Category
Aviation (19)Engineering (16)Physics (10)Military (9)Aeronautics (9)Ballistics (8)Aerospace (8)Science (7)Aircraft (7)Aerodynamics (5)Automotive (4)Aerospace Engineering (4)Acoustics (4)Space (3)Transportation (2)Renewable Energy (2)Meteorology (2)Fluid Mechanics (2)Fluid Dynamics (2)Astronautics (2)Technology (2)Mechanical Engineering (2)Aircraft Design (2)Mechanics (2)Automotive Industry (1)Thermodynamics (1)Sports (1)Environmental Science (1)Motorsports (1)Sailing (1)Noise Pollution (1)Medical Imaging (1)Flight Testing (1)Regulations (1)Helicopters (1)Maritime (1)Environment (1)Business (1)Environmental Engineering (1)Geophysics (1)Structural Engineering (1)Marine Biology (1)Geology (1)Flying (1)Research (1)Architecture (1)Automobiles (1)Robotics (1)Travel (1)Health (1)Marine Technology (1)Music (1)Explosives (1)Rocketry (1)Railway (1)Firearms (1)Space Industry (1)Power Generation (1)Defense (1)Design (1)Boats (1)Spacecraft (1)Ornithology (1)Aeronautical Engineering (1)Rocket Science (1)Safety (1)Space Exploration (1)Civil Engineering (1)Missiles (1)Mechanical (1)
Usage Examples
Filter by Meaning The transonic region is known to cause significant turbulence.
The transonic air flow created a loud sonic boom.
The transonic wind tunnel was critical in determining the stability of the drone during flight.
The transonic flow of air around the wings of the airplane caused turbulence.
The airplane experienced transonic airflow during its descent.
The transonic wind tunnel was used to test the aerodynamics of the race car.
The transonic flow of air through the engine of the helicopter caused it to lift off the ground.
The supersonic jet created a transonic shock wave as it broke the sound barrier.
The transonic shockwave caused by the supersonic bullet shattered the glass.
The transonic flight capabilities of the aircraft made it a popular choice for military operations.
The pilot had to make adjustments to maintain a transonic speed.
The transonic region is where the airspeed of an aircraft transitions from subsonic to supersonic.
The transonic flow around the aircraft's wings created a shock wave.
The transonic aircraft was able to fly at both subsonic and supersonic speeds.
The transonic aircraft was able to break the sound barrier without causing a sonic boom.
The transonic technology allowed the aircraft to fly at high speeds while remaining stable.
The transonic speed range is difficult to study due to the complex physics involved.
The fighter jet was designed to achieve transonic speeds in combat.
The sound of transonic air passing over the wings of the airplane is a distinct hum.
The aircraft experienced transonic flutter during the test flight.
The transonic drone was equipped with a high-resolution camera for surveillance purposes.
The transonic aircraft had a distinct shape for optimal performance.
The wind tunnel produced transonic flow around the model.
The aerodynamics of a bullet change drastically as it passes through the transonic region.
The transonic tunnel allows engineers to study the effects of airflow at high speeds.
The aerodynamic drag experienced by a transonic object is much higher than that at subsonic speeds.
The aerospace company invested in a transonic wind tunnel to improve the performance of their space launch vehicles.
The transonic speeds of the air currents affect the performance of wind turbines.
The transonic effects of supersonic aircraft can be felt by those on the ground.
The aerodynamicists studied the transonic flow around the airplane's wings to optimize lift and reduce drag.
The transonic fighter jet soared through the sky.
The transonic shock waves generated by supersonic aircraft can be heard for miles.
The transonic vibrations on the suspension bridge can be felt by pedestrians crossing it.
The aircraft experienced turbulence as it transitioned from subsonic to transonic speeds.
The supersonic jet broke through the transonic zone with a sonic boom.
The transonic wind tunnel allowed the researchers to examine the shock waves that occur at high speeds around aircraft wings.
The transonic wind tunnel is used to test aircraft at high speeds.
Engineers use transonic wind tunnels to study the airflow around aircraft models.
Transonic flight is often used in military aircraft to achieve high speeds without producing a sonic boom.
The fighter jet broke the sound barrier and entered the transonic speed range.
Engineers use transonic wind tunnels to test aircraft designs.
The team used a transonic wind tunnel to study the effects of airflow on the car's body.
The transonic wind tunnel experiment proved successful.
The research team conducted experiments on transonic fluid dynamics.
The engineers developed a transonic flow control system to increase aircraft efficiency.
The transonic air flow over the surface of a boat's hull affects its speed and stability.
The transonic airflow caused a change in pressure around the wings.
The transonic flow of water around the ship's hull created drag and slowed down the vessel.
The transonic flight regime is characterized by the formation of shock waves.
The transonic speed of the bullet train allowed it to travel faster than traditional trains.
Post a Comment