Earth’s Newest Superhero: Ionospheric Earthquake Prediction‚ How it May Change the Lives of Those Effected Abstract Making an earthquake forecast that is successful is still one of the biggest challenges before the scientists. Losses caused by earthquakes alone are greater than the loss caused by any other natural calamity. Many attempts have been made from ancient times to predict seismic events‚ but success has not been achieved yet. This is about to change with the study
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Reflection on Japanese earthquake After watching the news about the catastrophic earthquake in Japan these days‚ I was overwhelmed with a range of emotions: anxiety‚ depression‚ grief‚ confusion and shock. Like a lot of people‚ I was stunned by percussive images of the ruins of buildings and the bodies of casualties. I felt sorry for the dead. Meanwhile‚ I was deeply touched by those survived. Instead of being thrown into panic‚ the Japanese faced up to the catastrophe with dispassion and composure
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Committee of Experts to examine the seismic problem and make appropriate recommendations. The Committee proposed a zoning map of Bangladesh in the same year. According to Bangladesh National Building Code (BNBC‚ 1993)‚ Bangladesh is divided into 3 earthquake zones (Figure- 6): Zone –1: the less risky zone. The Zone-1 comprising the southwestern part of Bangladesh (Jessore‚ Khulna and Barisal Districts) is seismically quiet‚ with an estimated basic seismic co-efficient of 0.04. Zone–2: medium vulnerable
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Kobe Earthquake Essay Write a 700 word essay with the title: ‘What were the primary and secondary effects of the Kobe earthquake and why do you think it had such a big impact?’ Tips: Break your essay into 4 main paragraphs. These should cover the following things: Paragraph 1 − Introduce where Kobe is − Explain a few things about the city − Explain why the Earthquake happened i.e type of plate boundary etc Paragraph 2 − Explain what a primary hazard is − Explain each of
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your head so as to keep it lower than the back. If possible‚ keep your hands above your head while you bend. Avoid stairs Never go to the stairs as this is the first part of a building to be damaged. Even if they are not destroyed by the earthquake‚ they may well collapse with the weight of panicking people attempting to flee down them. Avoid the bottom floor The higher you are in a building the less weight will be crushing down upon you and the safer you will be. Avoid doorways
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2011 Tōhoku earthquake and tsunami Name of Student Name of Instructor Date Contents Introduction 3 Impacts of the Disaster 4 Ethical and Social Issues 6 References 13 Introduction The 2011 earthquake and tsunami that hit Japan were considered as one of the worst disasters that hit any country in the world. This disaster also affected various parts in Japan particularly the northern areas like the Ibaragi‚ Fukushima‚ Miyagi‚ and Sanriku. Disaster agencies have measured the 2011
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OF TECHNOLOGY‚ NAMAKKAL 636058. E-Mail: b.dineshcivil@gmail.com Ph. no : 9597138821 1 EARTHQUAKE RESISTANT STRUCRURES ABSTRACT “Buildings are the Worst Killers than the Earthquake”. By using appropriate Earthquake resistance design we can ultimately reach our goal. India and other parts of the world are prone to frequent earth quakes. It makes a great attention to the scientist & research scholars. It’s not able to control the earthquake but we can make suitable design. Advance technology is
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Gujarat earthquake The 2001 Gujarat earthquake occurred on January 26‚ 2001‚ at 03:17 UTC‚ and coincided with the 51st celebration of India’s Republic Day. The location of the epicentre was Bhuj (23.6° N 69.8° E) Gujarat‚ India. With a moment magnitude (Mw) of between 7.6 and 8.1‚ the quake killed more than 20‚000 people and injured another 167‚000 and destroyed near a million homes throughout Gujarat and parts of eastern Pakistan.[3] The earthquake is considered an intraplate earthquake because
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Investigations of past and recent earthquake damage have illustrated that the building structures are vulnerable to severe damage and/or collapse during moderate to strong ground motion. Among the possible structural damages‚ seismic induced pounding has been commonly observed in several earthquakes. A parametric study on buildings pounding response as well as proper seismic hazard mitigation practice for adjacent buildings is carried out. Three categories of recorded earthquake excitation are used for input
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1)Abstract 2)Introduction 3)Causes of earthquakes 4)Basic terminology: a)Hypocentre‚ b)Epicentre c)Focal depth 5)Earthquake size a)Magnitude b)Intensity 6) Earthquake hazard a)Primary effects b)Secondary effects 7)Earthquake loads on buildings 8)How Buildings Respond to Earthquakes 9)Common Modes of Failure a)Structural
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