Safety means protecting ourselves from any danger that may hurt us or endanger to our lives. Unsafe practice is a great peril to both life and property. A two wheeler rider who rides recklessly not only risks his own life‚ but also the other road users. School children getting run over by their same school vans or getting knocked down while crossing the road or getting drowned in die pond or falling from high places or getting electrocuted and so on; such news appear in the newspapers. This is
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Though the safety of a person is primarily individual in nature‚ responsibility to maintain it lies not only to the environment he belongs to but also to his behavioural practice . Most of the accident occurs either due to hostile environment or due to unsafe action. By systematic approach‚ the environment can be made conducive. But the circle of safety will not be complete unless the behaviour of the participants are controlled or moulded. So‚ the behaviour of an individual and that of the team
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ELECTRICAL CONDUCTIVITY IN SOLUTION REPORT By: Dwinita Ayuningtyas ( X2 / 10) Elizabeth Irianti ( X2 / 10) M. Ariefur Rohman ( X2 / 10) Richa Wahyu A. ( X2 / 10) Tiara Faradina P. ( X2 / 10) Yanuar Alfa T.S. ( X2 / 10) [pic] Worship and praise we prayed the presence of god almighty who has guided and directed us‚ so we can resolve this chemical report. We make this report to refine the experiment on the Electrical Conductivity In Solution we’ve done a few days ago
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Rayana Holmes Safety Reflection Paper What is safety? Can any one definition truly define what safety is and how do we know when we are safe? Safety is an ongoing concern in the world. No one should ever have to go somewhere and feel unsafe. As much as we all like to think we are safe‚ they are many times when we are in our comfort zones but we may not necessarily be safe. When you are in places where there are large amounts of people you don’t always think of the dangers that could lurk around
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Electronics and Electrical Engineering Course Structure and Syllabus for BTech in Electronics and Electrical Engineering (to be applicable from 2010 batch onwards) Course No. CH101 CH110 EE101 MA101 ME110/ PH 110 ME 111 PH101 SA 101 Course Name Semester - 1 Chemistry Chemistry Laboratory Electrical Sciences Mathematics - I Workshop /Physics Laboratory Engineering Drawing Physics - I Physical Training -I NCC/NSO/NSS 3 0 3 3 0 0 2 0 0 11 Semester 3 MA201 EE200 EE201 EE220 HS2xx EE202 SA201 Mathematics
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CHAPTER 1 ELECTRICAL FORMULAS OHM’S LAW/POWER FORMULAS R x I2 E x I P R P E E2 RxI R P I P x R E I P I E R E R P I2 E2 P P = Power = Watts R = Resistance = Ohms I = Current = Amperes E = Force = Volts 1-1 OHM’S LAW DIAGRAM AND FORMULAS E I E = I x R I = E ÷ R R = E ÷ I R Voltage = Current x Resistance Current = Voltage ÷ Resistance Resistance = Voltage ÷ Current POWER DIAGRAM AND FORMULAS P E I = P ÷ E E = P ÷ I P = I x E I Current = Power ÷ Voltage
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ELECTRICAL DEPARTMENT Superintendent: Mr. Antonio B. Panaligan Shift Supervisor: Rodolfo Francisco Jerome de Torres Sol Esteban Buhay Power Plant Assistant: Florencio Padilla Rodel Alfaro Arnedo Mendoza T/G & D/G Tender: Renato Morales Reynaldo Bautista Edgardo Escalona BOILERS DEPARTMENT Superintendent: Engr. Simon P. Turno III Shift Supervisor: Gerry A. Ferrer Roberto C. Alindugan Ronilo Edwardo Malabanan Assistant Supervisors: Ernie Abrenica Jayarvin Dalangin
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1. INTRODUCTION Electrical substation for distribution system is the main supply to convert the high voltage (HV) to low voltage (LV) and the place where load are distributed to the consumers. In Malaysia‚ Tenaga Nasional Berhad Distribution (TNBD) used the 33/0.433kV‚ 22/0.433kV‚ 11/0.433kV and 6.6/0.433kV voltage system for the electrical system to supply for domestic consumer and industrial consumer such as factory which will supplied directly from Transmission Main Intakes (PMU)‚ Main Distribution
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ELECTRICAL ENGINEER DESCRIPTION “Electrical engineers design‚ and evaluate the manufacture‚ testing‚ installation‚ operation‚ and maintenance of electrical and electronic components‚ equipment and systems.”1 Electrical engineers work with an array of equipment and machinery‚ such as transformers‚ switches‚ electrical appliances and types of generators‚ and are considered in fields involving communications‚ radar‚ aerospace guidance‚ medical and biomedical research
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ELECTRICAL CONDUCTORS A conductor is an object or type of material which permits the flow of electric charges in one or more directions. For example‚ a wire is an electrical conductor that can carry electricity along its length. Physics All conductors contain electrical charges‚ which will move when an electric potential difference (measured in volts) is applied across separate points on the material. This flow of charge (measured in amperes) is what is meant by electric current. In most
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