{"id":125287,"date":"2012-08-22T10:05:05","date_gmt":"2012-08-22T13:05:05","guid":{"rendered":"http:\/\/revistapesquisa.fapesp.br\/?p=125287"},"modified":"2015-11-27T13:25:54","modified_gmt":"2015-11-27T15:25:54","slug":"in-search-of-safety-and-comfort","status":"publish","type":"post","link":"https:\/\/revistapesquisa.fapesp.br\/en\/in-search-of-safety-and-comfort\/","title":{"rendered":"In Search of Safety and Comfort"},"content":{"rendered":"<div id=\"attachment_203660\" style=\"max-width: 300px\" class=\"wp-caption alignright\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-203660\" src=\"http:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-300x300.jpg\" alt=\"Cane fields and orange groves in Gavi\u00e3o Peixoto (SP) gave way to immense Embraer hangars \" width=\"290\" height=\"291\" srcset=\"https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-300x300.jpg 300w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-494x496.jpg 494w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-32x32.jpg 32w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-64x64.jpg 64w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-96x96.jpg 96w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-128x128.jpg 128w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_15-e1447778221104-1020x1024.jpg 1020w\" sizes=\"auto, (max-width: 290px) 100vw, 290px\" \/><p class=\"wp-caption-text\"><span class=\"media-credits-inline\">EMBRAER<\/span>Cane fields and orange groves in Gavi\u00e3o Peixoto (SP) gave way to immense Embraer hangars<span class=\"media-credits\">EMBRAER<\/span><\/p><\/div>\n<p>A little more than ten years ago, the city of Gavi\u00e3o Peixoto, in the southwestern part of the state of S\u00e3o Paulo, population 4,000, was emerging timidly from an immense sugarcane field dotted here and there with orange groves. Today, the area next to the urban center is dominated by a 5,000-meter runway, the longest in Latin America, and an Embraer factory. There, in addition to conducting test flights, the company originally known as Empresa Brasileira de Aeronautica S.A. makes the wings for the Embraer 190 and 195 aircraft and builds the Phenom 100 and 300 executive jets, as well as the Super Tucano \u2013 a multipurpose military turboprop plane. It is also there that the company overhauls fighter planes for the Brazilian Air Force (FAB), which is why the region is considered a national security area \u2013 one that the imagination of the ill-advised has dubbed \u201cBrazil\u2019s Area 51,\u201d in a reference to the American military base situated in the Nevada desert.<\/p>\n<p>The landscape and future prospects of Gavi\u00e3o Peixoto began to change early in the new millennium, precisely on June 24, 2000, when Mario Covas, then governor of the state of S\u00e3o Paulo, and Maur\u00edcio Botelho, then president of Embraer, announced that the city had been chosen as the site for the company\u2019s fourth factory, an enterprise involving an investment of R$340 million that would create 2,000 jobs.<\/p>\n<p>Encouragement from the state was crucial in Embraer\u2019s decision to set up in Gavi\u00e3o Peixoto: the state government gave the company a 35-year grant, renewable for 35 more years, to a 15 km2 tract of land, along with the basic infrastructure: water, electricity, paved roads, etc. An influential factor, of course, was that the future factory would be close to the S\u00e3o Carlos and Araraquara universities and research centers. But points were also scored\u2014lots of them\u2014by support from FAPESP. Less than a month after the announcement of the new factory, that assistance was made available under the Partnership for Technological Innovation (PITE).<\/p>\n<p>Over the past 12 years, FAPESP has spent R$16.4 million on assistance to eight projects, also receiving counterpart funds from Embraer. \u201cIt was a strategic partnership that enabled the company to move forward in mastering technology and increase its competitive edge,\u201d said Jorge Ramos, Embraer\u2019s director of technological development.<\/p>\n<p>Many of the projects carried out in partnership with universities and research institutions have produced a body of engineering knowledge that has been\u2014or could in the future be\u2014applied to executive aviation or commercial and military aviation. The project entitled Composite materials in aircraft structures, which investigates solutions using carbon fiber composites that reduce aircraft weight and improve performance when compared to conventional materials, has already identified methodology that could be incorporated into the company\u2019s manufacture of composite materials components at a factory it is building in the city of \u00c9vora, in Portugal.<\/p>\n<p>The research projects cover various aviation-related topics. In three of those that have been financed and are still in progress, researchers from several universities and research institutions are looking for solutions to make aircraft more comfortable and quieter, as well as safer.<\/p>\n<p>For example, under the project entitled Cabin comfort: development and integrated analysis of criteria and comfort, begun in 2008, researchers constructed an environment that simulates the cabins of the Embraer 170 and 190 aircraft in order to study operational parameters such as temperature, pressure, noise, vibration, lighting and ergonomics, as well as odors and materials. The intent is to evaluate and integrate the various aspects of passenger comfort and establish planning and design parameters. This particular piece of research equipment, which had never existed in Brazil, was installed at the Thermal and Environmental Engineering Laboratory (LETE) at the University of S\u00e3o Paulo\u2019s Polytechnic School (Poli). It was used last year in a survey of hundreds of passengers who regularly travel by air, during which they were quizzed about in-flight comfort conditions. Jurandir Itizo Yanagihara, project coordinator, suggested to Ag\u00eancia FAPESP that one of the trends they identified was the inclusion, in large aircraft, of alternative spaces for passenger interaction.<\/p>\n<p>Legal restrictions on aircraft noise have also spurred S\u00e3o Paulo research. In Silent aircraft: an investigation into aeroacoustics, researchers are developing noise-suppression methods and equipment. They are trying to identify the sources of noise \u2013 whether it starts in the wings, the flaps, the engine, or the landing gear, for example \u2013 and measure the intensity of the sound by using huge sets of microphones installed at the head of the flight test landing strip at Gavi\u00e3o Peixoto. Following completion of the project\u2019s first phase, studies resulted in submission of two applications for patents related to noise attenuators. Participating were 70 researchers from Embraer, the University of S\u00e3o Paulo (USP), the University of Bras\u00edlia, and two federal universities: Santa Catarina (UFSC) and Uberl\u00e2ndia (UFU).<\/p>\n<div id=\"attachment_203662\" style=\"max-width: 300px\" class=\"wp-caption alignleft\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-203662\" src=\"http:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Legacy_600_Cockpit_alta-300x229.jpg\" alt=\"The Cabin comfort project simulates Embraer models in order to test temperature, pressure, noise, vibration, lighting, ergonomics, and odors.\" width=\"290\" height=\"221\" srcset=\"https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Legacy_600_Cockpit_alta-300x229.jpg 300w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Legacy_600_Cockpit_alta-649x496.jpg 649w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Legacy_600_Cockpit_alta-1024x782.jpg 1024w\" sizes=\"auto, (max-width: 290px) 100vw, 290px\" \/><p class=\"wp-caption-text\"><span class=\"media-credits-inline\">EMBRAER<\/span>The <em>Cabin comfort<\/em> project simulates Embraer models in order to test temperature, pressure, noise, vibration, lighting, ergonomics, and odors.<span class=\"media-credits\">EMBRAER<\/span><\/p><\/div>\n<p><strong>A Research Network<\/strong><br \/>\nAll these projects, by the way, involve several universities and research institutions in S\u00e3o Paulo, and even some from other Brazilian states. The cabin comfort project, for example, included not only researchers from USP, but also some from the Federal University of S\u00e3o Carlos (UFSCar) and the UFSC. The project entitled Advanced applications in computational fluid mechanics for high-performance aircraft brought together an even larger number of institutions: the Technological Institute of Aeronautics (ITA), the Aeronautics and Space Institute\/ Aerospace Technical Center (IAE\/CTA), the S\u00e3o Carlos Engineering School (EESC-USP), Poli (USP), the UFSC, the UFU, and the State University of Campinas (Unicamp). It was expected that the investigations would result in the creation of a Computational Fluid Mechanics (CFD) unit that would perform numerical simulations of airflow, thus helping to define the aerodynamic profile of an aircraft. The Embraer director emphasized that \u201cthis project enabled us to put together a broad research network and share the mastery of that tool so essential to aviation.\u201d<\/p>\n<p><strong>Shared Knowledge<\/strong><br \/>\nWell beyond its contribution to innovation at Embraer, the PITE leaves an important legacy to the partner institutions: the creation and advancement of knowledge, an impetus to the training of highly-skilled human resources, and a physical research infrastructure that is installed at the science and technology institutions (ICTs) to be used in training new personnel and also made available for use in investigation by other sectors of Brazilian industry. The noise metering technology and the attenuators developed in the aircraft noise suppression project, for example, could well become important for refrigerator manufacturers. Similarly, the passenger comfort evaluation cabin installed at USP\u2019s Thermal and Environmental Engineering Laboratory holds important data for use by auto manufacturers in improving the performance of passenger vehicles.<\/p>\n<p>The PITE virtuous circle focused on the development of aerospace science and technology will be complete when its results also serve to lengthen the chain of Brazilian suppliers to the world\u2019s third largest manufacturer of commercial aircraft. At present, the great majority of the nearly 50,000 parts that make up an Embraer plane are imported. It is true that the aircraft company market is global. But it is impossible to ignore the fact that the supply chain in this country has not grown at the same pace as Embraer\u2019s evolution; the company has 17,000 employees and the domestic supplier firms employ only about 5,000. Boeing, the world\u2019s biggest aircraft manufacturer, has 170,000 employees, while the U.S. aerospace supplier chain employs more than 620,000 people.<\/p>\n<p>The Composite materials in aircraft structures project is an example of a public policy calibrated to promote a more robust aviation production chain as well as to impact other sectors of Brazilian industry. The project involves, in addition to FAPESP, the S\u00e3o Paulo Institute for Technological Research (IPT), Poli (USP), the Electrotechnical and Energy Institute at USP (IEE\/USP), the EESC-USP, Unicamp, the Guaratinguet\u00e1 Engineering School (FEG) at S\u00e3o Paulo State University (Unesp), and the ITA. Plans for the project include installation of a Light Structures Laboratory (LEL) of the latest generation at the S\u00e3o Jos\u00e9 dos Campos Technological Park. The Brazilian Development Bank (BNDES) has put R$27.6 million towards the installation of the laboratory and the Brazilian Innovation Agency (Finep) provided another R$8.3 million. FAPESP and the IPT rounded out the investment, which totals R$44.2 million.<\/p>\n<p>Strictly speaking, the LEL will be organized around four structural projects, two of them oriented toward metallic materials and two toward carbon fiber composite materials. Properly adapted composites can be used to fill in spaces in the structure of a plane, advantageously replacing aluminum and steel. The challenge is to discover, test, and certify the best compositions. This new technology, vital to the aircraft industry, can also be applied in other sectors, such as aerospace, petroleum, automotive manufacturing, and wind energy, as Sergio M\u00fcller Fracino, of the Department of Aerospace Science and Technology at the ITA, who heads the project, told Ag\u00eancia FAPESP during the FAPESP-ABC Workshop on University-Company Collaborative Research held in November 2011.<\/p>\n<p>FAPESP\u2019s relationship with Embraer became even closer at the end of last year, when the two partners joined with Boeing to collaborate in research and development of biofuels for aviation. That agreement resulted in a letter of intent, signed in October, calling for the development of a detailed study on the opportunities and challenges involved in creating, in Brazil, a sustainable and economically efficient industry to produce and distribute bio-derived aviation fuel.<\/p>\n<p>This study is expected to help establish, here in Brazil, a center for research focused on the development of aviation biofuel in a partnership between the industry and FAPESP in order to vigorously pursue a long-term research agenda. The center would be created through a public selection procedure and in accordance with FAPESP\u2019s Research, Innovation and Dissemination Centers Program (RIDC), suggested Suely Vilela, member of the Foundation\u2019s Board of Trustees.<\/p>\n<div id=\"attachment_203667\" style=\"max-width: 300px\" class=\"wp-caption alignright\"><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-203667\" src=\"http:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_18-300x200.jpg\" alt=\"The Composite materials in aircraft structures project studies the use of carbon fiber to reduce aircraft weight and improve performance.\" width=\"290\" height=\"193\" srcset=\"https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_18-300x200.jpg 300w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_18-744x496.jpg 744w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_Assembly_line_18-1024x683.jpg 1024w\" sizes=\"auto, (max-width: 290px) 100vw, 290px\" \/><p class=\"wp-caption-text\"><span class=\"media-credits-inline\">EMBRAER<\/span>The <em>Composite materials in aircraft structures<\/em> project studies the use of carbon fiber to reduce aircraft weight and improve performance.<span class=\"media-credits\">EMBRAER<\/span><\/p><\/div>\n<p><strong>Patents<\/strong><br \/>\nConcomitantly with the increase in its investments in pre-competitive research during the past six years, Embraer has set up a separate office to manage the intellectual property generated during the development of technology, products, services, and processes. Previously, the company preferred to resort to industrial secrecy rules to protect its intellectual creations, a method that met its needs for protection during the development of a \u201ccomplex product that has a lengthy development cycle, i.e., a natural protection for solutions that are not very visible,\u201d Jorge Ramos explained. \u201cAs we intensified our focus on research, we identified other needs and opportunities for protection and exploitation of our intellectual property rights.\u201d<\/p>\n<p>Since then, Embraer has filed 272 patent applications in Brazil and abroad. \u201cThese are product solution and manufacturing process patents,\u201d he explained. A committee meets every month to review the inventions. The program is getting larger every year, and is consolidating a culture of intellectual property protection among company employees.<\/p>\n<p><strong>New Markets<\/strong><br \/>\nDuring the 12 years since adopting the PITE, while it was investing in its competitiveness, Embraer was growing and consolidating its position as a global company. It ended last year with sales of US$5.6 billion, ranking third among the world\u2019s largest builders of commercial aircraft. It entered 2012 with US$15 billion in its order portfolio. That figure includes the order from the U.S. Air Force for 20 Super Tucano planes, worth US$355 million, but temporarily suspended after Hawker Beechcraft, another manufacturer, challenged the bidding procedure in an American court. The Super Tucano would be used in patrols in Afghanistan.<\/p>\n<p>Embraer promises to go even further in the coming years. It is building two factories in Portugal, a market in which it has had a presence since 2004. There it will build metallic and composite materials components that will be used initially in logistical support for executive jets, and later will also serve the commercial aviation segment.<\/p>\n<p>Another new development is the company\u2019s decision to modify its position in the Chinese market. Its first Chinese factory was built in 2002 to produce the ERJ 145, a 50-passenger plane. Because that country has changed, the company is now investing in the luxury market. It plans to adapt the Chinese factory to build the Legacy 650, an executive jet that uses the same platform as the 145, but carries only 12 passengers and can meet the demands from companies in a country of continental dimensions and its new billionaires.<\/p>\n<p>Embraer is now getting ready to enter the satellite market. Along with Telebras, it announced, in a \u201cnotice of material fact\u201d published on the Brazilian Securities and Exchange Commission (CVM) website, the signature of a memorandum of understanding leading to formation of a joint company to manage the Brazilian Geostationary Satellite (SGB) project. The new company is expected to meet federal government needs \u201crelating to the satellite development plan, including the National Broadband Program and strategic defense and governmental communications,\u201d the communiqu\u00e9 said.<\/p>\n<div id=\"attachment_203663\" style=\"max-width: 310px\" class=\"wp-caption alignleft\"><img loading=\"lazy\" decoding=\"async\" class=\"size-medium wp-image-203663\" src=\"http:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_AD_STC_000404_alta-300x200.jpg\" alt=\"Production of the military turboprop Tucano led the city of Gavi\u00e3o Peixoto to be called \u201cBrazil\u2019s Area 51,\u201d in a reference to the U.S. base in the Nevada desert.\" width=\"300\" height=\"200\" srcset=\"https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_AD_STC_000404_alta-300x200.jpg 300w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_AD_STC_000404_alta-744x496.jpg 744w, https:\/\/revistapesquisa.fapesp.br\/wp-content\/uploads\/2013\/07\/1_AD_STC_000404_alta-1024x682.jpg 1024w\" sizes=\"auto, (max-width: 300px) 100vw, 300px\" \/><p class=\"wp-caption-text\"><span class=\"media-credits-inline\">EMBRAER<\/span>Production of the military turboprop Tucano led the city of Gavi\u00e3o Peixoto to be called \u201cBrazil\u2019s Area 51,\u201d in a reference to the U.S. base in the Nevada desert<span class=\"media-credits\">EMBRAER<\/span><\/p><\/div>\n<p><strong>Back to Gavi\u00e3o Peixoto<\/strong><br \/>\nEmbraer\u2019s presence is provoking huge changes in the city of Gavi\u00e3o Peixoto. In 2000, the year when the governor announced the installation of the enterprise, the city\u2019s revenues from the Goods and Services Tax (ICMS) totaled R$1 million. In 2011, that figure jumped to R$5 million. \u201cIn 2000, we had a Federation of Industries of the State of Rio de Janeiro (Firjan) Municipal Development Index of 0.66; today we are at 0.79, and our educational and health facilities are highly developed. The figures and indices show the progress we have made,\u201d said Mayor Ronivaldo Sampaio Fratuci.<\/p>\n<p>Embraer is still the only company that has built a facility in the city\u2019s aviation park. \u201cWe still don\u2019t have an industrial district, but are working on establishing one soon. That will make it more likely that aviation supplier companies, or even other industrial companies, will come to this city,\u201d he said.<\/p>\n<p>The low skill level of the city\u2019s population has prevented the Embraer factory from making changes in its employment structure. \u201cA lot of the factory workers live in Araraquara or Mat\u00e3o. Many of them grew up in big cities and would rather live in that kind of environment. Some local people work at Embraer as janitors, food service workers, security guards and providers of other services,\u201d he reported. But most people in Gavi\u00e3o Peixoto still work in the sugarcane fields or orange groves.<\/p>\n<p>The city is investing in vocational training in order to generate more job opportunities for its people. \u201cBetween 2009 and 2011, we awarded more than 3,000 National Industrial Training Service (SenaiENAI) training certificates in a wide variety of fields, many of them compatible with the requirements of the aviation industry, such as electrician, hydraulic and pneumatic mechanic, auto painter, and others.\u201d<\/p>\n<p>The mayor is certain that the city also has a potential to become a center of ecotourism. \u201cWe are investing in that idea. We have already started developing the project and held some events on the Jacar\u00e9 Gua\u00e7u river. The project will eventually bear fruit, and Embraer, of course, will be part of that story.\u201d<\/p>\n<p><strong>From our archives<br \/>\n<\/strong><em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2012\/04\/05\/well-being-in-the-air\/?\" target=\"_blank\">Well-being in the air<\/a> &#8211;<\/em>\u00a0Issue 194 \u2013 April 2012<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2009\/01\/01\/quieter-aircraft\/?\" target=\"_blank\">Quieter aircraft<\/a>\u00a0&#8211;<\/em>\u00a0Issue 155 \u2013 January 2009<br \/>\n<em>Here and throughout Brazil &#8211;<\/em>\u00a0Issue 143 \u2013 January 2008<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2007\/03\/01\/science-in-companies\/?\" target=\"_blank\">Science in companies<\/a>\u00a0&#8211;<\/em>\u00a0Issue 133 \u2013 March 2007<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2006\/10\/01\/flight-plan\/?\" target=\"_blank\">Flight plan<\/a>\u00a0&#8211;<\/em>\u00a0Issue 128 \u2013 October 2006<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2006\/08\/01\/in-flight-impact\/?\" target=\"_blank\">In-flight impact<\/a>\u00a0&#8211;\u00a0<\/em>Issue 126 \u2013 August 2006<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2004\/03\/11\/lightness-in-the-air\/?\" target=\"_blank\">Lightness in the air<\/a><\/em>\u00a0&#8211;\u00a0Issue 97 \u2013 March 2004<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2003\/11\/01\/embraer-flies-higher\/?\" target=\"_blank\">Embraer flying higher<\/a>\u00a0&#8211;<\/em>\u00a0Issue 93 \u2013 November 2003<br \/>\n<em>Extra toughness in the air<\/em>\u00a0Issue 85 \u2013 March 2003<br \/>\n<em>Academic partnerships &#8211;<\/em>\u00a0Issue 82 \u2013 December 2002<br \/>\n<em>Aerodynamic tests &#8211;<\/em>\u00a0Issue 81 \u2013 November 2002<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2002\/07\/01\/embraer-flying-high\/?\" target=\"_blank\">Embraer flying high<\/a>\u00a0&#8211;<\/em>\u00a0Issue 77 \u2013 July 2002<br \/>\n<em>More resistant to fatigue and corrosion &#8211;<\/em>\u00a0Issue 76 \u2013 June 2002<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2002\/05\/01\/high-performance\/\" target=\"_blank\">High performance<\/a>\u00a0&#8211;<\/em>\u00a0Issue 75 \u2013 May 2002<br \/>\n<em><a href=\"http:\/\/revistapesquisa.fapesp.br\/en\/2000\/06\/08\/embraer-stays-in-s%C3%A3o-paulo\/?\" target=\"_blank\">Embraer stays in S\u00e3o Paulo<\/a>\u00a0&#8211;<\/em>\u00a0Issue 54 \u2013 June 2000<\/p>\n","protected":false},"excerpt":{"rendered":"Universities and Embraer are creating a knowledge base to improve aircraft ","protected":false},"author":153,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"_exactmetrics_skip_tracking":false,"_exactmetrics_sitenote_active":false,"_exactmetrics_sitenote_note":"","_exactmetrics_sitenote_category":0,"footnotes":""},"categories":[1242],"tags":[228,243],"coauthors":[469],"class_list":["post-125287","post","type-post","status-publish","format-standard","hentry","category-technology-special-2","tag-engineering","tag-innovation"],"acf":[],"_links":{"self":[{"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/posts\/125287","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/users\/153"}],"replies":[{"embeddable":true,"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/comments?post=125287"}],"version-history":[{"count":0,"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/posts\/125287\/revisions"}],"wp:attachment":[{"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/media?parent=125287"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/categories?post=125287"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/tags?post=125287"},{"taxonomy":"author","embeddable":true,"href":"https:\/\/revistapesquisa.fapesp.br\/en\/wp-json\/wp\/v2\/coauthors?post=125287"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}