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THE STEPHEN B. KLEIN FACULTY OF |AEROSPACE ENGINEERING

Propelling the Future

Research Labs

Max and Desiree Blankfeld Endowed Prize

Graduate Studies

Industry Relations

About the |Faculty

The Stephen B. Klein Faculty of Aerospace Engineering at the Technion is a world-class academic hub for aeronautics and astronautics, dedicated to creating, expanding, and disseminating ideas and knowledge in aerospace sciences and engineering.

BE PART OF THE |AEROSPACE FUTURE

News
12.08.2026

Technion Establishes New International Prize for Transformative Innovation in Aerospace

The Max and Desiree Blankfeld Endowed Prize for Transformative Innovation in Aerospace, made possible through a generous gift from Max and Desiree Blankfeld of Houston, Texas.
11.08.2026

Congratulations! Prof. Moshe Idan Promoted to Full Professor

Professor Idan is an internationally recognized researcher whose work has made significant contributions in the areas of estimation theory, flight control systems, and air traffic management.
08.02.2026

Professor Eli Livne Awarded the 2026 Hanin International Prize

The late Prof. Meir Hanin International Prize is awarded every two years for significant scientific and/or technological achievements in aerospace sciences.
Seminars
August 26 2026
Tamir Gazit | A data-driven methodology is proposed to identify linear unsteady aerodynamic reduced-order models (ROMs) for flexible structures. Constrained gradient-based optimization extracts aerodynamic stiffness, damping, and time-domain convolution kernels directly from input-output data.
August 31 2026
Omer Wexler | Air-breathing hypersonic vehicles (AHVs) have the potential to revolutionize space access and high-speed global transportation. These vehicles can cruise at Mach 5 and above, making them highly attractive for many time-critical applications. Furthermore, by using atmospheric oxygen, they eliminate the need to carry oxidizers. Consequently, AHVs offer increased payload capacities, reusability, and reduced construction and operational costs.
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Din Ben Adva | The talk presents two recent studies examining the emergence of corner-flow circulation in confined geometries at highly rarefied conditions, where the characteristic length scale is comparable to the molecular mean free path of the gas.
Prof. Eli Livne | The idea that active control could be used to shape the aeroelastic behavior of deformable aircraft was known to aeroelasticians many years ago. In the late 1960s / early 1970s, with the appearance of “fast enough” actuators and other improvements in control technology’s theory and hardware, active aeroelastic control became feasible.
Ohad Haftka | This talk presents a study of the transmission of sound waves through periodically slitted walls in regimes where the characteristic aperture size and acoustic wavelength are comparable to the molecular mean free path of the gas. The acoustic field is generated by small-amplitude normal oscillations of a vibrating wall located upstream of the perforated plate.
Elbit invites you to special a Spotlight Day where you can get to know the company and its diverse activities, explore career opportunities, and meet Elbit's leading professional managers.
Aharon Renick | Early detection of simulation inaccuracies is critical in system development for increasing result certainty, focusing physical experimentation, and avoiding incorrect conclusions about system performance. This research develops a quantitative methodology to detect "unknown uncertainties“ or “unknown unknowns” within system simulations, in the presence of "known uncertainties“ or “known unknown”.
Ido Braun | Modern integrated air-defense systems (IADS) equipped with advanced surface-to-air missiles (SAMs) pose a significant threat to fighter jets conducting strike missions against ground targets. To successfully deliver the munition, the aircraft must satisfy conflicting operational objectives.
Avia Rosenfeld | Nanostructured thermites offer unique opportunities for controlling ignition and energy release through engineered material architectures. This seminar presents the fabrication and characterization of Al/SiO₂ multilayer nanothermites produced by physical vapor deposition and examines their thermal and laser-induced ignition behavior.
Nour Aldeen Nasrallah | Metal-organic frameworks (MOFs) are nanoporous materials with strong potential for sorption-based atmospheric water harvesting, owing to their exceptionally high surface areas (~5,000 m²/g) and easy regeneration at low temperatures (~70 °C). However, their practical implementation is limited by slow heat and mass transport, poor sorbent utilization, and the difficulty of integrating MOF nanopowders into scalable macroscopic thermofluid systems.
Events on 29/06/2026
Din Ben Adva | The talk presents two recent studies examining the emergence of corner-flow circulation in confined geometries at highly rarefied conditions, where the characteristic length scale is comparable to the molecular mean free path of the gas.
Events on 06/07/2026
Prof. Eli Livne | The idea that active control could be used to shape the aeroelastic behavior of deformable aircraft was known to aeroelasticians many years ago. In the late 1960s / early 1970s, with the appearance of “fast enough” actuators and other improvements in control technology’s theory and hardware, active aeroelastic control became feasible.
Events on 13/07/2026
Ohad Haftka | This talk presents a study of the transmission of sound waves through periodically slitted walls in regimes where the characteristic aperture size and acoustic wavelength are comparable to the molecular mean free path of the gas. The acoustic field is generated by small-amplitude normal oscillations of a vibrating wall located upstream of the perforated plate.
Events on 15/07/2026
Elbit invites you to special a Spotlight Day where you can get to know the company and its diverse activities, explore career opportunities, and meet Elbit's leading professional managers.
Aharon Renick | Early detection of simulation inaccuracies is critical in system development for increasing result certainty, focusing physical experimentation, and avoiding incorrect conclusions about system performance. This research develops a quantitative methodology to detect "unknown uncertainties“ or “unknown unknowns” within system simulations, in the presence of "known uncertainties“ or “known unknown”.
Events on 20/07/2026
Ido Braun | Modern integrated air-defense systems (IADS) equipped with advanced surface-to-air missiles (SAMs) pose a significant threat to fighter jets conducting strike missions against ground targets. To successfully deliver the munition, the aircraft must satisfy conflicting operational objectives.
Events on 27/07/2026
Avia Rosenfeld | Nanostructured thermites offer unique opportunities for controlling ignition and energy release through engineered material architectures. This seminar presents the fabrication and characterization of Al/SiO₂ multilayer nanothermites produced by physical vapor deposition and examines their thermal and laser-induced ignition behavior.
Events on 29/07/2026
Nour Aldeen Nasrallah | Metal-organic frameworks (MOFs) are nanoporous materials with strong potential for sorption-based atmospheric water harvesting, owing to their exceptionally high surface areas (~5,000 m²/g) and easy regeneration at low temperatures (~70 °C). However, their practical implementation is limited by slow heat and mass transport, poor sorbent utilization, and the difficulty of integrating MOF nanopowders into scalable macroscopic thermofluid systems.
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