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steam locomotives
consulting engineer everard calthrop designed a 0-6-0t with klein-linder locomotives articulated coupled axles to provide a flexible wheelbase, and four were supplied by orenstein & koppel. they ran from the railway's opening in 1907 till 1982, when they were replaced by diesel engines. by 1983, all steam locomotives were phased out.
Ultimo aggiornamento 2021-04-10
Frequenza di utilizzo: 1
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scindia steam navigation company
સ્કીન્ડિયા સ્ટીમ નેવીગેશન કંપની
Ultimo aggiornamento 2021-04-10
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1829 stephenson's rocket steam locomotive
૧૮૨૯ સ્ટીફનનું રોકેટ વરાળથી ચાલતું રેલ્વે અેન્જિન
Ultimo aggiornamento 2018-12-23
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three units of gas turbine, each of 138 mw capacity. one unit of steam turbine of 241 mw capacity.
ત્રણ એકમો ગેસ ટર્બાઇન, દરેકની ક્ષમતા ૧૩૮ મેગાવોટ છે. એક એકમ સ્ટીમ ટર્બાઇન, જેની ક્ષમતા ૨૪૧ મેગાવોટ છે.
Ultimo aggiornamento 2021-04-10
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from 1979 to 1987, she was chairperson of the company, until the government took over the debt-ridden scindia steam navigation. she was later appointed as the chairperson emeritus of the company till 1992.
ઈ.સ ૧૯૭૯ થી ઈ.સ ૧૯૮૭ સુધી તેઓ કંપનીના પ્રમુખ રહ્યા. ત્યાર બાદ દેવામાં ડૂબેલીસ્કીન્ડિયા સ્ટીમ નેવીગેશન કંપનીને સરકારે પોતાને હસ્ત્ક લીધી. ત્યાર બાદ તેઓ ઈ.સ. ૧૯૯૨ સુધી તેઓ કંપનીના માનદ્ પ્રમુખ બન્યા રહ્યા.
Ultimo aggiornamento 2021-04-10
Frequenza di utilizzo: 1
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we can classify them -- harmless steam plumes, white and evanescent; polluting smokestacks, dark and persistent -- and provide policy makers with a map of neighborhood pollution.
અમે તેમને વર્ગીકૃત કરી શકીએ છીએ - હાનરહિત વરાળ પ્લમ્સ, સફેદ અને પ્રગટાવનાર; પ્રદૂષિત સ્મોકસ્ટેક, શ્યામ અને સતત - અને નીતિ ઉત્પાદકોને પડોશી પ્રદૂષણનો નકશો પ્રદાન કરો.
Ultimo aggiornamento 2020-12-03
Frequenza di utilizzo: 1
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a tornado is a violently rotating column of air that is in contact with both the surface of the earth and a cumulonimbus cloud or, in rare cases, the base of a cumulus cloud. they are often referred to as twisters or cyclones,[1] although the word cyclone is used in meteorology, in a wider sense, to name any closed low pressure circulation. tornadoes come in many shapes and sizes, but they are typically in the form of a visible condensation funnel, whose narrow end touches the earth and is often encircled by a cloud of debris and dust. most tornadoes have wind speeds less than 110 miles per hour (177 km/h), are about 250 feet (76 m) across, and travel a few miles (several kilometers) before dissipating. the most extreme tornadoes can attain wind speeds of more than 300 miles per hour (483 km/h), stretch more than two miles (3.2 km) across, and stay on the ground for dozens of miles (more than 100 km).[2][3][4] various types of tornadoes include the landspout, multiple vortex tornado, and waterspout. waterspouts are characterized by a spiraling funnel-shaped wind current, connecting to a large cumulus or cumulonimbus cloud. they are generally classified as non-supercellular tornadoes that develop over bodies of water, but there is disagreement over whether to classify them as true tornadoes. these spiraling columns of air frequently develop in tropical areas close to the equator, and are less common at high latitudes.[5] other tornado-like phenomena that exist in nature include the gustnado, dust devil, fire whirls, and steam devil; downbursts are frequently confused with tornadoes, though their action is dissimilar. tornadoes have been observed on every continent except antarctica. however, the vast majority of tornadoes occur in the tornado alley region of the united states, although they can occur nearly anywhere in north america.[6] they also occasionally occur in south-central and eastern asia, northern and east-central south america, southern africa, northwestern and southeast europe, western and southeastern australia, and new zealand.[7] tornadoes can be detected before or as they occur through the use of pulse-doppler radar by recognizing patterns in velocity and reflectivity data, such as hook echoes or debris balls, as well as through the efforts of storm spotters. there are several scales for rating the strength of tornadoes. the fujita scale rates tornadoes by damage caused and has been replaced in some countries by the updated enhanced fujita scale. an f0 or ef0 tornado, the weakest category, damages trees, but not substantial structures. an f5 or ef5 tornado, the strongest category, rips buildings off their foundations and can deform large skyscrapers. the similar torro scale ranges from a t0 for extremely weak tornadoes to t11 for the most powerful known tornadoes.[8] doppler radar data, photogrammetry, and ground swirl patterns (cycloidal marks) may also be analyzed to determine intensity and assign a ratin
ટોર્નાડો
Ultimo aggiornamento 2015-08-20
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