Advanced Investigative Developer

Major Responsibilities

  • This challenging position will include working closely with technical support on production impacting cases, and perform code investigations.
  • You will be responsible to write quality fixes and improvements to a broad spectrum of existing products across multiple areas while maintaining good service and professional etiquette.

 

Desired Background

Investigation Engineer, C/C++ Developer

Major Responsibilities
You will be responsible to write quality improvements and fixes to a broad spectrum of existing security and networking modules for robust and highly efficient security system. You should be capable of delivering on multiple competing priorities with a proactive approach creating a better solutions for SMB security gateway.
The following responsibilities will be a part of your job:

סמינר “RECENT ADVANCES IN COMPUTATIONAL ELECTROMAGNETICS FOR HIGH RESOLUTION NEUROIMAGING”

07 באפריל 2022, 15:00 
Physical meeting (011 hall, Wolfson Building of Electrical Engineering-Kitot)  
סמינר  “RECENT ADVANCES IN COMPUTATIONAL  ELECTROMAGNETICS FOR HIGH  RESOLUTION NEUROIMAGING”

Professor Francesco Andriulli :
Department of Electronics and Telecommunications 
Politecnico di Torin, Turin, Italy 

IAS Distinguished Lecturer, 2021-2022 

 

Abstract 
Electroencephalography (EEG) is one of the most used non-invasive acquisition methods to reconstruct the brain electrical activity from scalp potential recordings. As a clinical diagnostic tool, EEG source imaging plays a crucial role in epilepsy evaluation. This particularly applies to patients suffering from focal epilepsy, when source characterization and localization are two decisive stages of a pre-surgical epilepsy evaluation which prepares for the ablation of the patient’s brain area where the seizure originates. Moreover, EEG source imaging also extends to the development of Mind-Machine Interfaces (MMIs or BCIs): non-muscular communication channels leveraging brain signals for the control of external devices.  
Modern high-resolution EEGs are computationally intensive devices where a large part of the imaging process is underpinned by advanced tools in the physical modeling of brain electric propagation. For this reason, several cross-disciplinary research efforts are focused on developing advanced tools for brain-related computational electromagnetics. Unfortunately, however, these tools often turn out to be computationally intensive, limiting the resolution of the physical model that can be achieved. 
This talk will focus on recent advances in electromagnetic modeling and computational strategies for high resolution EEGs. Theoretical, algorithmic, and experimental advances will be presented together with their promising applications in next-generation high-resolution electroencephalographies, epilepsy diagnostics, computationally enhanced brain-computer interfaces, and real-time neurofeedback. In addition to the theoretical frameworks, this talk will present recent discoveries and achievements together with open Grand Challenges, including current research efforts about diagnostic, BCIs and immersive neurofeedback in the framework of the projects ERC “321” and EIC pathfinder “CEREBRO”, both at the theoretical and experimental level. 

סמינר "A TUTORIAL ON INTEGRAL EQUATION SPECTRA AND CALDERON PRECONDITIONING STRATEGIES ELECTROMAGNETICS"

06 באפריל 2022, 15:00 
Physical meeting (011 hall, Wolfson Building of Electrical Engineering-Kitot)  
 סמינר  "A TUTORIAL ON INTEGRAL EQUATION SPECTRA AND CALDERON PRECONDITIONING STRATEGIES  ELECTROMAGNETICS"

Professor Francesco Andriulli :
Department of Electronics and Telecommunications 
Politecnico di Torin, Turin, Italy 

IAS Distinguished Lecturer, 2021-2022 

 Tutorial “A TUTORIAL ON INTEGRAL EQUATION SPECTRA AND CALDERON PRECONDITIONING STRATEGIES IN ELECTROMAGNETICS” 

Abstract 
This tutorial will provide an introduction to Calderon and related operator based preconditioning for electromagnetic boundary value problems. Calderon methods permit the construction of rapidly convergent iterative solvers for electric and combined field integral equations and as such are a perfect complement to fast multipole and related accelerators. Applications of Calderon-enhanced integral equation solvers range from antenna analysis to the characterization of microwave devices and circuits, the analysis of electromagnetic compatibility phenomena, and the synthesis of metamaterials. The tutorial will briefly review the main spectral properties of the most common integral operators in electromagnetics and will overview both theoretical and practical issues related to the development and implementation of Calderon-enhanced integral equation solvers. The tutorial will also briefly introduce the incorporation of Calderon preconditioners and related operator strategies into existing integral equation codes and their interaction with fast matrix-vector multiplication schemes. 

סדנת הכנה לחלק הטכני בראיון עבודה בחסות אינטל להנדסת חשמל ולמדעי המחשב

11 באפריל 2022, 18:00 
 
סדנת הכנה לחלק הטכני בראיון עבודה בחסות אינטל

סטודנטים.ות לחשמל מהפקולטה להנדסה וסטודנטים.ות של בית הספר למדעי המחשב

 

  • רוצים.ות לדעת איזה שאלות מקצועיות יכולים לשאול אותי בראיון עבודה?
  • איך להתמודד עם מצב שאין לי פתרון לשאלה?

 

אינטל עוזרת לך להתכונן לשאלות הטכניות בראיון עבודה!

 

סדנה ייעודית לסטודנטים.ות להנדסת חשמל ולסטודנטים.ות של מדעי המחשב

 

מועדי הסדנא:

לסטודנטים.ות של ביה"ס למדעי המחשב - יום שני 11.4.22|בשעה 18:00 (הרצאה מקוונת) קישור
 

לסטודנטים.ות של ביה"ס להנדסת חשמל - יום שלישי 12.4.22|בשעה 17:00 (הרצאה מקוונת) קישור 

 

המפגש יתקיים ב- Zoom, לינק ישלח לנרשמים

 

מספר המקומות מוגבל, מהרו להירשם

 

 

מוזמנים.ת להמשיך להתעדכן בכל עת בדף הפייסבוק שלנו ובעמוד האינסטגרם של הפקולטה.

 

 

 

מהנדס/ת חומרים ותהליכים

  • תואר בהנדסת חומרים- חובה (מגמת מסלולים מבניים)
  • ניסיון כמהנדס/ת חומרים או בוגר/ת תואר
  • עדיפות לנסיון בתהליכים מטלורגיים (טיפולים תרמיים/הלחמות/ריתוכים)
  • אנגלית ברמה גבוהה
     

מהנדס/ת אוירומכניקה

  • מהנדס מכונות/אוירונאוטיקה - חובה
  • ניסיון בתכן מכאני – יתרון 
  • הכרות עם עולם התעופה ותקנים תעופתיים/צבאיים – יתרון 
  • ניסיון בתכן מבנה מחומרים מרוכבים – יתרון 
  • ניסיון בכתיבת מסמכי הסבה/דוחות/ECP – יתרון 
  • ניסיון עבודה בתכנת CAD - חובה
  • ניסיון ב UG NX – יתרון 
  • יכולת עבודה בצוות ותקשורת בין אישית טובה
  • חוש טכני מפותח עם יכולת פתרון בעיות 
  • חשיבה יצירתית
     

Junior Software Engineer

Principle duties and responsibilities 

Perform as an active part of software projects, e.g. software design, software implementation/coding, unit testing and integration testing.

 

Knowledge, skills and experience required

סמינר מחלקה של אורן פטל - יישומים של סינראדיוגרפיה במהירות גבוהה למחקר ביומכניקת פציעה"

30 במאי 2022, 14:00 - 15:00 
פקולטה להנדסה  
0
סמינר מחלקה של אורן פטל - יישומים של סינראדיוגרפיה במהירות גבוהה למחקר ביומכניקת פציעה"

 

 

 

 

 

 

 

School of Mechanical Engineering Seminar
Monday, May 30, 2022, at 14:00
Wolfson Building of Mechanical Engineering, Room 206

Applications of high-speed cineradiography to injury biomechanics research

 

 

Oren Petel

Associate Professor,

Department of Mechanical and Aerospace Engineering

Carleton University, Ottawa, ON, Canada

Email: oren.petel@carleton.ca

 

 

 

 

 

Impact-induced head trauma and the resulting neurodegeneration has been linked to devastating health outcomes. While helmets have drastically reduced the incidence of severe focal brain injuries, their ability to prevent mild traumatic brain injuries is less certain. Current helmet testing standards for impact events focus on the rigid-body kinematics of head motion in the hope that they can be correlated to metrics of importance in leading injury mechanisms. These approaches typically rely on computational models to link these kinematic measures back to tissue strain/deformation profiles and ultimately to injury risk predictions; However, the data available for model calibration is quite sparse.

Our research has focused on developing new tools and techniques to complement existing helmet and injury evaluation methodologies, while imagining a new paradigm based on in situ deformation measurements. My biomechanics research program seeks to fill a number of knowledge gaps in the field of injury biomechanics surrounding impact trauma. My research makes use of a high-speed X-ray imaging system developed by our research group to investigate the dynamic response of cadaveric specimens, elastomeric head/brain surrogate models, and ex vivo tissue specimens. In this presentation, I will provide a high-level overview of our injury biomechanics research and how it fits within the broader injury biomechanics field.

Biography

 

Oren Petel is an Associate Professor at Carleton University in Ottawa, Canada. Prior to joining Carleton University in August 2013, he completed his PhD research at McGill University, where his focus was condensed phase detonation, terminal ballistics, and shock wave physics. Much

of his current work is related to the dynamic response of multiphase protective materials and technologies, as well as development and use of novel diagnostic capabilities for injury biomechanics investigations. His group has developed several polymer nanocomposite materials that improve the ballistic performance of multilayer transparent armour and pelvic/extremity undergarment systems against environmental debris from improvised explosive devices.

 

Join Zoom Meeting

 https://us02web.zoom.us/j/82108132163?pwd=Z2h4UzNzUS9mbXplT0lMU1pZenFEQT09

 

עמודים

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