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Christophe Balistreri
christop.balistre
880033740
Balistreri
Christophe
christophe.balistreri@hesge.ch
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On this site powder snow avalanches which exhibit difficult to measure flow phenomena in the front part of the cloud can be triggered. The mix of pressurised air, snow powder, and snow balls presents very harsh conditions for scientific measurement systems. None of the instruments available on the market are able to measure these rapid phenomena. Instruments of a new type that would survive the harsh conditions while recording the fast dynamics would open new horizons in our knowledge of these very destructive natural hazards. These avalanches would be an ideal test bed for these new instruments which could then be used for the observation of other catastrophic natural phenomena, like cyclones or cumulonimbus clouds.\r\nThe sensing electronics foreseen for the ball motion is based around inertial sensors (accelerometers and gyroscopes) and absolute sensors (magnetometer and GPS). The data collected from these sensors will be stored in local static memory for later readout and data analysis. The ball must also be equipped with a locator beacon so that it can be found, even if the ball ends up buried in snow. \r\nThe mechanical design of the ball will take into account necessary requirements such as toughness that ensures the safety of the electronics within during what might be a quite violent ride inside a fast moving air\/snow\/ice cloud, including possible collisions with larger ice or snow blocks. The aerodynamics of the ball will also be studied by CFD simulation technics and experiments, to give it the optimal properties for it to be captured and carried by the snow cloud, while tracking the internal avalanche flow with high fidelity.\r\nA thorough and well thought out test program will be carried out in order to perform calibration, verify the capability of the electronics and validate the trajectory algorithms. These tests will include various lab tests as well as field tests at the Sionne test site. \r\n"},"en":{"id":18798,"title":"Sonde autonome pour l'\u00e9tude \u00e0 haute r\u00e9solution d'\u00e9coulements en milieux difficiles","description":"\tThe study of certain types of phenomena, such as for example the rapid air motion inside thunder clouds, or the violent motions associated with avalanches present a challenge for sensing technologies. The difficulties are to get the sensors to where they need to be, to have them make a reliable measurement, and to have them survive the experience. We propose a free-moving measurement system in the form of a ball, which is equipped with sensors to track its own motion. \r\nWe would have the opportunity to test the use of such a system at an avalanche test site in la Vall\u00e9e de la Sionne. On this site powder snow avalanches which exhibit difficult to measure flow phenomena in the front part of the cloud can be triggered. The mix of pressurised air, snow powder, and snow balls presents very harsh conditions for scientific measurement systems. None of the instruments available on the market are able to measure these rapid phenomena. Instruments of a new type that would survive the harsh conditions while recording the fast dynamics would open new horizons in our knowledge of these very destructive natural hazards. These avalanches would be an ideal test bed for these new instruments which could then be used for the observation of other catastrophic natural phenomena, like cyclones or cumulonimbus clouds.\r\nThe sensing electronics foreseen for the ball motion is based around inertial sensors (accelerometers and gyroscopes) and absolute sensors (magnetometer and GPS). The data collected from these sensors will be stored in local static memory for later readout and data analysis. The ball must also be equipped with a locator beacon so that it can be found, even if the ball ends up buried in snow. \r\nThe mechanical design of the ball will take into account necessary requirements such as toughness that ensures the safety of the electronics within during what might be a quite violent ride inside a fast moving air\/snow\/ice cloud, including possible collisions with larger ice or snow blocks. The aerodynamics of the ball will also be studied by CFD simulation technics and experiments, to give it the optimal properties for it to be captured and carried by the snow cloud, while tracking the internal avalanche flow with high fidelity.\r\nA thorough and well thought out test program will be carried out in order to perform calibration, verify the capability of the electronics and validate the trajectory algorithms. These tests will include various lab tests as well as field tests at the Sionne test site. \r\n"},"de":{"id":18799,"title":"Sonde autonome pour l'\u00e9tude \u00e0 haute r\u00e9solution d'\u00e9coulements en milieux difficiles","description":"\tThe study of certain types of phenomena, such as for example the rapid air motion inside thunder clouds, or the violent motions associated with avalanches present a challenge for sensing technologies. The difficulties are to get the sensors to where they need to be, to have them make a reliable measurement, and to have them survive the experience. We propose a free-moving measurement system in the form of a ball, which is equipped with sensors to track its own motion. \r\nWe would have the opportunity to test the use of such a system at an avalanche test site in la Vall\u00e9e de la Sionne. On this site powder snow avalanches which exhibit difficult to measure flow phenomena in the front part of the cloud can be triggered. The mix of pressurised air, snow powder, and snow balls presents very harsh conditions for scientific measurement systems. None of the instruments available on the market are able to measure these rapid phenomena. Instruments of a new type that would survive the harsh conditions while recording the fast dynamics would open new horizons in our knowledge of these very destructive natural hazards. These avalanches would be an ideal test bed for these new instruments which could then be used for the observation of other catastrophic natural phenomena, like cyclones or cumulonimbus clouds.\r\nThe sensing electronics foreseen for the ball motion is based around inertial sensors (accelerometers and gyroscopes) and absolute sensors (magnetometer and GPS). The data collected from these sensors will be stored in local static memory for later readout and data analysis. The ball must also be equipped with a locator beacon so that it can be found, even if the ball ends up buried in snow. \r\nThe mechanical design of the ball will take into account necessary requirements such as toughness that ensures the safety of the electronics within during what might be a quite violent ride inside a fast moving air\/snow\/ice cloud, including possible collisions with larger ice or snow blocks. The aerodynamics of the ball will also be studied by CFD simulation technics and experiments, to give it the optimal properties for it to be captured and carried by the snow cloud, while tracking the internal avalanche flow with high fidelity.\r\nA thorough and well thought out test program will be carried out in order to perform calibration, verify the capability of the electronics and validate the trajectory algorithms. These tests will include various lab tests as well as field tests at the Sionne test site. \r\n"}},"id":89927,"acronym":"SensorBall","mainTitle":"Sonde autonome pour l'\u00e9tude \u00e0 haute r\u00e9solution d'\u00e9coulements en milieux difficiles","mainDescription":"\tThe study of certain types of phenomena, such as for example the rapid air motion inside thunder clouds, or the violent motions associated with avalanches present a challenge for sensing technologies. The difficulties are to get the sensors to where they need to be, to have them make a reliable measurement, and to have them survive the experience. We propose a free-moving measurement system in the form of a ball, which is equipped with sensors to track its own motion. \r\nWe would have the opportunity to test the use of such a system at an avalanche test site in la Vall\u00e9e de la Sionne. On this site powder snow avalanches which exhibit difficult to measure flow phenomena in the front part of the cloud can be triggered. The mix of pressurised air, snow powder, and snow balls presents very harsh conditions for scientific measurement systems. None of the instruments available on the market are able to measure these rapid phenomena. Instruments of a new type that would survive the harsh conditions while recording the fast dynamics would open new horizons in our knowledge of these very destructive natural hazards. These avalanches would be an ideal test bed for these new instruments which could then be used for the observation of other catastrophic natural phenomena, like cyclones or cumulonimbus clouds.\r\nThe sensing electronics foreseen for the ball motion is based around inertial sensors (accelerometers and gyroscopes) and absolute sensors (magnetometer and GPS). The data collected from these sensors will be stored in local static memory for later readout and data analysis. The ball must also be equipped with a locator beacon so that it can be found, even if the ball ends up buried in snow. \r\nThe mechanical design of the ball will take into account necessary requirements such as toughness that ensures the safety of the electronics within during what might be a quite violent ride inside a fast moving air\/snow\/ice cloud, including possible collisions with larger ice or snow blocks. The aerodynamics of the ball will also be studied by CFD simulation technics and experiments, to give it the optimal properties for it to be captured and carried by the snow cloud, while tracking the internal avalanche flow with high fidelity.\r\nA thorough and well thought out test program will be carried out in order to perform calibration, verify the capability of the electronics and validate the trajectory algorithms. These tests will include various lab tests as well as field tests at the Sionne test site. \r\n","value":"180000.00","finished":true,"pilier":6,"url":null,"keywords":"Avalanche, Axe strat\u00e9gique autres, A\u00e9rodynamique, Electronique de mesure, Embedded system, Locator beacon, Sonde, Syst\u00e8mes embarqu\u00e9s, accelerometer, dr\u00f4ne","disciplines":[],"axes":[],"partners":[{"id":1844044,"name":"","confidential":false,"types":[{"id":3,"code":"RP"},{"id":4,"code":"CO"}],"institution":"VS - Institut Syst\u00e8mes industriels","class":"academique"},{"id":1844045,"name":"","confidential":false,"types":[{"id":4,"code":"CO"}],"institution":"hepia inSTI","class":"academique"},{"id":1844046,"name":"Andersson Alexandra","confidential":false,"types":[{"id":3,"code":"RP"},{"id":4,"code":"CO"}],"institution":"VS - Institut Syst\u00e8mes industriels","class":"academique"}],"collaborators":[{"id":7789432,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"pascal.sartoret","project":89927},{"id":7789433,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"steve.gallay","project":89927},{"id":7789434,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"gilbert.maitre","project":89927},{"id":7789435,"role":"RP","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"alexandr.andersso","project":89927},{"id":7789436,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"adam.true","project":89927},{"id":7789437,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"tristan.renon","project":89927},{"id":7789438,"role":"CO","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"patrick.haas","project":89927},{"id":7789439,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"christop.balistre","project":89927}],"dataHub":true,"startAt":"2018-11-01T00:00:00+01:00","endAt":"2020-07-31T00:00:00+02:00","fundingSource":"HES-SO Rectorat","publications":[],"projectUrl":null,"repo_name":null}}
{"id":7781908,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"christop.balistre","project":{"translations":{"fr":{"id":20565,"title":"LTA 2023.","description":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . Hepia et Unige entendent :\r\na) proposer des mandats de prestations et mettre \u00e0 disposition des initiatives individuelles (acad\u00e9miques ou industrielles) des comp\u00e9tences et des technologies de haut niveau pr\u00e9sentes aupr\u00e8s des hautes \u00e9coles susmentionn\u00e9es ;\r\nb) valoriser les laboratoires existants et rendre tout nouvel investissement efficient ;\r\nc) offrir un guichet unique aux entreprises et leur facilit\u00e9 l'acc\u00e8s aux \u00e9quipements et aux groupes de recherche.\r\n"},"en":{"id":20566,"title":"LTA 2023.","description":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . Hepia et Unige entendent :\r\na) proposer des mandats de prestations et mettre \u00e0 disposition des initiatives individuelles (acad\u00e9miques ou industrielles) des comp\u00e9tences et des technologies de haut niveau pr\u00e9sentes aupr\u00e8s des hautes \u00e9coles susmentionn\u00e9es ;\r\nb) valoriser les laboratoires existants et rendre tout nouvel investissement efficient ;\r\nc) offrir un guichet unique aux entreprises et leur facilit\u00e9 l'acc\u00e8s aux \u00e9quipements et aux groupes de recherche.\r\n"},"de":{"id":20567,"title":"LTA 2023.","description":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . Hepia et Unige entendent :\r\na) proposer des mandats de prestations et mettre \u00e0 disposition des initiatives individuelles (acad\u00e9miques ou industrielles) des comp\u00e9tences et des technologies de haut niveau pr\u00e9sentes aupr\u00e8s des hautes \u00e9coles susmentionn\u00e9es ;\r\nb) valoriser les laboratoires existants et rendre tout nouvel investissement efficient ;\r\nc) offrir un guichet unique aux entreprises et leur facilit\u00e9 l'acc\u00e8s aux \u00e9quipements et aux groupes de recherche.\r\n"}},"id":123374,"acronym":"LTA_2023","mainTitle":"LTA 2023.","mainDescription":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . Hepia et Unige entendent :\r\na) proposer des mandats de prestations et mettre \u00e0 disposition des initiatives individuelles (acad\u00e9miques ou industrielles) des comp\u00e9tences et des technologies de haut niveau pr\u00e9sentes aupr\u00e8s des hautes \u00e9coles susmentionn\u00e9es ;\r\nb) valoriser les laboratoires existants et rendre tout nouvel investissement efficient ;\r\nc) offrir un guichet unique aux entreprises et leur facilit\u00e9 l'acc\u00e8s aux \u00e9quipements et aux groupes de recherche.\r\n","value":null,"finished":true,"pilier":5,"url":null,"keywords":null,"disciplines":[],"axes":[],"partners":[{"id":1841405,"name":"","confidential":false,"types":[{"id":3,"code":"RP"},{"id":4,"code":"CO"}],"institution":"hepia inSTI","class":"academique"}],"collaborators":[{"id":7781901,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"dominiqu.trinchan","project":123374},{"id":7781902,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"malek.fedel","project":123374},{"id":7781903,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"patrick.haas","project":123374},{"id":7781904,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"herve.sthioul","project":123374},{"id":7781905,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"martina.zselysch","project":123374},{"id":7781906,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"gilles.triscone","project":123374},{"id":7781907,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"quentin.rogliard","project":123374},{"id":7781908,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"christop.balistre","project":123374},{"id":7781909,"role":"RP","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"nicolas.stucki","project":123374}],"dataHub":true,"startAt":"2023-01-01T00:00:00+01:00","endAt":"2024-12-31T00:00:00+01:00","fundingSource":"Universit\u00e9 de Gen\u00e8ve","publications":[],"projectUrl":null,"repo_name":null}}
{"id":7772237,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"christop.balistre","project":{"translations":{"fr":{"id":22098,"title":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers ; Prime Innosuisse - SAFE.","description":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers."},"en":{"id":22099,"title":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers ; Prime Innosuisse - SAFE.","description":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers."},"de":{"id":22100,"title":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers ; Prime Innosuisse - SAFE.","description":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers."}},"id":126382,"acronym":"P3 - Prime Innosuisse - SAFE","mainTitle":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers ; Prime Innosuisse - SAFE.","mainDescription":"Programme de soutien au d\u00e9p\u00f4t de projets li\u00e9s \u00e0 l'obtention de fonds de tiers.","value":"7500.00","finished":true,"pilier":6,"url":null,"keywords":null,"disciplines":[],"axes":[],"partners":[{"id":1838778,"name":"","confidential":false,"types":[{"id":3,"code":"RP"},{"id":4,"code":"CO"}],"institution":"hepia inSTI","class":"academique"}],"collaborators":[{"id":7772234,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"agim.adilji","project":126382},{"id":7772235,"role":"RP","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"gilles.triscone","project":126382},{"id":7772236,"role":"RP","display":true,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"flavio.noca","project":126382},{"id":7772237,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"christop.balistre","project":126382}],"dataHub":true,"startAt":"2023-05-11T00:00:00+02:00","endAt":"2024-12-31T00:00:00+01:00","fundingSource":"HES-SO Rectorat","publications":[],"projectUrl":null,"repo_name":null}}
{"id":7772175,"role":"ME","display":false,"displayRole":true,"displayFinancialPartner":true,"displayAcademicPartner":true,"displayProfessionalPartner":true,"collaborator":"christop.balistre","project":{"translations":{"fr":{"id":22796,"title":"LTA 2024.","description":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . Hepia et Unige entendent :\r\na) proposer des mandats de prestations et mettre \u00e0 disposition des initiatives individuelles (acad\u00e9miques ou industrielles) des comp\u00e9tences et des technologies de haut niveau pr\u00e9sentes aupr\u00e8s des hautes \u00e9coles susmentionn\u00e9es ;\r\nb) valoriser les laboratoires existants et rendre tout nouvel investissement efficient ;\r\nc) offrir un guichet unique aux entreprises et leur facilit\u00e9 l'acc\u00e8s aux \u00e9quipements et aux groupes de recherche.\r\n"},"en":{"id":22797,"title":"LTA 2024.","description":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . Hepia et Unige entendent :\r\na) proposer des mandats de prestations et mettre \u00e0 disposition des initiatives individuelles (acad\u00e9miques ou industrielles) des comp\u00e9tences et des technologies de haut niveau pr\u00e9sentes aupr\u00e8s des hautes \u00e9coles susmentionn\u00e9es ;\r\nb) valoriser les laboratoires existants et rendre tout nouvel investissement efficient ;\r\nc) offrir un guichet unique aux entreprises et leur facilit\u00e9 l'acc\u00e8s aux \u00e9quipements et aux groupes de recherche.\r\n"},"de":{"id":22798,"title":"LTA 2024.","description":"Hepia et Unige unissent leurs efforts afin de cr\u00e9er le Laboratoire de Technologie Avanc\u00e9e, ci-apr\u00e8s LTA, une infrastructure con\u00e7ue pour valoriser le savoir-faire et les \u00e9quipements de pointe de l'Universit\u00e9 de Gen\u00e8ve et de la HES-SO Gen\u00e8ve aupr\u00e8s des industries. Porte d'entr\u00e9e vers pr\u00e8s de 20 groupes de recherche et plus de 100 \u00e9quipements et savoir-faire, le LTA apporte des solutions techniques originales aux petites, moyennes et grandes entreprises.\r\n\r\nObjectifs :\r\n\r\nPar la cr\u00e9ation du LTA, . 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