Catalysis: Driving Toward Alternative Fuels Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-catalysis-driving-toward-alternative-fuels-135010034.html
RMHRJ6JX–Catalysis: Driving Toward Alternative Fuels
The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) is inaugurated. In the picture, the new building at the TUM research campus in Garching. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-new-catalysis-center-of-the-central-institute-for-catalysis-research-of-the-technical-university-munich-tum-is-inaugurated-in-the-picture-the-new-building-at-the-tum-research-campus-in-garching-image220334850.html
RMPPD39P–The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) is inaugurated. In the picture, the new building at the TUM research campus in Garching.
WILHELM OSTWALD (1853-1932) German chemist Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/wilhelm-ostwald-1853-1932-german-chemist-image235158691.html
RMRJGB8K–WILHELM OSTWALD (1853-1932) German chemist
Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beermageddon-festival-stoke-prior-united-kingdom-24-aug-2024-catalysis-performs-at-beermageddon-festival-stoke-prior-united-kingdom-copyright-will-tudoralamy-live-news-image618695194.html
RM2XXG00X–Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News
Fungal enzyme on plasma membrane. Illustration of a cell membrane and a key metabolic fungal enzyme (blue). The enzyme is lanosterol 14 alpha-demethyl Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/fungal-enzyme-on-plasma-membrane-illustration-of-a-cell-membrane-and-a-key-metabolic-fungal-enzyme-blue-the-enzyme-is-lanosterol-14-alpha-demethyl-image259474326.html
RFW24246–Fungal enzyme on plasma membrane. Illustration of a cell membrane and a key metabolic fungal enzyme (blue). The enzyme is lanosterol 14 alpha-demethyl
Archive image from page 251 of Currents in biochemical research, 1956;. Currents in biochemical research, 1956; twenty-seven essays charting the present course of biochemical research and considering the intimate relationship of biochemistry to medicine, physiology, and biology currentsinbioche1956gree Year: 1956 ( EFRAIM RACKER these specific interactions in intact cells (5). This investigation represents a new and important approach to the steady-state kinetics of intracellular metabolism. THE MICROCYCLES OF ENZYME-SUBSTRATE INTERACTIONS Catalysis may be looked upon, in many instances, as a Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/archive-image-from-page-251-of-currents-in-biochemical-research-1956-currents-in-biochemical-research-1956-twenty-seven-essays-charting-the-present-course-of-biochemical-research-and-considering-the-intimate-relationship-of-biochemistry-to-medicine-physiology-and-biology-currentsinbioche1956gree-year-1956-efraim-racker-these-specific-interactions-in-intact-cells-5-this-investigation-represents-a-new-and-important-approach-to-the-steady-state-kinetics-of-intracellular-metabolism-the-microcycles-of-enzyme-substrate-interactions-catalysis-may-be-looked-upon-in-many-instances-as-a-image264053229.html
RMW9GJGD–Archive image from page 251 of Currents in biochemical research, 1956;. Currents in biochemical research, 1956; twenty-seven essays charting the present course of biochemical research and considering the intimate relationship of biochemistry to medicine, physiology, and biology currentsinbioche1956gree Year: 1956 ( EFRAIM RACKER these specific interactions in intact cells (5). This investigation represents a new and important approach to the steady-state kinetics of intracellular metabolism. THE MICROCYCLES OF ENZYME-SUBSTRATE INTERACTIONS Catalysis may be looked upon, in many instances, as a
Chemical Engineering line icons collection. Thermodynamics, Kinetics, Catalysis, Process control, Bioreactors, Materials, Separation vector and linear Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-engineering-line-icons-collection-thermodynamics-kinetics-catalysis-process-control-bioreactors-materials-separation-vector-and-linear-image547129211.html
RF2PP3TTY–Chemical Engineering line icons collection. Thermodynamics, Kinetics, Catalysis, Process control, Bioreactors, Materials, Separation vector and linear
Chemical synthesis linear icons set. Polymerization, Catalysis, Oxidation, Reduction, Hydrogenation, Alkylation, Isomerization line vector and concept Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-synthesis-linear-icons-set-polymerization-catalysis-oxidation-reduction-hydrogenation-alkylation-isomerization-line-vector-and-concept-image547119419.html
RF2PP3CB7–Chemical synthesis linear icons set. Polymerization, Catalysis, Oxidation, Reduction, Hydrogenation, Alkylation, Isomerization line vector and concept
Jons Jakob Berzelius 1779-1848 Swedish Chemist Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/jons-jakob-berzelius-1779-1848-swedish-chemist-image545005125.html
RM2PJK3GN–Jons Jakob Berzelius 1779-1848 Swedish Chemist
Green catalysts, conceptual illustration Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/green-catalysts-conceptual-illustration-image332908555.html
Jons Jakob Berzelius 1779-1848 Swedish Chemist Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/jons-jakob-berzelius-1779-1848-swedish-chemist-image545005121.html
RM2PJK3GH–Jons Jakob Berzelius 1779-1848 Swedish Chemist
RNA polymerase transcribing DNA into RNA, illustration Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/rna-polymerase-transcribing-dna-into-rna-illustration-image478710260.html
RF2JPR3R0–RNA polymerase transcribing DNA into RNA, illustration
Snowball Effect Metaphor as a business concept of corporate or financial accumulation as a gradual exponential growth and expansion symbol as a small Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/snowball-effect-metaphor-as-a-business-concept-of-corporate-or-financial-accumulation-as-a-gradual-exponential-growth-and-expansion-symbol-as-a-small-image572015618.html
RF2T6HFN6–Snowball Effect Metaphor as a business concept of corporate or financial accumulation as a gradual exponential growth and expansion symbol as a small
Synthesis catalysis RGB color icon Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/synthesis-catalysis-rgb-color-icon-image601281571.html
RF2WX6MNR–Synthesis catalysis RGB color icon
Lipids digestion. Lipolysis. Enzymes lipase that catalyzes the hydrolysis of fats. vector flat illustration Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/lipids-digestion-lipolysis-enzymes-lipase-that-catalyzes-the-hydrolysis-of-fats-vector-flat-illustration-image604290925.html
RF2X33R6N–Lipids digestion. Lipolysis. Enzymes lipase that catalyzes the hydrolysis of fats. vector flat illustration
Amylase (human pancreatic alpha-amylase) Protein. 3D Illustration. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/amylase-human-pancreatic-alpha-amylase-protein-3d-illustration-image438407097.html
RF2GD74M9–Amylase (human pancreatic alpha-amylase) Protein. 3D Illustration.
Structure of a typical chemical synapse.Vector illustration. Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/structure-of-a-typical-chemical-synapsevector-illustration-image596025222.html
RF2WHK872–Structure of a typical chemical synapse.Vector illustration.
Title Reactions relate to the free energy of the involved molecules Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/title-reactions-relate-to-the-free-energy-of-the-involved-molecules-image432545495.html
RF2G3M45B–Title Reactions relate to the free energy of the involved molecules
Catalysis The study of the acceleration of chemical reactions by catalysts. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/catalysis-the-study-of-the-acceleration-of-chemical-reactions-by-catalysts-image564169651.html
RF2RNT443–Catalysis The study of the acceleration of chemical reactions by catalysts.
The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) was inaugurated. In the picture, the foyer of the new building in the TUM research campus in Garching. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-new-catalysis-center-of-the-central-institute-for-catalysis-research-of-the-technical-university-munich-tum-was-inaugurated-in-the-picture-the-foyer-of-the-new-building-in-the-tum-research-campus-in-garching-image220334847.html
RMPPD39K–The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) was inaugurated. In the picture, the foyer of the new building in the TUM research campus in Garching.
Lille (northern France): RealCat laboratory Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-lille-northern-france-realcat-laboratory-125654535.html
Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beermageddon-festival-stoke-prior-united-kingdom-24-aug-2024-catalysis-performs-at-beermageddon-festival-stoke-prior-united-kingdom-copyright-will-tudoralamy-live-news-image618704486.html
RM2XXGBTP–Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News
Catalysis researcher Benjamin List is Director at the Max Planck Institute for Coal Research in Mulheim an der Ruhr, Germany. The Nobel Prize in Chemistry 2021 was awarded jointly to Benjamin List and David W.C. MacMillan 'for the development of asymmetric organocatalysis.' Photo by David Ausserhofer/Max Planck Society/UPI Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/catalysis-researcher-benjamin-list-is-director-at-the-max-planck-institute-for-coal-research-in-mulheim-an-der-ruhr-germany-the-nobel-prize-in-chemistry-2021-was-awarded-jointly-to-benjamin-list-and-david-wc-macmillan-for-the-development-of-asymmetric-organocatalysis-photo-by-david-ausserhofermax-planck-societyupi-image446875379.html
RM2GY0X2Y–Catalysis researcher Benjamin List is Director at the Max Planck Institute for Coal Research in Mulheim an der Ruhr, Germany. The Nobel Prize in Chemistry 2021 was awarded jointly to Benjamin List and David W.C. MacMillan 'for the development of asymmetric organocatalysis.' Photo by David Ausserhofer/Max Planck Society/UPI
Archive image from page 159 of dan bai zhi de jie. dan bai zhi de jie gou yu gong neng danbaizhidejiego00yanl Year: 1988.11 å¾82éç±»çæ°´å å¾83 è½ç水解 (H+)ç转移è¦æ ¢å¾å¤ï¼å¨åè°çé ¸ç¢±å¬å(concerted acid and base catalysis)ä¸-é ¸ç¢±åæ¶å æ¬å¨å¬ååä¸-ï¼ä¸è¬é ¸åè¿æ¸¡æ åå-ä¾åºè´¨å-ï¼èä¸è¬ç¢±åæ¥åè´¨å-ãå¾84æ¯é ¯ç±»æ°´è§£æ¶åç§ é ¸ç¢±å¬åçååºã æ两个éè¦å ç´ å½±åä¸è¬é ¸ç¢±å¬åçååºé度ï¼é¦å æ¯ä¸ è¬é ¸ç¢±ç强度ï¼å³å ¶è´¨å-ç解离常æ°ï¼å¨ææ´»æ¨çä¸è¬é ¸ç¢±å¬ ååä¸-ï¼ç»æ°é ¸çåªååº-(pk为6.0å·¦å³ï¼æ¢å¯ä½ä¸ºè´¨å-ä¾ä½ åå¯ä½è´¨å-åä½ã第äºä¸ªéè¦å å-æ¯é ¸ç¢±ä¾åº'ææ¥åè´¨å-çé 度ãåªç¡åºå¨ä¸-æ§PHæ¶ä¾åºè´¨å-åæ¥ Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/archive-image-from-page-159-of-dan-bai-zhi-de-jie-dan-bai-zhi-de-jie-gou-yu-gong-neng-danbaizhidejiego00yanl-year-198811-82-83-h-concerted-acid-and-base-catalysis-84-pk60-ph-image259462411.html
RMW23EXK–Archive image from page 159 of dan bai zhi de jie. dan bai zhi de jie gou yu gong neng danbaizhidejiego00yanl Year: 1988.11 å¾82éç±»çæ°´å å¾83 è½ç水解 (H+)ç转移è¦æ ¢å¾å¤ï¼å¨åè°çé ¸ç¢±å¬å(concerted acid and base catalysis)ä¸-é ¸ç¢±åæ¶å æ¬å¨å¬ååä¸-ï¼ä¸è¬é ¸åè¿æ¸¡æ åå-ä¾åºè´¨å-ï¼èä¸è¬ç¢±åæ¥åè´¨å-ãå¾84æ¯é ¯ç±»æ°´è§£æ¶åç§ é ¸ç¢±å¬åçååºã æ两个éè¦å ç´ å½±åä¸è¬é ¸ç¢±å¬åçååºé度ï¼é¦å æ¯ä¸ è¬é ¸ç¢±ç强度ï¼å³å ¶è´¨å-ç解离常æ°ï¼å¨ææ´»æ¨çä¸è¬é ¸ç¢±å¬ ååä¸-ï¼ç»æ°é ¸çåªååº-(pk为6.0å·¦å³ï¼æ¢å¯ä½ä¸ºè´¨å-ä¾ä½ åå¯ä½è´¨å-åä½ã第äºä¸ªéè¦å å-æ¯é ¸ç¢±ä¾åº'ææ¥åè´¨å-çé 度ãåªç¡åºå¨ä¸-æ§PHæ¶ä¾åºè´¨å-åæ¥
Chemistry being a complex subject, related to other important topics. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemistry-being-a-complex-subject-related-to-other-important-topics-image615778226.html
RF2XNR3BE–Chemistry being a complex subject, related to other important topics.
Chemical transformation linear icons set. Reactivity, Conversion, Reaction, Metabolism, Conversion, Catalysis, Synthesis line vector and concept signs Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-transformation-linear-icons-set-reactivity-conversion-reaction-metabolism-conversion-catalysis-synthesis-line-vector-and-concept-signs-image547128075.html
RF2PP3RCB–Chemical transformation linear icons set. Reactivity, Conversion, Reaction, Metabolism, Conversion, Catalysis, Synthesis line vector and concept signs
(241017) -- BEIJING, Oct. 17, 2024 (Xinhua) -- This file photo taken in July, 2022 shows the pilot facility for 1,000-tonne bio-based ethylene glycol production through catalysis in Puyang, central China's Henan Province. TO GO WITH 'Chinese scientists develop technology for sustainable production of industrial chemicals' (Dalian Institute of Chemical Physics of the Chinese Academy of Sciences/Handout via Xinhua) Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/241017-beijing-oct-17-2024-xinhua-this-file-photo-taken-in-july-2022-shows-the-pilot-facility-for-1000-tonne-bio-based-ethylene-glycol-production-through-catalysis-in-puyang-central-chinas-henan-province-to-go-with-chinese-scientists-develop-technology-for-sustainable-production-of-industrial-chemicals-dalian-institute-of-chemical-physics-of-the-chinese-academy-of-scienceshandout-via-xinhua-image626493079.html
RM2YB768R–(241017) -- BEIJING, Oct. 17, 2024 (Xinhua) -- This file photo taken in July, 2022 shows the pilot facility for 1,000-tonne bio-based ethylene glycol production through catalysis in Puyang, central China's Henan Province. TO GO WITH 'Chinese scientists develop technology for sustainable production of industrial chemicals' (Dalian Institute of Chemical Physics of the Chinese Academy of Sciences/Handout via Xinhua)
3D image of Triphenylphosphine skeletal formula - molecular chemical structure of triphenylphosphane isolated on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-image-of-triphenylphosphine-skeletal-formula-molecular-chemical-structure-of-triphenylphosphane-isolated-on-white-background-image500325755.html
RF2M1YPGY–3D image of Triphenylphosphine skeletal formula - molecular chemical structure of triphenylphosphane isolated on white background
. Journal . natural nitrates. THE CONCENTRATION OF SULPHURIC ACID. BY DR. FUANZ 5IKTEK. When, a few years ago, large quantities of sulphuric acidwere made by catalysis, it was predicted that the chamberprocess would soon be replaced by the contact process.N ow it is admitted that, while for the production of con-centrated acid the contact processes are superior to theold processes, for the manufacture of weak acid the chamberprocess still exists. Tins standpoint is also taken by Luetyand Niedenfuehr, in their Comparative Studies on theAdvantages of Manufacturing Sulphur) - of the Auhydride Pro Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/journal-natural-nitrates-the-concentration-of-sulphuric-acid-by-dr-fuanz-5iktek-when-a-few-years-ago-large-quantities-of-sulphuric-acidwere-made-by-catalysis-it-was-predicted-that-the-chamberprocess-would-soon-be-replaced-by-the-contact-processn-ow-it-is-admitted-that-while-for-the-production-of-con-centrated-acid-the-contact-processes-are-superior-to-theold-processes-for-the-manufacture-of-weak-acid-the-chamberprocess-still-exists-tins-standpoint-is-also-taken-by-luetyand-niedenfuehr-in-their-comparative-studies-on-theadvantages-of-manufacturing-sulphur-of-the-auhydride-pro-image372426498.html
RM2CHWDPA–. Journal . natural nitrates. THE CONCENTRATION OF SULPHURIC ACID. BY DR. FUANZ 5IKTEK. When, a few years ago, large quantities of sulphuric acidwere made by catalysis, it was predicted that the chamberprocess would soon be replaced by the contact process.N ow it is admitted that, while for the production of con-centrated acid the contact processes are superior to theold processes, for the manufacture of weak acid the chamberprocess still exists. Tins standpoint is also taken by Luetyand Niedenfuehr, in their Comparative Studies on theAdvantages of Manufacturing Sulphur) - of the Auhydride Pro
3D image of Benzalkonium chloride skeletal formula - molecular chemical structure of Alkyldimethylbenzylammonium chloride isolated on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-image-of-benzalkonium-chloride-skeletal-formula-molecular-chemical-structure-of-alkyldimethylbenzylammonium-chloride-isolated-on-white-background-image487603746.html
RF2K987FE–3D image of Benzalkonium chloride skeletal formula - molecular chemical structure of Alkyldimethylbenzylammonium chloride isolated on white background
Chemical industry line icons collection. Extraction, Manufacturing, Synthesis, Polymerization, Refining, Distillation, Catalysis vector and linear Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-industry-line-icons-collection-extraction-manufacturing-synthesis-polymerization-refining-distillation-catalysis-vector-and-linear-image546970605.html
RF2PNTJGD–Chemical industry line icons collection. Extraction, Manufacturing, Synthesis, Polymerization, Refining, Distillation, Catalysis vector and linear
3D image of Arboreol skeletal formula - molecular chemical structure of epoxylignan isolated on white background Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/3d-image-of-arboreol-skeletal-formula-molecular-chemical-structure-of-epoxylignan-isolated-on-white-background-image472576625.html
RF2JCRM8H–3D image of Arboreol skeletal formula - molecular chemical structure of epoxylignan isolated on white background
Amylase (human pancreatic alpha-amylase) Protein. 3D Illustration. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/amylase-human-pancreatic-alpha-amylase-protein-3d-illustration-image438407201.html
RF2GD74T1–Amylase (human pancreatic alpha-amylase) Protein. 3D Illustration.
Mixed enzyme inhibition, illustration. Mixed enzyme inhibition is a type of reversible enzyme inhibition where the inhibitor may bind to either the free enzyme (E) or the enzyme-substrate (ES) complex and stop the catalysis. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mixed-enzyme-inhibition-illustration-mixed-enzyme-inhibition-is-a-type-of-reversible-enzyme-inhibition-where-the-inhibitor-may-bind-to-either-the-free-enzyme-e-or-the-enzyme-substrate-es-complex-and-stop-the-catalysis-image615907087.html
RF2XP0YNK–Mixed enzyme inhibition, illustration. Mixed enzyme inhibition is a type of reversible enzyme inhibition where the inhibitor may bind to either the free enzyme (E) or the enzyme-substrate (ES) complex and stop the catalysis.
President Barack Obama awards the National Medal of Science to Judith P. Klinman of University of California, Berkeley, during a ceremony at the White House on November 20, 2014, in Washington, D.C. Klinman is being honored for her discoveries of fundamental chemical and physical principles underlying enzyme catalysis and her leadership in the community of scientists. UPI/Kevin Dietsch. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/president-barack-obama-awards-the-national-medal-of-science-to-judith-p-klinman-of-university-of-california-berkeley-during-a-ceremony-at-the-white-house-on-november-20-2014-in-washington-dc-klinman-is-being-honored-for-her-discoveries-of-fundamental-chemical-and-physical-principles-underlying-enzyme-catalysis-and-her-leadership-in-the-community-of-scientists-upikevin-dietsch-image258543662.html
RMW0HK26–President Barack Obama awards the National Medal of Science to Judith P. Klinman of University of California, Berkeley, during a ceremony at the White House on November 20, 2014, in Washington, D.C. Klinman is being honored for her discoveries of fundamental chemical and physical principles underlying enzyme catalysis and her leadership in the community of scientists. UPI/Kevin Dietsch.
Efficiency chemistry production rectangle infographic template Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/efficiency-chemistry-production-rectangle-infographic-template-image600973263.html
RF2WWMKER–Efficiency chemistry production rectangle infographic template
Feature, laboratory for heterogeneous catalysis, visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr/Germany Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/feature-laboratory-for-heterogeneous-catalysis-visit-to-the-max-planck-institute-mpi-for-coal-research-on-march-4th-2022-in-muelheim-an-der-ruhrgermany-image463785085.html
RM2HXF6H1–Feature, laboratory for heterogeneous catalysis, visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr/Germany
The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) was inaugurated. In the picture the wet chemical laboratory in the new building in the TUM research campus in Garching. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-new-catalysis-center-of-the-central-institute-for-catalysis-research-of-the-technical-university-munich-tum-was-inaugurated-in-the-picture-the-wet-chemical-laboratory-in-the-new-building-in-the-tum-research-campus-in-garching-image220334848.html
RMPPD39M–The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) was inaugurated. In the picture the wet chemical laboratory in the new building in the TUM research campus in Garching.
An experimental reactor for creating hydrogen is pictured at the Leibniz Institute for Catalysis in Rostock, Germamy, 18 July 2012. The renowned research institution with 290 employees is celebrating its 60th birthday on Wednesday 18 July 2012. Photo: Bernd Wuestneck Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-an-experimental-reactor-for-creating-hydrogen-is-pictured-at-the-leibniz-55510673.html
RMD68MC1–An experimental reactor for creating hydrogen is pictured at the Leibniz Institute for Catalysis in Rostock, Germamy, 18 July 2012. The renowned research institution with 290 employees is celebrating its 60th birthday on Wednesday 18 July 2012. Photo: Bernd Wuestneck
Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beermageddon-festival-stoke-prior-united-kingdom-24-aug-2024-catalysis-performs-at-beermageddon-festival-stoke-prior-united-kingdom-copyright-will-tudoralamy-live-news-image618696201.html
RM2XXG18W–Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News
Russian President Vladimir Putin during a meeting with scientists from the Russian Academy of Sciences Siberian Branch at the Budker Institute of Nuclear Physics February 8, 2018 in Akademgorodok, Russia. Sitting with Putin from left to right are: Director of the Boreskov Catalysis Institute Valery Bukhtiyarov, Russian Academy of Sciences president Alexander Sergeyev, President Vladimir Putin and academician Valentin Parmon. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-russian-president-vladimir-putin-during-a-meeting-with-scientists-175169083.html
RMM4YHXK–Russian President Vladimir Putin during a meeting with scientists from the Russian Academy of Sciences Siberian Branch at the Budker Institute of Nuclear Physics February 8, 2018 in Akademgorodok, Russia. Sitting with Putin from left to right are: Director of the Boreskov Catalysis Institute Valery Bukhtiyarov, Russian Academy of Sciences president Alexander Sergeyev, President Vladimir Putin and academician Valentin Parmon.
Mathias Beller (from L), head of the institute, Ralf Ludwig and Henrik Junge speak with each other next to a trial reactor for hydrogen extraction at the Liebniz Institute for Catalysis in Rostock, Germany, 22 September 2011. The researchers in Rostock have developed a new hydrogen storage system: they have succeded in a thus far uniquely simple and efficient way of releasing hydro Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-mathias-beller-from-l-head-of-the-institute-ralf-ludwig-and-henrik-58018719.html
RMDAAYD3–Mathias Beller (from L), head of the institute, Ralf Ludwig and Henrik Junge speak with each other next to a trial reactor for hydrogen extraction at the Liebniz Institute for Catalysis in Rostock, Germany, 22 September 2011. The researchers in Rostock have developed a new hydrogen storage system: they have succeded in a thus far uniquely simple and efficient way of releasing hydro
Catalysis announces during the oath of the Count 2 government at the Quirinale (Luigi Mistrulli/Fotogramma, Rome - 2019-09-05) p.s. la foto e' utilizzabile nel rispetto del contesto in cui e' stata scattata, e senza intento diffamatorio del decoro delle persone rappresentate Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/catalysis-announces-during-the-oath-of-the-count-2-government-at-the-quirinale-luigi-mistrullifotogramma-rome-2019-09-05-ps-la-foto-e-utilizzabile-nel-rispetto-del-contesto-in-cui-e-stata-scattata-e-senza-intento-diffamatorio-del-decoro-delle-persone-rappresentate-image270903217.html
RMWMMKPW–Catalysis announces during the oath of the Count 2 government at the Quirinale (Luigi Mistrulli/Fotogramma, Rome - 2019-09-05) p.s. la foto e' utilizzabile nel rispetto del contesto in cui e' stata scattata, e senza intento diffamatorio del decoro delle persone rappresentate
Chemical transformation linear icons set. Reactivity, Conversion, Reaction, Metabolism, Conversion, Catalysis, Synthesis line vector and concept signs Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemical-transformation-linear-icons-set-reactivity-conversion-reaction-metabolism-conversion-catalysis-synthesis-line-vector-and-concept-signs-image547172684.html
RF2PP5T9G–Chemical transformation linear icons set. Reactivity, Conversion, Reaction, Metabolism, Conversion, Catalysis, Synthesis line vector and concept signs
lock and key mechanism of enzyme catalysis Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/lock-and-key-mechanism-of-enzyme-catalysis-image546986908.html
RF2PNWBAM–lock and key mechanism of enzyme catalysis
Uni Leipzig, Department of Applied Chemistry, once workplace of Wilhelm Ostwald, Nobel Prize winner for work on catalysis. Colour theorist. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uni-leipzig-department-of-applied-chemistry-once-workplace-of-wilhelm-ostwald-nobel-prize-winner-for-work-on-catalysis-colour-theorist-image557489774.html
RF2RAYRW2–Uni Leipzig, Department of Applied Chemistry, once workplace of Wilhelm Ostwald, Nobel Prize winner for work on catalysis. Colour theorist.
Catalysis Research Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-catalysis-research-55983121.html
RMD72715–Catalysis Research
Denver, Colorado / USA - 06/02/20: The killing of George Floyd by Minneapolis, Minnesota Police Officers catalysis a sixth day of protest at the Color Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/denver-colorado-usa-060220-the-killing-of-george-floyd-by-minneapolis-minnesota-police-officers-catalysis-a-sixth-day-of-protest-at-the-color-image360284479.html
RF2BX4AER–Denver, Colorado / USA - 06/02/20: The killing of George Floyd by Minneapolis, Minnesota Police Officers catalysis a sixth day of protest at the Color
Catalysis to Control Vehicle Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-catalysis-to-control-vehicle-55982991.html
RMD726TF–Catalysis to Control Vehicle
Energy harvesting and distribution through nanoscale networks well below the diffraction limit will be a powerful tool in the development of next-generation technologies for the warfighter including utilizing focused energy for sensing, catalysis and conversion to electricity or movement. The graphic depicts 6 energy transfer steps on a discrete DNA photonic wire. Each individual energy transfer step proceeds through the pendant fluorophores sequentially displayed on the DNA scaffold and their order is indicated by a number. (Image courtesy of Dr. Igor Medintz, Naval Research Laboratory) Harve Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-energy-harvesting-and-distribution-through-nanoscale-networks-well-129565716.html
RMHEP6B0–Energy harvesting and distribution through nanoscale networks well below the diffraction limit will be a powerful tool in the development of next-generation technologies for the warfighter including utilizing focused energy for sensing, catalysis and conversion to electricity or movement. The graphic depicts 6 energy transfer steps on a discrete DNA photonic wire. Each individual energy transfer step proceeds through the pendant fluorophores sequentially displayed on the DNA scaffold and their order is indicated by a number. (Image courtesy of Dr. Igor Medintz, Naval Research Laboratory) Harve
Mixed enzyme inhibition, illustration. Mixed enzyme inhibition is a type of reversible enzyme inhibition where the inhibitor may bind to either the free enzyme (E) or the enzyme-substrate (ES) complex and stop the catalysis. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/mixed-enzyme-inhibition-illustration-mixed-enzyme-inhibition-is-a-type-of-reversible-enzyme-inhibition-where-the-inhibitor-may-bind-to-either-the-free-enzyme-e-or-the-enzyme-substrate-es-complex-and-stop-the-catalysis-image615907113.html
RF2XP0YPH–Mixed enzyme inhibition, illustration. Mixed enzyme inhibition is a type of reversible enzyme inhibition where the inhibitor may bind to either the free enzyme (E) or the enzyme-substrate (ES) complex and stop the catalysis.
President Barack Obama awards the National Medal of Science to Judith P. Klinman of University of California, Berkeley, during a ceremony at the White House on November 20, 2014, in Washington, D.C. Klinman is being honored for her discoveries of fundamental chemical and physical principles underlying enzyme catalysis and her leadership in the community of scientists. UPI/Kevin Dietsch. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/president-barack-obama-awards-the-national-medal-of-science-to-judith-p-klinman-of-university-of-california-berkeley-during-a-ceremony-at-the-white-house-on-november-20-2014-in-washington-dc-klinman-is-being-honored-for-her-discoveries-of-fundamental-chemical-and-physical-principles-underlying-enzyme-catalysis-and-her-leadership-in-the-community-of-scientists-upikevin-dietsch-image258543663.html
RMW0HK27–President Barack Obama awards the National Medal of Science to Judith P. Klinman of University of California, Berkeley, during a ceremony at the White House on November 20, 2014, in Washington, D.C. Klinman is being honored for her discoveries of fundamental chemical and physical principles underlying enzyme catalysis and her leadership in the community of scientists. UPI/Kevin Dietsch.
Zero waste science blue onboarding mobile app screen Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/zero-waste-science-blue-onboarding-mobile-app-screen-image600973035.html
RF2WWMK6K–Zero waste science blue onboarding mobile app screen
Laboratory for heterogeneous catalysis at the Max Planck Institute. Visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr/Germany Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/laboratory-for-heterogeneous-catalysis-at-the-max-planck-institute-visit-to-the-max-planck-institute-mpi-for-coal-research-on-march-4th-2022-in-muelheim-an-der-ruhrgermany-image463784977.html
RM2HXF6D5–Laboratory for heterogeneous catalysis at the Max Planck Institute. Visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr/Germany
The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) is inaugurated. In the picture (from left to right): Prof. Ulrich Heiz, Stefan Mueller (MdB) and Minister of Science Dr. Ludwig Spaenle in a laboratory with a high-vacuum apparatus for measurement of catalyst surface. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-new-catalysis-center-of-the-central-institute-for-catalysis-research-of-the-technical-university-munich-tum-is-inaugurated-in-the-picture-from-left-to-right-prof-ulrich-heiz-stefan-mueller-mdb-and-minister-of-science-dr-ludwig-spaenle-in-a-laboratory-with-a-high-vacuum-apparatus-for-measurement-of-catalyst-surface-image220334844.html
RMPPD39G–The new catalysis center of the Central Institute for Catalysis Research of the Technical University Munich (TUM) is inaugurated. In the picture (from left to right): Prof. Ulrich Heiz, Stefan Mueller (MdB) and Minister of Science Dr. Ludwig Spaenle in a laboratory with a high-vacuum apparatus for measurement of catalyst surface.
Catalysis software design method with Digital java code text. Catalysis software design method and Computer software coding vector concept. Programmin Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/catalysis-software-design-method-with-digital-java-code-text-catalysis-software-design-method-and-computer-software-coding-vector-concept-programmin-image449242412.html
RF2H2TN7T–Catalysis software design method with Digital java code text. Catalysis software design method and Computer software coding vector concept. Programmin
The building of the catalysis center of the TU in Garching is still scaffolded. [automated translation] Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-building-of-the-catalysis-center-of-the-tu-in-garching-is-still-scaffolded-automated-translation-image339727485.html
RM2AMKWTD–The building of the catalysis center of the TU in Garching is still scaffolded. [automated translation]
Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beermageddon-festival-stoke-prior-united-kingdom-24-aug-2024-catalysis-performs-at-beermageddon-festival-stoke-prior-united-kingdom-copyright-will-tudoralamy-live-news-image618695577.html
RM2XXG0EH–Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News
Russian President Vladimir Putin during a meeting with scientists from the Russian Academy of Sciences Siberian Branch at the Budker Institute of Nuclear Physics February 8, 2018 in Akademgorodok, Russia. Sitting with Putin from left to right are: Director of the Boreskov Catalysis Institute Valery Bukhtiyarov, Russian Academy of Sciences president Alexander Sergeyev, President Vladimir Putin and academician Valentin Parmon. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-russian-president-vladimir-putin-during-a-meeting-with-scientists-175169092.html
RMM4YHY0–Russian President Vladimir Putin during a meeting with scientists from the Russian Academy of Sciences Siberian Branch at the Budker Institute of Nuclear Physics February 8, 2018 in Akademgorodok, Russia. Sitting with Putin from left to right are: Director of the Boreskov Catalysis Institute Valery Bukhtiyarov, Russian Academy of Sciences president Alexander Sergeyev, President Vladimir Putin and academician Valentin Parmon.
Mathias Beller, head of the Leibnitz Institute for Catalysis, holds a container with an iron catalyzer, which is being used for a new hydrogen storage system in Rostock, Germany, 22 September 2011. The researchers in Rostock have succeded in a thus far uniquely simple and efficient way of releasing hydrogen from formic acid with the help of an iron catalyzer and are circumventing t Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-mathias-beller-head-of-the-leibnitz-institute-for-catalysis-holds-58018720.html
RMDAAYD4–Mathias Beller, head of the Leibnitz Institute for Catalysis, holds a container with an iron catalyzer, which is being used for a new hydrogen storage system in Rostock, Germany, 22 September 2011. The researchers in Rostock have succeded in a thus far uniquely simple and efficient way of releasing hydrogen from formic acid with the help of an iron catalyzer and are circumventing t
Catalysis Nunciation during the Bell Tower Ceremony at Palazzo Chigi (Luigi Mistrulli/Fotogramma, Rome - 2019-09-05) p.s. la foto e' utilizzabile nel rispetto del contesto in cui e' stata scattata, e senza intento diffamatorio del decoro delle persone rappresentate Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/catalysis-nunciation-during-the-bell-tower-ceremony-at-palazzo-chigi-luigi-mistrullifotogramma-rome-2019-09-05-ps-la-foto-e-utilizzabile-nel-rispetto-del-contesto-in-cui-e-stata-scattata-e-senza-intento-diffamatorio-del-decoro-delle-persone-rappresentate-image270894585.html
RMWMM8PH–Catalysis Nunciation during the Bell Tower Ceremony at Palazzo Chigi (Luigi Mistrulli/Fotogramma, Rome - 2019-09-05) p.s. la foto e' utilizzabile nel rispetto del contesto in cui e' stata scattata, e senza intento diffamatorio del decoro delle persone rappresentate
Vintage portrait photo c1910s of French chemist Paul Sabatier (1854 - 1941) - co-winner of the Nobel Prize in Chemistry in 1912. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-vintage-portrait-photo-c1910s-of-french-chemist-paul-sabatier-1854-34965373.html
RMC0TPK9–Vintage portrait photo c1910s of French chemist Paul Sabatier (1854 - 1941) - co-winner of the Nobel Prize in Chemistry in 1912.
Vanadium is a chemical element with the symbol V and atomic number 23. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/vanadium-is-a-chemical-element-with-the-symbol-v-and-atomic-number-23-image415993387.html
RM2F4P3PK–Vanadium is a chemical element with the symbol V and atomic number 23.
Gold trichloride, Gold(III) chloride, molecule model, chemical formula. Traditionally called auric chloride, inorganic compound of gold and chlorine. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/gold-trichloride-goldiii-chloride-molecule-model-chemical-formula-traditionally-called-auric-chloride-inorganic-compound-of-gold-and-chlorine-image636061798.html
RF2YXR38P–Gold trichloride, Gold(III) chloride, molecule model, chemical formula. Traditionally called auric chloride, inorganic compound of gold and chlorine.
Growth potential Snowball principal as a business Metaphor to scale up as a success concept as a symbol for opportunity and financial accumulation. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/growth-potential-snowball-principal-as-a-business-metaphor-to-scale-up-as-a-success-concept-as-a-symbol-for-opportunity-and-financial-accumulation-image572034506.html
RF2T6JBRP–Growth potential Snowball principal as a business Metaphor to scale up as a success concept as a symbol for opportunity and financial accumulation.
Denver, Colorado / USA - 06/02/20: The killing of George Floyd by Minneapolis, Minnesota Police Officers catalysis a sixth day of protest at the Color Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/denver-colorado-usa-060220-the-killing-of-george-floyd-by-minneapolis-minnesota-police-officers-catalysis-a-sixth-day-of-protest-at-the-color-image360284454.html
RF2BX4ADX–Denver, Colorado / USA - 06/02/20: The killing of George Floyd by Minneapolis, Minnesota Police Officers catalysis a sixth day of protest at the Color
The American homoeopathist . N TO MEDICINE AND SURGERY. By WILLIAM HARVEY KING, M.D. This work contains seventy illustrations and treats oiall the various diseases for which electricity has beenfound useful. The various chapters contain: I. Electro Physics, with a description of the varioueornis of battery in use to day, and also niimuelydescribes the milliampere-mctcr. II Electro-Physiology, giving all that is necessary toa complete understanding of the underlying principledof Electro-Therapeutics. III. Effects of the electric current on nutrition, in-cluding electrolysis, catalysis, and theg Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/the-american-homoeopathist-n-to-medicine-and-surgery-by-william-harvey-king-md-this-work-contains-seventy-illustrations-and-treats-oiall-the-various-diseases-for-which-electricity-has-beenfound-useful-the-various-chapters-contain-i-electro-physics-with-a-description-of-the-varioueornis-of-battery-in-use-to-day-and-also-niimuelydescribes-the-milliampere-mctcr-ii-electro-physiology-giving-all-that-is-necessary-toa-complete-understanding-of-the-underlying-principledof-electro-therapeutics-iii-effects-of-the-electric-current-on-nutrition-in-cluding-electrolysis-catalysis-and-theg-image338068872.html
RM2AJ0A88–The American homoeopathist . N TO MEDICINE AND SURGERY. By WILLIAM HARVEY KING, M.D. This work contains seventy illustrations and treats oiall the various diseases for which electricity has beenfound useful. The various chapters contain: I. Electro Physics, with a description of the varioueornis of battery in use to day, and also niimuelydescribes the milliampere-mctcr. II Electro-Physiology, giving all that is necessary toa complete understanding of the underlying principledof Electro-Therapeutics. III. Effects of the electric current on nutrition, in-cluding electrolysis, catalysis, and theg
Increased local substrate concentrations in enzyme-DNA nanostructures as a result of engineered substrate-DNA interactions. Left: The DNA structures used here to investigate the effects of substrate-DNA binding interactions on enzyme catalysis. Colored strands are indicative of sequence. Right: Representation of enzyme-DNA nanostructures with a double-crossover DNA tile chemically conjugated to an HRP. The mechanism of increased local substrate concentration and enhanced catalysis is shown schematically: binding interactions between enzyme substrates and the DNA scaffold result in increased lo Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/increased-local-substrate-concentrations-in-enzyme-dna-nanostructures-as-a-result-of-engineered-substrate-dna-interactions-left-the-dna-structures-used-here-to-investigate-the-effects-of-substrate-dna-binding-interactions-on-enzyme-catalysis-colored-strands-are-indicative-of-sequence-right-representation-of-enzyme-dna-nanostructures-with-a-double-crossover-dna-tile-chemically-conjugated-to-an-hrp-the-mechanism-of-increased-local-substrate-concentration-and-enhanced-catalysis-is-shown-schematically-binding-interactions-between-enzyme-substrates-and-the-dna-scaffold-result-in-increased-lo-image184542349.html
RMMM6HJ5–Increased local substrate concentrations in enzyme-DNA nanostructures as a result of engineered substrate-DNA interactions. Left: The DNA structures used here to investigate the effects of substrate-DNA binding interactions on enzyme catalysis. Colored strands are indicative of sequence. Right: Representation of enzyme-DNA nanostructures with a double-crossover DNA tile chemically conjugated to an HRP. The mechanism of increased local substrate concentration and enhanced catalysis is shown schematically: binding interactions between enzyme substrates and the DNA scaffold result in increased lo
Uncompetitive enzyme inhibition, illustration. Uncompetitive enzyme inhibition is a type of reversible enzyme inhibition. An uncompetitive inhibitor (I) binds specifically to the enzyme-substrate (ES) complex and prevents the catalysis of the substrates (S) and therefore no products are formed. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/uncompetitive-enzyme-inhibition-illustration-uncompetitive-enzyme-inhibition-is-a-type-of-reversible-enzyme-inhibition-an-uncompetitive-inhibitor-i-binds-specifically-to-the-enzyme-substrate-es-complex-and-prevents-the-catalysis-of-the-substrates-s-and-therefore-no-products-are-formed-image615907111.html
RF2XP0YPF–Uncompetitive enzyme inhibition, illustration. Uncompetitive enzyme inhibition is a type of reversible enzyme inhibition. An uncompetitive inhibitor (I) binds specifically to the enzyme-substrate (ES) complex and prevents the catalysis of the substrates (S) and therefore no products are formed.
Close up of old and rusty exhaust pipe of a car Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/close-up-of-old-and-rusty-exhaust-pipe-of-a-car-image619074690.html
RM2XY582A–Close up of old and rusty exhaust pipe of a car
Toxic pollution prevention circle infographic template Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/toxic-pollution-prevention-circle-infographic-template-image601079411.html
RF2WWWEWR–Toxic pollution prevention circle infographic template
Laboratory for heterogeneous catalysis at the Max Planck Institute. Visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr / Germany Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/laboratory-for-heterogeneous-catalysis-at-the-max-planck-institute-visit-to-the-max-planck-institute-mpi-for-coal-research-on-march-4th-2022-in-muelheim-an-der-ruhr-germany-image463785078.html
RM2HXF6GP–Laboratory for heterogeneous catalysis at the Max Planck Institute. Visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr / Germany
Organometallic Chemistry The study of the chemistry of metal-carbon bonds. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/organometallic-chemistry-the-study-of-the-chemistry-of-metal-carbon-bonds-image563936493.html
RF2RNDEN1–Organometallic Chemistry The study of the chemistry of metal-carbon bonds.
Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beermageddon-festival-stoke-prior-united-kingdom-24-aug-2024-catalysis-performs-at-beermageddon-festival-stoke-prior-united-kingdom-copyright-will-tudoralamy-live-news-image618704316.html
RM2XXGBJM–Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News
Vector illustration of Elephant's toothpaste experiment Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/vector-illustration-of-elephants-toothpaste-experiment-image356980931.html
RF2BMNTPY–Vector illustration of Elephant's toothpaste experiment
Catalysis Nunciation during the Bell Tower Ceremony at Palazzo Chigi (Luigi Mistrulli/Fotogramma, Rome - 2019-09-05) p.s. la foto e' utilizzabile nel rispetto del contesto in cui e' stata scattata, e senza intento diffamatorio del decoro delle persone rappresentate Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/catalysis-nunciation-during-the-bell-tower-ceremony-at-palazzo-chigi-luigi-mistrullifotogramma-rome-2019-09-05-ps-la-foto-e-utilizzabile-nel-rispetto-del-contesto-in-cui-e-stata-scattata-e-senza-intento-diffamatorio-del-decoro-delle-persone-rappresentate-image270894601.html
RMWMM8R5–Catalysis Nunciation during the Bell Tower Ceremony at Palazzo Chigi (Luigi Mistrulli/Fotogramma, Rome - 2019-09-05) p.s. la foto e' utilizzabile nel rispetto del contesto in cui e' stata scattata, e senza intento diffamatorio del decoro delle persone rappresentate
Lille (northern France): RealCat laboratory Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-lille-northern-france-realcat-laboratory-93774318.html
Vanadium is a chemical element with the symbol V and atomic number 23. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/vanadium-is-a-chemical-element-with-the-symbol-v-and-atomic-number-23-image415993366.html
RM2F4P3NX–Vanadium is a chemical element with the symbol V and atomic number 23.
Lipids digestion. Lipolysis. Enzymes lipase that catalyzes the hydrolysis of fats. Lipid metabolism from triglyceride to Three fatty acids, and Glyce Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/lipids-digestion-lipolysis-enzymes-lipase-that-catalyzes-the-hydrolysis-of-fats-lipid-metabolism-from-triglyceride-to-three-fatty-acids-and-glyce-image604873039.html
RF2X429MF–Lipids digestion. Lipolysis. Enzymes lipase that catalyzes the hydrolysis of fats. Lipid metabolism from triglyceride to Three fatty acids, and Glyce
Demonstration fuel cell in clear plastic case Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-demonstration-fuel-cell-in-clear-plastic-case-20759661.html
RMB5NK4D–Demonstration fuel cell in clear plastic case
Denver, Colorado / USA - 06/02/20: The killing of George Floyd by Minneapolis, Minnesota Police Officers catalysis a sixth day of protest at the Color Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/denver-colorado-usa-060220-the-killing-of-george-floyd-by-minneapolis-minnesota-police-officers-catalysis-a-sixth-day-of-protest-at-the-color-image360284499.html
RF2BX4AFF–Denver, Colorado / USA - 06/02/20: The killing of George Floyd by Minneapolis, Minnesota Police Officers catalysis a sixth day of protest at the Color
Lock and key model. The correct and incorrect keys. Vector illustration Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/lock-and-key-model-the-correct-and-incorrect-keys-vector-illustration-image561477396.html
RF2RHDE44–Lock and key model. The correct and incorrect keys. Vector illustration
Pierre Louis Dulong, French Chemist Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-pierre-louis-dulong-french-chemist-135090675.html
RMHRNWEY–Pierre Louis Dulong, French Chemist
Conversion of pyruvate into acetyl coenzyme A, illustration. Pyruvate is converted into Acetyl CoA in the mitochondrial matrix by a oxidative decarboxylation reaction catalysed by an enzyme complex pyruvate dehydrogenase. The catalysis occurs by substrate channelling where the substrate does not leave the enzyme throughout the reaction. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/conversion-of-pyruvate-into-acetyl-coenzyme-a-illustration-pyruvate-is-converted-into-acetyl-coa-in-the-mitochondrial-matrix-by-a-oxidative-decarboxylation-reaction-catalysed-by-an-enzyme-complex-pyruvate-dehydrogenase-the-catalysis-occurs-by-substrate-channelling-where-the-substrate-does-not-leave-the-enzyme-throughout-the-reaction-image615907106.html
RF2XP0YPA–Conversion of pyruvate into acetyl coenzyme A, illustration. Pyruvate is converted into Acetyl CoA in the mitochondrial matrix by a oxidative decarboxylation reaction catalysed by an enzyme complex pyruvate dehydrogenase. The catalysis occurs by substrate channelling where the substrate does not leave the enzyme throughout the reaction.
Oldenburg, Germany, trial of elephant toothpaste Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/stock-photo-oldenburg-germany-trial-of-elephant-toothpaste-55874101.html
RMD6W7YH–Oldenburg, Germany, trial of elephant toothpaste
Green chemistry principles green concept icons Stock Vectorhttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/green-chemistry-principles-green-concept-icons-image600973113.html
RF2WWMK9D–Green chemistry principles green concept icons
Laboratory for heterogeneous catalysis at the Max Planck Institute. Visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr/Germany Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/laboratory-for-heterogeneous-catalysis-at-the-max-planck-institute-visit-to-the-max-planck-institute-mpi-for-coal-research-on-march-4th-2022-in-muelheim-an-der-ruhrgermany-image463784953.html
RM2HXF6C9–Laboratory for heterogeneous catalysis at the Max Planck Institute. Visit to the Max Planck Institute (MPI) for coal research, on March 4th, 2022 in Muelheim an der Ruhr/Germany
Person holding mobile phone with web page of Swiss specialty chemicals company Clariant AG on screen in front of logo. Focus on cellphone display. Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/person-holding-mobile-phone-with-web-page-of-swiss-specialty-chemicals-company-clariant-ag-on-screen-in-front-of-logo-focus-on-cellphone-display-image411742794.html
RF2EWTE3P–Person holding mobile phone with web page of Swiss specialty chemicals company Clariant AG on screen in front of logo. Focus on cellphone display.
Chemistry building Universite des Sciences et Technologies de Lille France Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/chemistry-building-universite-des-sciences-et-technologies-de-lille-image8636109.html
RMAM12ME–Chemistry building Universite des Sciences et Technologies de Lille France
Motion. Architecture. Chemical Catalysis. Geology of Pennsylvania. New Fencing Material. Harvesting Turnips., scientific american, 1851-12-13 Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/motion-architecture-chemical-catalysis-geology-of-pennsylvania-new-fencing-material-harvesting-turnips-scientific-american-1851-12-13-image334299347.html
RM2ABTJ6B–Motion. Architecture. Chemical Catalysis. Geology of Pennsylvania. New Fencing Material. Harvesting Turnips., scientific american, 1851-12-13
Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News Stock Photohttps://www.alamy.com/image-license-details/?v=1https://www.alamy.com/beermageddon-festival-stoke-prior-united-kingdom-24-aug-2024-catalysis-performs-at-beermageddon-festival-stoke-prior-united-kingdom-copyright-will-tudoralamy-live-news-image618695769.html
RM2XXG0ND–Beermageddon Festival, Stoke Prior United Kingdom. 24 Aug 2024. Catalysis Performs at Beermageddon Festival, Stoke Prior, United Kingdom. Copyright Will Tudor/Alamy Live News
Download Confirmation
Please complete the form below. The information provided will be included in your download confirmation