 45 minutes Objective: Students will be able to identify the objects in our Solar System. Students will be able to identify the characteristics of each planet in the Solar System. Students will be able to know why Earth is the only planet that has life. Students will learn how to help protecting Planet Earth. Standards: ISTE Standards Engage students in exploring real-world issues and solving
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First slide: The purpose of “Solar paint” invention is to generate inexpensive electricity because various efforts have been made for this kind of power generation over the previous few decades. It is an environment friendly technology which has eliminated the need of solar cell. It is completely reasonable and sustainable. Solar paint is consisted of organic solar cell paint. These organic solar cells are protected from water through ecofriendly synthetic sheets for example PET and therefore
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Energy Outline A. Benefits Of Solar Energy • Does not release green house gases • Production of solar energy does not produce smoke‚ gas‚ or any other chemical byproducts • Solar energy contributes to about 4 percent of the world’s electricity • Italy’s Montalto di Castro solar park: o good example of how solar contributes to the decrease in emissions o Decreases the carbon emissions by about 20‚000 tons per year compared to fossil fuel energy production. • Money! o Except for the initial
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PASSIVE SOLAR INTRODUCTION Passive solar is a “GREEN BUILDING “technique‚ which depends on natural convection process rather than mechanical transmitting source‚ which captures the heat energy of sun and delivers it during winter and pumps out the heat in summer‚ using heat distribution methods. Some of the heat distribution methods are Convection‚ Conduction‚ and Radiation. However components of passive solar heating are‚ the aperture area of the house‚ absorber area of the house‚ thermal mass of
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has produced energy for billions of years. Solar energy is the sun’s rays (solar radiation) that reach the Earth. This energy can be converted into other forms of energy‚ such as heat and electricity. * In the 1830s‚ the British astronomer John Herschel famously used a solar thermal collector box (a device that absorbs sunlight to collect heat) to cook food during an expedition to Africa. Today‚ people use the sun’s energy for lots of things. solar energy can be used to: * Heat water — for
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Solar Energy Solar energy in one form or another is the source of nearly all energy on the earth. Humans‚ like all other animals and plants‚ rely on the sun for warmth and food. However‚ people also harness the sun’s energy in many other different ways. For example‚ fossil fuels‚ plant matter from a past geological age‚ is used for transportation and electricity generation and is essentially just stored solar energy from millions of years ago. Similarly‚ biomass converts the sun’s energy into a
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This article is about all uses of solar energy. For the journal‚ see Solar Energy Journal. The 19.9 MW Gemasolar solar plant in Spain features 15 hours of storage and can supply power 24 hours a day. Solar energy‚ radiant light and heat from the sun‚ has been harnessed by humans since ancient times using a range of ever-evolving technologies. Solar energy technologies include solar heating‚ solar photovoltaics‚ solar thermal electricity‚ solar architecture and artificial photosynthesis‚ which
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reduced surface temperature. They usually appear as pairs‚ with each sunspot having the opposite magnetic pole to the other.[1] Although they are at temperatures of roughly 3000–4500 K (2700–4200 °C)‚ the contrast with the surrounding material at about 5‚780 K (5‚500 °C) leaves them clearly visible as dark spots‚ as the luminous intensity of a heated black body (closely approximated by the photosphere) is a function of temperature to the fourth power. If the sunspot were isolated from the surrounding
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com/reports/1285411/ Analysis of Solar Energy Industry in India & Its Future Prospects Description: The Indian solar energy sector has been growing rapidly‚ in the past few years‚ majorly due to Government’s initiatives such as tax exemptions and subsidies. Due to technical potential of 5‚000 trillion kWh per year and minimum operating cost‚ Solar Power is considered the best suited energy source for India. Today the Solar power‚ has an installed capacity of 9.84 MW which is about less than 0.1 percent of
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of a photovoltaic structure (solar panel and inverter) the article presents potential social impacts related with photovoltaic technology as the outcome of a preliminary desk-based research that is part of a social impact assessment of the technology. Photovoltaic technology is close related with the electronic industry where we can find severe social impacts throughout the supply chain from raw material extraction to disposal. In the PV case‚ the manufacture of solar cells involves several toxic
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