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Since October 2022
Instructor since October 2022
Aviation theoretical knowledge /ATPL Exams preparation
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From 52 C$ /h
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My name is Mohammad, I am a Flight instructor with an experience of more than 3000 flight hours. I have also an experience as an Aviation theoretical knowledge instructor.

I teach all the 14 ATPL subjects virtually. I will help you pass your official examinations and aquire the knowledge that lead you to achieve your future pilot career.

My method in teaching the ATPL subjects is intended to simplify the complexity of the syllabus and relate it to actual flight conditions.

How to Book and Attend Your Private Class:

To register and pay for a private class, simply follow the steps on the Apprentus platform. Once your payment is completed, I will receive a confirmation of your reservation. At that point, my contact details will be shared with you, and you can reach out to me via email or WhatsApp to arrange the exact time for the class, taking into consideration any time zone differences between our countries.

All classes will be conducted online via Google Meet, which allows for screen sharing and ensures clear voice communication to make the session as effective as possible.

If you are looking to master your ATPL and to understand the real concepts of all Aviation knowledge, don't be hesitant to reach out.

Best wishes to all future pilots!
Extra information
Be sure to create a google meet aaccount
Location
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Online from Jordan
About Me
"Passionate Aviation Theoretical Knowledge Instructor with 12 years of experience in the aviation industry. Possessing a deep understanding of aviation theory, principles, and regulations, I am committed to helping aspiring pilots excel in their aviation careers.

With a thorough knowledge of subjects such as aerodynamics, flight operations, aircraft systems, and meteorology, and all other subjects in EASA and FAA syllabus, I have successfully taught and mentored numerous students, ensuring their understanding and application of complex aviation concepts.

As a lifelong learner, I stay up-to-date with the latest advancements in aviation, allowing me to provide relevant and cutting-edge information to my students. I am dedicated to fostering an engaging and supportive learning environment, tailoring my teaching methods to accommodate diverse learning styles.

Having an Easa ATPL certificate and other ICAO pilot certificates , I am well-equipped to provide comprehensive instruction and guidance to individuals at all levels of aviation education, from beginners to seasoned professionals seeking to advance their knowledge.

My goal is not only to teach the theoretical aspects but also to inspire and motivate students to pursue their aviation dreams.

If you're ready to embark on an exciting journey in aviation, let's connect and explore the boundless possibilities together!"
Education
-University Bachelor of science
- Commercial and Instrument pilot certificate
- Easa Airline Transportation Pilot licence
- Certified Flight Instructor- Single / multi Engine
Experience / Qualifications
I worked as a Flight Instructor/ Ground Instructor with a flight experience of more than 3000 total flight time and more than 12 years in different European and Middle Eastern Flight Academies.
Age
Adults (18-64 years old)
Seniors (65+ years old)
Student level
Beginner
Intermediate
Advanced
Duration
60 minutes
120 minutes
The class is taught in
English
Arabic
Reviews
Availability of a typical week
(GMT -04:00)
New York
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Online via webcam
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
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Comprehensive Admission Test Preparation (Physics & Mathematics) for Cadet Pilot Programs - Emirates & Etihad Airways

Lesson Description:
This intensive training course serves as the most comprehensive academic and practical guide specifically tailored for aspiring student pilots aiming to clear the competitive admission evaluations for Cadet Pilot Programs at world-class airlines, notably Emirates Airline and Etihad Airways. Achieving success in these highly selective assessments requires far more than conventional textbook knowledge; it demands exceptional accuracy, rapid data processing capabilities, and advanced analytical thinking under severe time constraints.

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Below is an extensive and thorough breakdown of all scientific modules, operational applications, and test-taking strategies covered throughout the curriculum:

First: Applied Aviation Mathematics Component
The mathematics module focuses on sharpening mental calculation speed, logical reasoning, and spatial geometry essential for flight planning, navigation, and real-time decision-making in the cockpit:

1. Mental Arithmetic & Rapid Calculation Techniques:
- Intensive drill-based training to execute core mathematical operations (addition, subtraction, multiplication, division) mentally, without any dependence on calculators.
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- Endurance, fuel management, and reserve margin calculations (Usable Fuel vs. Contingency Fuel).
- Rapid conversions between international aviation units of measurement (e.g., Knots to km/h, Nautical Miles to Statute Miles/Kilometers, Feet to Meters, Pounds to Kilograms, Gallons to Liters).
- Descent and climb planning: Calculating the Top of Descent (TOD) profile based on current altitude, target altitude, and vertical speed (Rate of Descent).

3. Algebra, Inequalities & Linear Systems:
- Rapid solving of first-degree and second-degree algebraic equations, systems of equations, and multi-variable inequalities.
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4. Geometry & Aviation Trigonometry:
- Application of the Pythagorean theorem and trigonometric functions (Sin, Cos, Tan) to determine flight paths, track deviations, and Cross-Track Error (XTE).
- Calculating climb/descent glide paths and aircraft bank angles during turns.
- Solving the Wind Triangle: Determining groundspeed, drift angle, headwind/tailwind components, and calculating the Wind Correction Angle (WCA).

5. Data Interpretation, Charts & Performance Matrices:
- Deep-dive analysis of complex Aircraft Performance Charts, including Takeoff and Landing Distance Tables, Climb Performance Graphs, and En-Route Cruise Tables.
- Interpreting meteorological charts, wind vector diagrams, and multi-variable operational matrices involving aircraft mass, ambient temperature, and pressure altitude.

Second: Applied Aviation Physics & Aerodynamics Component
This module builds a fundamental, intuitive understanding of physical principles and fluid dynamics governing aircraft behavior across all flight phases:

1. Mechanics & Flight Dynamics:
- Application of Newton’s Three Laws of Motion to aircraft dynamics (Inertia, Force = Mass x Acceleration, Action/Reaction forces).
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- Circular motion principles, centripetal force, and load factor dynamics (G-forces) during turning maneuvers and structural limitations.

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- Comprehensive study of the four primary flight forces: Lift, Weight (Gravity), Thrust, and Drag.
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- Analyzing Parasite Drag vs. Induced Drag, understanding the Total Drag Curve, and identifying the speed for maximum endurance and range.
- Principles of Angle of Attack (AOA), aerodynamic stall phenomena, stall speed variables, and recovery procedures.

3. Atmospheric Physics & Thermodynamics:
- Detailed analysis of the International Standard Atmosphere (ISA) and the rate of pressure, temperature, and density variation with altitude.
- The concept of Density Altitude: How elevated ambient temperatures and reduced atmospheric pressure impact engine thrust output and wing lift capability.
- Fluid mechanics and gas laws affecting pitot-static flight instruments, including the Airspeed Indicator (ASI), Altimeter, and Vertical Speed Indicator (VSI).

4. Work, Energy & Aircraft Equilibrium:
- Energy transformation concepts: Interchanging Potential Energy (altitude) and Kinetic Energy (airspeed) during flight maneuvers.
- Mechanics of Torque, Moment, and Center of Gravity (CG) location, and their critical impact on longitudinal stability, control authority, and structural loading.
- Principles of simple machines and leverage applied to aircraft mechanical linkages, flight control surfaces, and hydraulic actuation systems.

Third: Examination Tactics, Time Management & Psychological Preparedness
Beyond subject mastery, this program arms candidates with crucial test-taking tactics designed for high-stress selection environments:
- Time-allocation strategies tailored to pass computer-based assessment modules with strict time limits per question.
- Advanced estimation techniques, systematic process of elimination, and tactical decision-making under stress.
- Full-length simulated mock examinations patterned directly after the testing formats used in Emirates Airline and Etihad Airways Cadet Pilot assessment centers.

This course is engineered to position you at the absolute top of the applicant pool, supplying the exact blend of academic rigor, cognitive speed, and aviation insight required to fulfill your ambition of entering the airliner cockpit as a professional pilot.
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Contact Mohammad
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Similar classes
arrow icon previousarrow icon next
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يحيى
:
Comprehensive Admission Test Preparation (Physics & Mathematics) for Cadet Pilot Programs - Emirates & Etihad Airways

Lesson Description:
This intensive training course serves as the most comprehensive academic and practical guide specifically tailored for aspiring student pilots aiming to clear the competitive admission evaluations for Cadet Pilot Programs at world-class airlines, notably Emirates Airline and Etihad Airways. Achieving success in these highly selective assessments requires far more than conventional textbook knowledge; it demands exceptional accuracy, rapid data processing capabilities, and advanced analytical thinking under severe time constraints.

Engineered around the standardized evaluation frameworks utilized by international aviation assessment bodies and pilot aptitude systems (such as COMPASS, CUT-E, and advanced aviation academic knowledge tests), this course successfully bridges the gap between theoretical sciences and their direct operational applications inside the cockpit. This approach ensures candidates gain a distinct competitive edge and complete readiness to conquer the initial selection stages.

Below is an extensive and thorough breakdown of all scientific modules, operational applications, and test-taking strategies covered throughout the curriculum:

First: Applied Aviation Mathematics Component
The mathematics module focuses on sharpening mental calculation speed, logical reasoning, and spatial geometry essential for flight planning, navigation, and real-time decision-making in the cockpit:

1. Mental Arithmetic & Rapid Calculation Techniques:
- Intensive drill-based training to execute core mathematical operations (addition, subtraction, multiplication, division) mentally, without any dependence on calculators.
- Rapid computation and conversion of percentages, fractions, and decimals in high-pressure scenarios.
- Practical application of mental math to estimate fuel burn rates, Time En-Route (ETE), and required airspeed adjustments.

2. Navigation & Operational Flight Calculations:
- Endurance, fuel management, and reserve margin calculations (Usable Fuel vs. Contingency Fuel).
- Rapid conversions between international aviation units of measurement (e.g., Knots to km/h, Nautical Miles to Statute Miles/Kilometers, Feet to Meters, Pounds to Kilograms, Gallons to Liters).
- Descent and climb planning: Calculating the Top of Descent (TOD) profile based on current altitude, target altitude, and vertical speed (Rate of Descent).

3. Algebra, Inequalities & Linear Systems:
- Rapid solving of first-degree and second-degree algebraic equations, systems of equations, and multi-variable inequalities.
- Utilizing linear models to balance interconnected flight variables such as weight, fuel burn, airspeed, and time constraints.

4. Geometry & Aviation Trigonometry:
- Application of the Pythagorean theorem and trigonometric functions (Sin, Cos, Tan) to determine flight paths, track deviations, and Cross-Track Error (XTE).
- Calculating climb/descent glide paths and aircraft bank angles during turns.
- Solving the Wind Triangle: Determining groundspeed, drift angle, headwind/tailwind components, and calculating the Wind Correction Angle (WCA).

5. Data Interpretation, Charts & Performance Matrices:
- Deep-dive analysis of complex Aircraft Performance Charts, including Takeoff and Landing Distance Tables, Climb Performance Graphs, and En-Route Cruise Tables.
- Interpreting meteorological charts, wind vector diagrams, and multi-variable operational matrices involving aircraft mass, ambient temperature, and pressure altitude.

Second: Applied Aviation Physics & Aerodynamics Component
This module builds a fundamental, intuitive understanding of physical principles and fluid dynamics governing aircraft behavior across all flight phases:

1. Mechanics & Flight Dynamics:
- Application of Newton’s Three Laws of Motion to aircraft dynamics (Inertia, Force = Mass x Acceleration, Action/Reaction forces).
- Scalar vs. Vector quantities, acceleration, momentum, and kinetic principles during takeoff roll, climb, cruise, and landing.
- Circular motion principles, centripetal force, and load factor dynamics (G-forces) during turning maneuvers and structural limitations.

2. Aerodynamics & The Four Forces of Flight:
- Comprehensive study of the four primary flight forces: Lift, Weight (Gravity), Thrust, and Drag.
- The mechanics of lift generation across airfoils utilizing Bernoulli’s Principle and Newton’s Third Law.
- Analyzing Parasite Drag vs. Induced Drag, understanding the Total Drag Curve, and identifying the speed for maximum endurance and range.
- Principles of Angle of Attack (AOA), aerodynamic stall phenomena, stall speed variables, and recovery procedures.

3. Atmospheric Physics & Thermodynamics:
- Detailed analysis of the International Standard Atmosphere (ISA) and the rate of pressure, temperature, and density variation with altitude.
- The concept of Density Altitude: How elevated ambient temperatures and reduced atmospheric pressure impact engine thrust output and wing lift capability.
- Fluid mechanics and gas laws affecting pitot-static flight instruments, including the Airspeed Indicator (ASI), Altimeter, and Vertical Speed Indicator (VSI).

4. Work, Energy & Aircraft Equilibrium:
- Energy transformation concepts: Interchanging Potential Energy (altitude) and Kinetic Energy (airspeed) during flight maneuvers.
- Mechanics of Torque, Moment, and Center of Gravity (CG) location, and their critical impact on longitudinal stability, control authority, and structural loading.
- Principles of simple machines and leverage applied to aircraft mechanical linkages, flight control surfaces, and hydraulic actuation systems.

Third: Examination Tactics, Time Management & Psychological Preparedness
Beyond subject mastery, this program arms candidates with crucial test-taking tactics designed for high-stress selection environments:
- Time-allocation strategies tailored to pass computer-based assessment modules with strict time limits per question.
- Advanced estimation techniques, systematic process of elimination, and tactical decision-making under stress.
- Full-length simulated mock examinations patterned directly after the testing formats used in Emirates Airline and Etihad Airways Cadet Pilot assessment centers.

This course is engineered to position you at the absolute top of the applicant pool, supplying the exact blend of academic rigor, cognitive speed, and aviation insight required to fulfill your ambition of entering the airliner cockpit as a professional pilot.
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