A beautiful shot of expanding nozzle turtles standing on a floating tree trunk in a lake on a sunny day Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-beautiful-shot-of-expanding-nozzle-turtles-standing-on-a-floating-tree-trunk-in-a-lake-on-a-sunny-day-image477084670.html
RF2JM52A6–A beautiful shot of expanding nozzle turtles standing on a floating tree trunk in a lake on a sunny day
Steam turbines; a practical and theoretical treatise for engineers and students, including a discussion of the gas turbine . Water- ^Gas Fig. 221. Diagrammatic Illustration of the Combustion Chamber and SteamCoils of a Modern Gas Turbine. bustion chamber A in Fig. 221 which is maintained at a redheat, so that the combustion is continuous. The products ofcombustion are usually cooled by water which is injected into thenozzle as in the explosion type. The heat energy in the burnedgases is converted into velocity in an expanding nozzle N and aredischarged at a high velocity upon the blades R of t Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/steam-turbines-a-practical-and-theoretical-treatise-for-engineers-and-students-including-a-discussion-of-the-gas-turbine-water-gas-fig-221-diagrammatic-illustration-of-the-combustion-chamber-and-steamcoils-of-a-modern-gas-turbine-bustion-chamber-a-in-fig-221-which-is-maintained-at-a-redheat-so-that-the-combustion-is-continuous-the-products-ofcombustion-are-usually-cooled-by-water-which-is-injected-into-thenozzle-as-in-the-explosion-type-the-heat-energy-in-the-burnedgases-is-converted-into-velocity-in-an-expanding-nozzle-n-and-aredischarged-at-a-high-velocity-upon-the-blades-r-of-t-image339365622.html
RM2AM3C8P–Steam turbines; a practical and theoretical treatise for engineers and students, including a discussion of the gas turbine . Water- ^Gas Fig. 221. Diagrammatic Illustration of the Combustion Chamber and SteamCoils of a Modern Gas Turbine. bustion chamber A in Fig. 221 which is maintained at a redheat, so that the combustion is continuous. The products ofcombustion are usually cooled by water which is injected into thenozzle as in the explosion type. The heat energy in the burnedgases is converted into velocity in an expanding nozzle N and aredischarged at a high velocity upon the blades R of t
Glass pourer flask 2nd–early 3rd century A.D. Roman Translucent pale yellow green.Rim folded out, down, over, and in; broad, flaring mouth; cylindrical neck, expanding downwards; slightly pushed-in. narrow shoulder; squat, bulbous body, drawn out on one side into slender, pointed nozzle; pushed-in bottom with traces of pontil mark.Intact, except for end of nozzle; many large and pinprick bubbles, and blowing striations; dulling, pitting, and faint iridescence on exterior, patches of thick creamy weathering and soil encrustation on interior.. Glass pourer flask 244650 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/glass-pourer-flask-2ndearly-3rd-century-ad-roman-translucent-pale-yellow-greenrim-folded-out-down-over-and-in-broad-flaring-mouth-cylindrical-neck-expanding-downwards-slightly-pushed-in-narrow-shoulder-squat-bulbous-body-drawn-out-on-one-side-into-slender-pointed-nozzle-pushed-in-bottom-with-traces-of-pontil-markintact-except-for-end-of-nozzle-many-large-and-pinprick-bubbles-and-blowing-striations-dulling-pitting-and-faint-iridescence-on-exterior-patches-of-thick-creamy-weathering-and-soil-encrustation-on-interior-glass-pourer-flask-244650-image458451168.html
RM2HHT740–Glass pourer flask 2nd–early 3rd century A.D. Roman Translucent pale yellow green.Rim folded out, down, over, and in; broad, flaring mouth; cylindrical neck, expanding downwards; slightly pushed-in. narrow shoulder; squat, bulbous body, drawn out on one side into slender, pointed nozzle; pushed-in bottom with traces of pontil mark.Intact, except for end of nozzle; many large and pinprick bubbles, and blowing striations; dulling, pitting, and faint iridescence on exterior, patches of thick creamy weathering and soil encrustation on interior.. Glass pourer flask 244650
Glass pourer flask 2nd–early 3rd century A.D. Roman, Cypriot Colorless.Thick rim, folded out, down, over and in, and pressed into broad, flaring mouth; cylindrical neck, expanding downwards to short sloping shoulder; squat, bulbous body, drawn out on one side into slender nozzle; pushed-in bottom.Complete, except for hole in body extending to nozzle; many pinprick and some large, elongated bubbles, and blowing striations; pitting, brilliant iridescence, and patches of thick creamy weathering.. Glass pourer flask. Roman, Cypriot. 2nd–early 3rd century A.D.. Glass; blown. Mid Imperial. Glass Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/glass-pourer-flask-2ndearly-3rd-century-ad-roman-cypriot-colorlessthick-rim-folded-out-down-over-and-in-and-pressed-into-broad-flaring-mouth-cylindrical-neck-expanding-downwards-to-short-sloping-shoulder-squat-bulbous-body-drawn-out-on-one-side-into-slender-nozzle-pushed-in-bottomcomplete-except-for-hole-in-body-extending-to-nozzle-many-pinprick-and-some-large-elongated-bubbles-and-blowing-striations-pitting-brilliant-iridescence-and-patches-of-thick-creamy-weathering-glass-pourer-flask-roman-cypriot-2ndearly-3rd-century-ad-glass-blown-mid-imperial-glass-image458122872.html
RM2HH98B4–Glass pourer flask 2nd–early 3rd century A.D. Roman, Cypriot Colorless.Thick rim, folded out, down, over and in, and pressed into broad, flaring mouth; cylindrical neck, expanding downwards to short sloping shoulder; squat, bulbous body, drawn out on one side into slender nozzle; pushed-in bottom.Complete, except for hole in body extending to nozzle; many pinprick and some large, elongated bubbles, and blowing striations; pitting, brilliant iridescence, and patches of thick creamy weathering.. Glass pourer flask. Roman, Cypriot. 2nd–early 3rd century A.D.. Glass; blown. Mid Imperial. Glass
Pink watering hose coild isolated on sidewalk Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/pink-watering-hose-coild-isolated-on-sidewalk-image217445832.html
RFPHNEAG–Pink watering hose coild isolated on sidewalk
Art inspired by Glass pourer flask, Mid Imperial, 2nd–early 3rd century A.D., Roman, Cypriot, Glass; blown, 2 7/8 in. (7.3 cm), Glass, Colorless. Thick rim, folded out, down, over and in, and pressed into broad, flaring mouth; cylindrical neck, expanding downwards to short sloping, Classic works modernized by Artotop with a splash of modernity. Shapes, color and value, eye-catching visual impact on art. Emotions through freedom of artworks in a contemporary way. A timeless message pursuing a wildly creative new direction. Artists turning to the digital medium and creating the Artotop NFT Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/art-inspired-by-glass-pourer-flask-mid-imperial-2ndearly-3rd-century-ad-roman-cypriot-glass-blown-2-78-in-73-cm-glass-colorless-thick-rim-folded-out-down-over-and-in-and-pressed-into-broad-flaring-mouth-cylindrical-neck-expanding-downwards-to-short-sloping-classic-works-modernized-by-artotop-with-a-splash-of-modernity-shapes-color-and-value-eye-catching-visual-impact-on-art-emotions-through-freedom-of-artworks-in-a-contemporary-way-a-timeless-message-pursuing-a-wildly-creative-new-direction-artists-turning-to-the-digital-medium-and-creating-the-artotop-nft-image462780053.html
RF2HTWCK1–Art inspired by Glass pourer flask, Mid Imperial, 2nd–early 3rd century A.D., Roman, Cypriot, Glass; blown, 2 7/8 in. (7.3 cm), Glass, Colorless. Thick rim, folded out, down, over and in, and pressed into broad, flaring mouth; cylindrical neck, expanding downwards to short sloping, Classic works modernized by Artotop with a splash of modernity. Shapes, color and value, eye-catching visual impact on art. Emotions through freedom of artworks in a contemporary way. A timeless message pursuing a wildly creative new direction. Artists turning to the digital medium and creating the Artotop NFT
Man squirting expanding foam around pipes Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/man-squirting-expanding-foam-around-pipes-image185318633.html
RFMNDYPH–Man squirting expanding foam around pipes
RMKC7BAY–Glass pourer flask, Mid Imperial, 2nd–early 3rd century A.D., Roman, Cypriot, Glass; blown, 2 7/8 in. (7.3 cm), Glass, Colorless
foam sealant can with, included in the kit, transparent plastic hose, fitted on the output nozzle. dried foam on the tube end. isolated on white back Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/foam-sealant-can-with-included-in-the-kit-transparent-plastic-hose-fitted-on-the-output-nozzle-dried-foam-on-the-tube-end-isolated-on-white-back-image217649998.html
RFPJ2PP6–foam sealant can with, included in the kit, transparent plastic hose, fitted on the output nozzle. dried foam on the tube end. isolated on white back
. Development of a portable sand trap for use in the nearshore. Littoral drift; Oceanographic instruments; Sedimentation and deposition. EXPANDING HOOD. HOOD. LENGTH Figure 13. Nozzle parameters varied in hydraulic test (after Rosati and Kraus 1988) By means of either the nozzle design or by bending the bars used to mount the nozzle to the rack, the entrance to each nozzle was positioned upstream from the rack to minimize flow disturbance caused by the mounts and rack. A prototype streamer trap rack as used in the field was employed to position nozzles at a particular elevation for hydraulic t Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/development-of-a-portable-sand-trap-for-use-in-the-nearshore-littoral-drift-oceanographic-instruments-sedimentation-and-deposition-expanding-hood-hood-length-figure-13-nozzle-parameters-varied-in-hydraulic-test-after-rosati-and-kraus-1988-by-means-of-either-the-nozzle-design-or-by-bending-the-bars-used-to-mount-the-nozzle-to-the-rack-the-entrance-to-each-nozzle-was-positioned-upstream-from-the-rack-to-minimize-flow-disturbance-caused-by-the-mounts-and-rack-a-prototype-streamer-trap-rack-as-used-in-the-field-was-employed-to-position-nozzles-at-a-particular-elevation-for-hydraulic-t-image215969420.html
RMPFA75G–. Development of a portable sand trap for use in the nearshore. Littoral drift; Oceanographic instruments; Sedimentation and deposition. EXPANDING HOOD. HOOD. LENGTH Figure 13. Nozzle parameters varied in hydraulic test (after Rosati and Kraus 1988) By means of either the nozzle design or by bending the bars used to mount the nozzle to the rack, the entrance to each nozzle was positioned upstream from the rack to minimize flow disturbance caused by the mounts and rack. A prototype streamer trap rack as used in the field was employed to position nozzles at a particular elevation for hydraulic t
Archive image from page 30 of Development of a portable sand. Development of a portable sand trap for use in the nearshore . developmentofpor00rosa Year: 1989 EXPANDING HOOD HOOD. LENGTH Figure 13. Nozzle parameters varied in hydraulic test (after Rosati and Kraus 1988) By means of either the nozzle design or by bending the bars used to mount the nozzle to the rack, the entrance to each nozzle was positioned upstream from the rack to minimize flow disturbance caused by the mounts and rack. A prototype streamer trap rack as used in the field was employed to position nozzles at a particular Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/archive-image-from-page-30-of-development-of-a-portable-sand-development-of-a-portable-sand-trap-for-use-in-the-nearshore-developmentofpor00rosa-year-1989-expanding-hood-hood-length-figure-13-nozzle-parameters-varied-in-hydraulic-test-after-rosati-and-kraus-1988-by-means-of-either-the-nozzle-design-or-by-bending-the-bars-used-to-mount-the-nozzle-to-the-rack-the-entrance-to-each-nozzle-was-positioned-upstream-from-the-rack-to-minimize-flow-disturbance-caused-by-the-mounts-and-rack-a-prototype-streamer-trap-rack-as-used-in-the-field-was-employed-to-position-nozzles-at-a-particular-image258879354.html
RMW14Y76–Archive image from page 30 of Development of a portable sand. Development of a portable sand trap for use in the nearshore . developmentofpor00rosa Year: 1989 EXPANDING HOOD HOOD. LENGTH Figure 13. Nozzle parameters varied in hydraulic test (after Rosati and Kraus 1988) By means of either the nozzle design or by bending the bars used to mount the nozzle to the rack, the entrance to each nozzle was positioned upstream from the rack to minimize flow disturbance caused by the mounts and rack. A prototype streamer trap rack as used in the field was employed to position nozzles at a particular
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962188.html
RM2JA6524–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A beautiful shot of expanding nozzle turtles standing on a floating tree trunk in a lake on a sunny day Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-beautiful-shot-of-expanding-nozzle-turtles-standing-on-a-floating-tree-trunk-in-a-lake-on-a-sunny-day-image477084503.html
RF2JM5247–A beautiful shot of expanding nozzle turtles standing on a floating tree trunk in a lake on a sunny day
. The Street railway journal . important advantages. April ii, 1903.] STREET RAILWAY JOURNAL. 565 The general arrangement of a turbine generating unit of thistype is shown by the drawings which accompany this paper.Its functions may be briefly described as follows, and are illus-trated by the cut on page 564. Velocity is imparted to the steam in an expanding nozzle sodesigned as to efficiently convert nearly all the expansive force,between the pressure limits used, into velocity in the steamitself. After leaving the nozzle the steam passes successively ticable, and by various conditions of mec Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-street-railway-journal-important-advantages-april-ii-1903-street-railway-journal-565-the-general-arrangement-of-a-turbine-generating-unit-of-thistype-is-shown-by-the-drawings-which-accompany-this-paperits-functions-may-be-briefly-described-as-follows-and-are-illus-trated-by-the-cut-on-page-564-velocity-is-imparted-to-the-steam-in-an-expanding-nozzle-sodesigned-as-to-efficiently-convert-nearly-all-the-expansive-forcebetween-the-pressure-limits-used-into-velocity-in-the-steamitself-after-leaving-the-nozzle-the-steam-passes-successively-ticable-and-by-various-conditions-of-mec-image371782565.html
RM2CGT4CN–. The Street railway journal . important advantages. April ii, 1903.] STREET RAILWAY JOURNAL. 565 The general arrangement of a turbine generating unit of thistype is shown by the drawings which accompany this paper.Its functions may be briefly described as follows, and are illus-trated by the cut on page 564. Velocity is imparted to the steam in an expanding nozzle sodesigned as to efficiently convert nearly all the expansive force,between the pressure limits used, into velocity in the steamitself. After leaving the nozzle the steam passes successively ticable, and by various conditions of mec
Art inspired by Glass pourer flask, Mid Imperial, 2nd–early 3rd century A.D., Roman, Glass; blown, Other: 3 1/16in. (7.8cm), Glass, Translucent pale yellow green. Rim folded out, down, over, and in; broad, flaring mouth; cylindrical neck, expanding downwards; slightly pushed-in. narrow, Classic works modernized by Artotop with a splash of modernity. Shapes, color and value, eye-catching visual impact on art. Emotions through freedom of artworks in a contemporary way. A timeless message pursuing a wildly creative new direction. Artists turning to the digital medium and creating the Artotop NFT Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/art-inspired-by-glass-pourer-flask-mid-imperial-2ndearly-3rd-century-ad-roman-glass-blown-other-3-116in-78cm-glass-translucent-pale-yellow-green-rim-folded-out-down-over-and-in-broad-flaring-mouth-cylindrical-neck-expanding-downwards-slightly-pushed-in-narrow-classic-works-modernized-by-artotop-with-a-splash-of-modernity-shapes-color-and-value-eye-catching-visual-impact-on-art-emotions-through-freedom-of-artworks-in-a-contemporary-way-a-timeless-message-pursuing-a-wildly-creative-new-direction-artists-turning-to-the-digital-medium-and-creating-the-artotop-nft-image462783461.html
RF2HTWH0N–Art inspired by Glass pourer flask, Mid Imperial, 2nd–early 3rd century A.D., Roman, Glass; blown, Other: 3 1/16in. (7.8cm), Glass, Translucent pale yellow green. Rim folded out, down, over, and in; broad, flaring mouth; cylindrical neck, expanding downwards; slightly pushed-in. narrow, Classic works modernized by Artotop with a splash of modernity. Shapes, color and value, eye-catching visual impact on art. Emotions through freedom of artworks in a contemporary way. A timeless message pursuing a wildly creative new direction. Artists turning to the digital medium and creating the Artotop NFT
mounting foam gun with the orange plastic handle isolated on white background with clipping path Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mounting-foam-gun-with-the-orange-plastic-handle-isolated-on-white-background-with-clipping-path-image217650010.html
RFPJ2PPJ–mounting foam gun with the orange plastic handle isolated on white background with clipping path
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962209.html
RM2JA652W–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A beautiful shot of expanding nozzle turtles and silver gull standing on a floating tree trunk in a lake on a sunny day Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-beautiful-shot-of-expanding-nozzle-turtles-and-silver-gull-standing-on-a-floating-tree-trunk-in-a-lake-on-a-sunny-day-image477084501.html
RF2JM5245–A beautiful shot of expanding nozzle turtles and silver gull standing on a floating tree trunk in a lake on a sunny day
Locomotive appliances . theincreased velocity of the exhaust through a restrictedopening of the nozzle tears the fire on the grates, thusrushing the gases and finer coal unconsumed throughthe flues and causing wasteful results. The holestorn in the fire also admit cold air through the grates,cooling the flues and fire-box suddenly, and causingthem to leak. There is no doubt but what manyengine failures due to leaky flues may be attributed tothis cause. To overcome these difficulties many forms of (320) LOCOMOTIVE APPLIANCES. 321 expanding nozzles have been devised, most of them,however, being Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/locomotive-appliances-theincreased-velocity-of-the-exhaust-through-a-restrictedopening-of-the-nozzle-tears-the-fire-on-the-grates-thusrushing-the-gases-and-finer-coal-unconsumed-throughthe-flues-and-causing-wasteful-results-the-holestorn-in-the-fire-also-admit-cold-air-through-the-gratescooling-the-flues-and-fire-box-suddenly-and-causingthem-to-leak-there-is-no-doubt-but-what-manyengine-failures-due-to-leaky-flues-may-be-attributed-tothis-cause-to-overcome-these-difficulties-many-forms-of-320-locomotive-appliances-321-expanding-nozzles-have-been-devised-most-of-themhowever-being-image342713586.html
RM2AWFXJX–Locomotive appliances . theincreased velocity of the exhaust through a restrictedopening of the nozzle tears the fire on the grates, thusrushing the gases and finer coal unconsumed throughthe flues and causing wasteful results. The holestorn in the fire also admit cold air through the grates,cooling the flues and fire-box suddenly, and causingthem to leak. There is no doubt but what manyengine failures due to leaky flues may be attributed tothis cause. To overcome these difficulties many forms of (320) LOCOMOTIVE APPLIANCES. 321 expanding nozzles have been devised, most of them,however, being
used mounting foam gun with orange plastic handle Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/used-mounting-foam-gun-with-orange-plastic-handle-image217650017.html
RFPJ2PPW–used mounting foam gun with orange plastic handle
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962211.html
RM2JA652Y–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A beautiful shot of expanding nozzle turtles and silver gull standing on a floating tree trunk in a lake on a sunny day Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-beautiful-shot-of-expanding-nozzle-turtles-and-silver-gull-standing-on-a-floating-tree-trunk-in-a-lake-on-a-sunny-day-image477084516.html
RF2JM524M–A beautiful shot of expanding nozzle turtles and silver gull standing on a floating tree trunk in a lake on a sunny day
Steam turbines; a practical and theoretical treatise for engineers and students, including a discussion of the gas turbine . ^1 ^2 0s ^s Entropy Fig. 14a. Temperature-Entropy Diagram for Superheated Steam. smallest section, if the nozzle is of an expanding or divergingtype. Various forms of standard nozzles are shown in Fig. 15.In order to calculate the areas of nozzles we must know how todetermine the quantity of steam (flow) per unit of time passingthrough a unit area. It is very essential that the nozzle is wellrounded on the entrance side and that sharp edges alongthe path of the steam are Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/steam-turbines-a-practical-and-theoretical-treatise-for-engineers-and-students-including-a-discussion-of-the-gas-turbine-1-2-0s-s-entropy-fig-14a-temperature-entropy-diagram-for-superheated-steam-smallest-section-if-the-nozzle-is-of-an-expanding-or-divergingtype-various-forms-of-standard-nozzles-are-shown-in-fig-15in-order-to-calculate-the-areas-of-nozzles-we-must-know-how-todetermine-the-quantity-of-steam-flow-per-unit-of-time-passingthrough-a-unit-area-it-is-very-essential-that-the-nozzle-is-wellrounded-on-the-entrance-side-and-that-sharp-edges-alongthe-path-of-the-steam-are-image339451811.html
RM2AM7A6Y–Steam turbines; a practical and theoretical treatise for engineers and students, including a discussion of the gas turbine . ^1 ^2 0s ^s Entropy Fig. 14a. Temperature-Entropy Diagram for Superheated Steam. smallest section, if the nozzle is of an expanding or divergingtype. Various forms of standard nozzles are shown in Fig. 15.In order to calculate the areas of nozzles we must know how todetermine the quantity of steam (flow) per unit of time passingthrough a unit area. It is very essential that the nozzle is wellrounded on the entrance side and that sharp edges alongthe path of the steam are
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962084.html
RM2JA64XC–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A beautiful shot of expanding nozzle turtles standing on a floating tree trunk in a lake on a sunny day near a fountain Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-beautiful-shot-of-expanding-nozzle-turtles-standing-on-a-floating-tree-trunk-in-a-lake-on-a-sunny-day-near-a-fountain-image477084688.html
RF2JM52AT–A beautiful shot of expanding nozzle turtles standing on a floating tree trunk in a lake on a sunny day near a fountain
. Science of railways . theincreased velocity of the exhaust through a restrictedopening of the nozzle tears the fire on the grates, thusrushing the gases and finer coal unconsumed throughthe flues and causing wasteful results. The holestorn in the fire also admit cold air through the grates,cooling the flues and fire-box suddenly, and causingthem to leak. There is no doubt but what manyengine failures due to leaky flues may be attributed tothis cause. To overcome these difficulties many forms of (525) 526 LOCOMOTIVE APPLIANCES. expanding nozzles have been devised, most of them,however, being Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/science-of-railways-theincreased-velocity-of-the-exhaust-through-a-restrictedopening-of-the-nozzle-tears-the-fire-on-the-grates-thusrushing-the-gases-and-finer-coal-unconsumed-throughthe-flues-and-causing-wasteful-results-the-holestorn-in-the-fire-also-admit-cold-air-through-the-gratescooling-the-flues-and-fire-box-suddenly-and-causingthem-to-leak-there-is-no-doubt-but-what-manyengine-failures-due-to-leaky-flues-may-be-attributed-tothis-cause-to-overcome-these-difficulties-many-forms-of-525-526-locomotive-appliances-expanding-nozzles-have-been-devised-most-of-themhowever-being-image371826424.html
RM2CGX4B4–. Science of railways . theincreased velocity of the exhaust through a restrictedopening of the nozzle tears the fire on the grates, thusrushing the gases and finer coal unconsumed throughthe flues and causing wasteful results. The holestorn in the fire also admit cold air through the grates,cooling the flues and fire-box suddenly, and causingthem to leak. There is no doubt but what manyengine failures due to leaky flues may be attributed tothis cause. To overcome these difficulties many forms of (525) 526 LOCOMOTIVE APPLIANCES. expanding nozzles have been devised, most of them,however, being
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962192.html
RM2JA6528–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
. Applied thermodynamics for engineers. uid friction must be excessive. 537. operation Curtis Turbine. This is a multi-stage impulse turbine, the principle ofhaving been shown in Fig. 245. In most cases, it is vertical; for marine applications, it is necessarily madehorizontal. Figure 262 illustratesthe stationary and moving bladesand nozzles. Steam enters throughthe nozzle A, strikes a row of mov-ing vanes at a, passes from themthrough stationary vanes B toanother row of moving vanes at e,then passes through a second setof expanding nozzles at h to thenext pressure stage. This particu-lar mac Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/applied-thermodynamics-for-engineers-uid-friction-must-be-excessive-537-operation-curtis-turbine-this-is-a-multi-stage-impulse-turbine-the-principle-ofhaving-been-shown-in-fig-245-in-most-cases-it-is-vertical-for-marine-applications-it-is-necessarily-madehorizontal-figure-262-illustratesthe-stationary-and-moving-bladesand-nozzles-steam-enters-throughthe-nozzle-a-strikes-a-row-of-mov-ing-vanes-at-a-passes-from-themthrough-stationary-vanes-b-toanother-row-of-moving-vanes-at-ethen-passes-through-a-second-setof-expanding-nozzles-at-h-to-thenext-pressure-stage-this-particu-lar-mac-image370455923.html
RM2CEKM8K–. Applied thermodynamics for engineers. uid friction must be excessive. 537. operation Curtis Turbine. This is a multi-stage impulse turbine, the principle ofhaving been shown in Fig. 245. In most cases, it is vertical; for marine applications, it is necessarily madehorizontal. Figure 262 illustratesthe stationary and moving bladesand nozzles. Steam enters throughthe nozzle A, strikes a row of mov-ing vanes at a, passes from themthrough stationary vanes B toanother row of moving vanes at e,then passes through a second setof expanding nozzles at h to thenext pressure stage. This particu-lar mac
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962183.html
RM2JA651Y–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
. Modern mechanism, exhibiting the latest progress in machines, motors, and the transmission of power, being a supplementary volume to Appletons' cyclopaedia of applied mechanics . Fio. 2.—Hills system. given vacuum of about 27 in. warrants maximum economy in all cases (as is usual) where thewater of condfiisatiim in tlie hot well is pumped back into the l)oilers. Wheeler H Surface-CondcnKer{Vg. 3).—In this condenser the exhaust steam from the engine COTTON-GIN. 135 entering by the nozzle A, comes first in contact with the perforated scattering-plate 0. Thesteam expanding in the top of the co Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/modern-mechanism-exhibiting-the-latest-progress-in-machines-motors-and-the-transmission-of-power-being-a-supplementary-volume-to-appletons-cyclopaedia-of-applied-mechanics-fio-2hills-system-given-vacuum-of-about-27-in-warrants-maximum-economy-in-all-cases-as-is-usual-where-thewater-of-condfiisatiim-in-tlie-hot-well-is-pumped-back-into-the-loilers-wheeler-h-surface-condcnkervg-3in-this-condenser-the-exhaust-steam-from-the-engine-cotton-gin-135-entering-by-the-nozzle-a-comes-first-in-contact-with-the-perforated-scattering-plate-0-thesteam-expanding-in-the-top-of-the-co-image370006110.html
RM2CDY6FX–. Modern mechanism, exhibiting the latest progress in machines, motors, and the transmission of power, being a supplementary volume to Appletons' cyclopaedia of applied mechanics . Fio. 2.—Hills system. given vacuum of about 27 in. warrants maximum economy in all cases (as is usual) where thewater of condfiisatiim in tlie hot well is pumped back into the l)oilers. Wheeler H Surface-CondcnKer{Vg. 3).—In this condenser the exhaust steam from the engine COTTON-GIN. 135 entering by the nozzle A, comes first in contact with the perforated scattering-plate 0. Thesteam expanding in the top of the co
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487582.html
RMG8E10E–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962226.html
RM2JA653E–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
. Development of a portable sand trap for use in the nearshore. Littoral drift; Oceanographic instruments; Sedimentation and deposition. EXPANDING HOOD. HOOD. LENGTH Figure 13. Nozzle parameters varied in hydraulic test (after Rosati and Kraus 1988) By means of either the nozzle design or by bending the bars used to mount the nozzle to the rack, the entrance to each nozzle was positioned upstream from the rack to minimize flow disturbance caused by the mounts and rack. A prototype streamer trap rack as used in the field was employed to position nozzles at a particular elevation for hydraulic t Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/development-of-a-portable-sand-trap-for-use-in-the-nearshore-littoral-drift-oceanographic-instruments-sedimentation-and-deposition-expanding-hood-hood-length-figure-13-nozzle-parameters-varied-in-hydraulic-test-after-rosati-and-kraus-1988-by-means-of-either-the-nozzle-design-or-by-bending-the-bars-used-to-mount-the-nozzle-to-the-rack-the-entrance-to-each-nozzle-was-positioned-upstream-from-the-rack-to-minimize-flow-disturbance-caused-by-the-mounts-and-rack-a-prototype-streamer-trap-rack-as-used-in-the-field-was-employed-to-position-nozzles-at-a-particular-elevation-for-hydraulic-t-image231628660.html
RMRCRGM4–. Development of a portable sand trap for use in the nearshore. Littoral drift; Oceanographic instruments; Sedimentation and deposition. EXPANDING HOOD. HOOD. LENGTH Figure 13. Nozzle parameters varied in hydraulic test (after Rosati and Kraus 1988) By means of either the nozzle design or by bending the bars used to mount the nozzle to the rack, the entrance to each nozzle was positioned upstream from the rack to minimize flow disturbance caused by the mounts and rack. A prototype streamer trap rack as used in the field was employed to position nozzles at a particular elevation for hydraulic t
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487559.html
RMG8E0YK–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962182.html
RM2JA651X–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487580.html
RMG8E10C–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470961927.html
RM2JA64MR–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962202.html
RM2JA652J–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487587.html
RMG8E10K–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470961911.html
RM2JA64M7–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962014.html
RM2JA64RX–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962134.html
RM2JA6506–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487564.html
RMG8E0YT–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962204.html
RM2JA652M–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962187.html
RM2JA6523–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487563.html
RMG8E0YR–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962032.html
RM2JA64TG–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962227.html
RM2JA653F–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962214.html
RM2JA6532–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470961979.html
RM2JA64PK–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487548.html
RMG8E0Y8–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962207.html
RM2JA652R–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962112.html
RM2JA64YC–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/a-workman-sprays-a-shipping-container-ceiling-with-grapho-therm-to-prevent-the-build-up-of-condensation-image470962185.html
RM2JA6521–A workman sprays a shipping container ceiling with Grapho Therm to prevent the build up of condensation.
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487533.html
RMG8E0XN–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487568.html
RMG8E100–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487542.html
RMG8E0Y2–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487566.html
RMG8E0YX–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487583.html
RMG8E10F–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487575.html
RMG8E107–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. 28th June, 2016. Orbital ATK test fire happened at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487731.html
RMG8E15R–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. 28th June, 2016. Orbital ATK test fire happened at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487546.html
RMG8E0Y6–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487531.html
RMG8E0XK–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487551.html
RMG8E0YB–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-promontory-utah-usa-28th-june-2016-raw-fire-power-is-blasted-into-108487561.html
RMG8E0YN–Promontory, Utah, USA. 28th June, 2016. Raw fire power is blasted into a hillside as ATK test fires a solid rocket booster motor that burns 6 tons of propellant each second with expanding gases and flames exiting the nozzle at speeds in excess of Mach 3 and temperatures reaching 3,700 degrees Fahrenheit Tuesday. Orbital ATK test fire happen at 9:05am MT time and NASA will use measurements from more than 530 data channels to evaluate motor performance, acoustics, motor vibrations, nozzle modifications, insulation upgrades. Credit: ZUMA Press, Inc./Alamy Live News
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