✈️ NEW RESULT ANNOUNCEMENT ✈️
📋 Position:
ATTORNEY I I
📍 Location:
ETHIOPIAN AVIATION UNIVESRSITY, COMMERCIAL BUILDING ROOM #210
📢 Type:
call for INTERVIEW
https://corporate.ethiopianairlines.com/AboutEthiopian/careers/results#
📋 Position:
ATTORNEY I I
📍 Location:
ETHIOPIAN AVIATION UNIVESRSITY, COMMERCIAL BUILDING ROOM #210
📢 Type:
call for INTERVIEW
https://corporate.ethiopianairlines.com/AboutEthiopian/careers/results#
CorporateWebsite
Results
Postion : TRAINEE PILOT CANDIDATES – DIFFERENT REGIONS
Location : ETHIOPIAN AIRLINES HEAD OFFICE, GROUP RECRUITMENT & PLACEMENT OFFICE
Announcement : MEDICAL EXAMINATION
https://corporate.ethiopianairlines.com/AboutEthiopian/careers/results#
Location : ETHIOPIAN AIRLINES HEAD OFFICE, GROUP RECRUITMENT & PLACEMENT OFFICE
Announcement : MEDICAL EXAMINATION
https://corporate.ethiopianairlines.com/AboutEthiopian/careers/results#
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Description :
CALL FOR MEDICAL EXAMINATION
(TRAINEE PILOT CANDIDATES – DIFFERENT REGIONS)
AMONG THOSE CANDIDATES WHO HAVE APPLIED & TOOK ENGLISH LANGUAGE PROFICENCY ASSESSMENT FOR THE POSITION OF TRAINEE PILOT FROM DIFFERENT REGIONS, THE FOLLOWING LISTED CANDIDATE HAVE PASSED FOR THE NEXT PROCESS & REQUESTED TO COME TO ETHIOPIAN AIRLINES GROUP HEAD QUARTER PER THE BELOW STATED SCHEDULE FOR MEDICAL EXAMINATION.
VENUE: - ETHIOPIAN AIRLINES HEAD OFFICE, GROUP RECRUITMENT & PLACEMENT OFFICE
DATE & TIME: - MONDAY JULY 06, 2026 @ 08:00 AM (IN THE MORNING)
PLEASE NOTE THAT:
CANDIDATES SHOULD COME UP WITH PROPER BUSINESS ATTIRE AND GROOMING.
CANDIDATES MUST BRING ALL ORIGINAL EDUCATIONAL DOCUMENTS INCLUDING 8TH GRADE MINISRY CARD CERTIFICATE, 10TH AND 12TH GRADE NATIONAL EXAMINATION RESULT CERTIFICATE, DEGREE TEMPO AND BIRTH CERTIFICATE.
CANDIDATES MUST BRING ORIGINAL AND ONE COPY RENEWED KEBELE ID WITH 5 (FIVE) PASSPORT SIZE PHOTOGRAPHS.
IF ANYONE IS FOUND TO APPLY WITH FALSE INFORMATION, IT WILL LEAD TO SUBSEQUENT TERMINATION FROM THE PROCESS UPON DISCOVERY OF THE FACT AT ANY STAGE.
CALL FOR MEDICAL EXAMINATION
(TRAINEE PILOT CANDIDATES – DIFFERENT REGIONS)
AMONG THOSE CANDIDATES WHO HAVE APPLIED & TOOK ENGLISH LANGUAGE PROFICENCY ASSESSMENT FOR THE POSITION OF TRAINEE PILOT FROM DIFFERENT REGIONS, THE FOLLOWING LISTED CANDIDATE HAVE PASSED FOR THE NEXT PROCESS & REQUESTED TO COME TO ETHIOPIAN AIRLINES GROUP HEAD QUARTER PER THE BELOW STATED SCHEDULE FOR MEDICAL EXAMINATION.
VENUE: - ETHIOPIAN AIRLINES HEAD OFFICE, GROUP RECRUITMENT & PLACEMENT OFFICE
DATE & TIME: - MONDAY JULY 06, 2026 @ 08:00 AM (IN THE MORNING)
PLEASE NOTE THAT:
CANDIDATES SHOULD COME UP WITH PROPER BUSINESS ATTIRE AND GROOMING.
CANDIDATES MUST BRING ALL ORIGINAL EDUCATIONAL DOCUMENTS INCLUDING 8TH GRADE MINISRY CARD CERTIFICATE, 10TH AND 12TH GRADE NATIONAL EXAMINATION RESULT CERTIFICATE, DEGREE TEMPO AND BIRTH CERTIFICATE.
CANDIDATES MUST BRING ORIGINAL AND ONE COPY RENEWED KEBELE ID WITH 5 (FIVE) PASSPORT SIZE PHOTOGRAPHS.
IF ANYONE IS FOUND TO APPLY WITH FALSE INFORMATION, IT WILL LEAD TO SUBSEQUENT TERMINATION FROM THE PROCESS UPON DISCOVERY OF THE FACT AT ANY STAGE.
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✈️ ATC PROCEDURES :How Aircraft Stay Safe in the Sky
Ever wondered how hundreds of aircraft can share the same airspace without chaos? The answer is ATC Procedures (Air Traffic Control Procedures) the invisible system that keeps every flight safe, organized, and efficient.
From takeoff to landing, pilots follow clear instructions from controllers who manage:
🛫 Departure and arrival sequencing
🛰️ En-route separation between aircraft
📡 Radar monitoring and communication
🌍 Airspace structure and routing
Everything is built around one goal: safe separation at all times.
💡 Did You Know?
In controlled airspace, pilots are often separated by as little as 5 nautical miles horizontally or 1,000 feet vertically yet everything still runs safely and smoothly thanks to precise ATC coordination.
@Airlinetutorialofficial
Ever wondered how hundreds of aircraft can share the same airspace without chaos? The answer is ATC Procedures (Air Traffic Control Procedures) the invisible system that keeps every flight safe, organized, and efficient.
From takeoff to landing, pilots follow clear instructions from controllers who manage:
🛫 Departure and arrival sequencing
🛰️ En-route separation between aircraft
📡 Radar monitoring and communication
🌍 Airspace structure and routing
Everything is built around one goal: safe separation at all times.
💡 Did You Know?
In controlled airspace, pilots are often separated by as little as 5 nautical miles horizontally or 1,000 feet vertically yet everything still runs safely and smoothly thanks to precise ATC coordination.
@Airlinetutorialofficial
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Airline Gateway Official
Photo
Why does a modern aircraft still need a RAT?
Modern aircraft have multiple generators.
Some even have electrical power coming from both engines, the APU and batteries.
So why do they still carry a small emergency turbine?
It's called a RAT (Ram Air Turbine).
A small turbine that can deploy into the airflow and use the aircraft's speed to keep essential aircraft systems powered.
Depending on the aircraft, it may provide electricity, hydraulic power, or both.
And despite all the redundancy built into modern aircraft, it remains one of the last lines of defence.
When deployed, the RAT extends into the airflow and starts spinning.
That energy is then used to keep essential systems available.
Not the entire aircraft.
Just the systems needed to keep the aircraft safely under control.
Because aircraft are designed around a simple principle:
No single failure should lead to a catastrophic outcome.
So engineers keep adding layers of redundancy.
And the RAT is one of the final layers.
The interesting part is that it spends almost its entire life doing absolutely nothing.
Most RATs will never be used in service (and thankfully, that's exactly how it should be).
But if multiple power sources are lost at the same time, it can become one of the most important components on the aircraft.
A small turbine.
Hopefully never needed.
But always ready.
Have you ever seen a RAT deployed in real life?
@Airlinetutorialofficial
Modern aircraft have multiple generators.
Some even have electrical power coming from both engines, the APU and batteries.
So why do they still carry a small emergency turbine?
It's called a RAT (Ram Air Turbine).
A small turbine that can deploy into the airflow and use the aircraft's speed to keep essential aircraft systems powered.
Depending on the aircraft, it may provide electricity, hydraulic power, or both.
And despite all the redundancy built into modern aircraft, it remains one of the last lines of defence.
When deployed, the RAT extends into the airflow and starts spinning.
That energy is then used to keep essential systems available.
Not the entire aircraft.
Just the systems needed to keep the aircraft safely under control.
Because aircraft are designed around a simple principle:
No single failure should lead to a catastrophic outcome.
So engineers keep adding layers of redundancy.
And the RAT is one of the final layers.
The interesting part is that it spends almost its entire life doing absolutely nothing.
Most RATs will never be used in service (and thankfully, that's exactly how it should be).
But if multiple power sources are lost at the same time, it can become one of the most important components on the aircraft.
A small turbine.
Hopefully never needed.
But always ready.
Have you ever seen a RAT deployed in real life?
@Airlinetutorialofficial
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❤6🔥3👏3
#Call_For simulator (FTD) EXAMINATION
(TRAINEE PILOT CANDIDATES – Addis Ababa -First Round)
https://corporate.ethiopianairlines.com/AboutEthiopian/careers/results
@Airlinetutorialofficial
CorporateWebsite
Results
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✈️ Pitch Angle, Flight Path Angle, and Angle of Attack... They're NOT the Same!
Many aviation enthusiasts and even student pilots often confuse these three important aerodynamic concepts. Although they are closely related, each one describes a different aspect of an aircraft's attitude and performance.
📌 1. Pitch Angle
The Pitch Angle is the angle between the aircraft's longitudinal axis (nose direction) and the horizon.
It simply tells you where the aircraft is pointing not necessarily where it is going.
📌 2. Flight Path Angle
The Flight Path Angle is the angle between the aircraft's actual direction of travel (Velocity Vector) and the horizon.
This indicates whether the aircraft is climbing, descending, or flying level.
📌 3. Angle of Attack (AoA)
The Angle of Attack is the angle between the wing's chord line and the relative airflow.
The Relationship
Pitch Angle = Flight Path Angle + Angle of Attack
For example:
Flight Path Angle = 10°
Angle of Attack = 5°
Pitch Angle = 15°
@Airlinetutorialofficial
Many aviation enthusiasts and even student pilots often confuse these three important aerodynamic concepts. Although they are closely related, each one describes a different aspect of an aircraft's attitude and performance.
📌 1. Pitch Angle
The Pitch Angle is the angle between the aircraft's longitudinal axis (nose direction) and the horizon.
It simply tells you where the aircraft is pointing not necessarily where it is going.
📌 2. Flight Path Angle
The Flight Path Angle is the angle between the aircraft's actual direction of travel (Velocity Vector) and the horizon.
This indicates whether the aircraft is climbing, descending, or flying level.
📌 3. Angle of Attack (AoA)
The Angle of Attack is the angle between the wing's chord line and the relative airflow.
The Relationship
Pitch Angle = Flight Path Angle + Angle of Attack
For example:
Flight Path Angle = 10°
Angle of Attack = 5°
Pitch Angle = 15°
@Airlinetutorialofficial
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Urgent ,normal Passport (60 day)and renewal የምትፈልጉ
@airlinegatewayy
@airlinegatewayy
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Ethiopian Airlines received ‘Connectivity Award’ from Air Transport News at the 2026 Aviation & Tourism Award Ceremony. Ethiopian received the award for the connectivity and joint ventures it established in the African continent.
#EthiopianAirlines
@Airlinetutorialofficial
#EthiopianAirlines
@Airlinetutorialofficial
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How to pass your Part-66 application without rewriting your logbook from scratch...
Look at the two logbook entries in this image.
Same engineer. Same logbook. Same aircraft type.
One will get rejected.
One won't.
The wrong entry tells the CAA what was done.
The right entry tells them WHAT, WHY and HOW.
That's the gap between a license application that gets approved and one that comes back with a list of queries.
Here's what makes the right entry work:
✔ Reason for the job - what triggered the task
✔ Detailed description - system, component, action taken
✔ Manual reference - AMM, TSM, FIM with task number
✔ Finding and result - what you found, what you did, final status
✔ Consistent standard - every entry built the same way
@Airlinetutorialofficial
Look at the two logbook entries in this image.
Same engineer. Same logbook. Same aircraft type.
One will get rejected.
One won't.
The wrong entry tells the CAA what was done.
The right entry tells them WHAT, WHY and HOW.
That's the gap between a license application that gets approved and one that comes back with a list of queries.
Here's what makes the right entry work:
✔ Reason for the job - what triggered the task
✔ Detailed description - system, component, action taken
✔ Manual reference - AMM, TSM, FIM with task number
✔ Finding and result - what you found, what you did, final status
✔ Consistent standard - every entry built the same way
@Airlinetutorialofficial
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Aircraft maintenance is divided into two major categories : base maintenance and Line Maintenance.
While both are essential to aviation operations, they serve very different purposes. Base maintenance involves heavy, scheduled inspections and major repairs performed inside hangars, often requiring aircraft to be grounded for days or even weeks.
This is where deep structural inspections, overhauls, modifications, and extensive troubleshooting take place to restore long-term airworthiness and performance Line maintenance, on the other hand, focuses on quick turnaround tasks performed between flights directly on the ramp or at the gate.
These include daily inspections, servicing, minor repairs, and defect checks that ensure the aircraft is safe and ready for its next departure. In simple terms, base maintenance keeps an aircraft healthy over its lifetime, while line maintenance keeps it operating safely every single day. Together, they form the backbone of aviation safety and operational reliability.
While both are essential to aviation operations, they serve very different purposes. Base maintenance involves heavy, scheduled inspections and major repairs performed inside hangars, often requiring aircraft to be grounded for days or even weeks.
This is where deep structural inspections, overhauls, modifications, and extensive troubleshooting take place to restore long-term airworthiness and performance Line maintenance, on the other hand, focuses on quick turnaround tasks performed between flights directly on the ramp or at the gate.
These include daily inspections, servicing, minor repairs, and defect checks that ensure the aircraft is safe and ready for its next departure. In simple terms, base maintenance keeps an aircraft healthy over its lifetime, while line maintenance keeps it operating safely every single day. Together, they form the backbone of aviation safety and operational reliability.
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Every takeoff is proof that the sky is never the limit it’s just the beginning. ✈️☁️
Some see an airplane… we see freedom, ambition, and endless possibilities. ✈️💙
@Airlinetutorialofficial
Some see an airplane… we see freedom, ambition, and endless possibilities. ✈️💙
@Airlinetutorialofficial
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Engine starting system
✔ APU (Auxiliary Power Unit)
The most common source on the ground. It supplies bleed air to the starter.
✔ Ground Air Cart
Used when the APU is inoperative or not available.
✔ Cross-Bleed From Another Engine
During in-flight restarts or single-engine ops.
This air flows through ducts to the Starter Pneumatic Valve, which regulates the airflow.
✔ APU (Auxiliary Power Unit)
The most common source on the ground. It supplies bleed air to the starter.
✔ Ground Air Cart
Used when the APU is inoperative or not available.
✔ Cross-Bleed From Another Engine
During in-flight restarts or single-engine ops.
This air flows through ducts to the Starter Pneumatic Valve, which regulates the airflow.
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✈️ Every passenger sees an airplane.
Engineers see thousands of interconnected systems working together as one extraordinary machine.
This exploded view of a commercial aircraft is a powerful reminder that an aircraft is far more than a fuselage with wings. It is a masterpiece of structural engineering, aerodynamics, and precision manufacturing..
@Airlinetutorialofficial
Engineers see thousands of interconnected systems working together as one extraordinary machine.
This exploded view of a commercial aircraft is a powerful reminder that an aircraft is far more than a fuselage with wings. It is a masterpiece of structural engineering, aerodynamics, and precision manufacturing..
@Airlinetutorialofficial
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