A crucial aspect of aerodynamic design is minimizing energy loss due to turbulence, which dissipates translational energy.
Analyzing the Doppler broadening of spectral lines reveals information about the translational energy of the emitting atoms.
Brownian motion is a direct consequence of the constant bombardment of particles by molecules with varying translational energy.
Catalytic reactions often involve complex energy transfers, including changes in translational energy of reactants.
During an explosion, the rapid increase in translational energy creates a powerful shockwave.
Heating a metal object increases the vibrational and translational energy of its constituent atoms.
In a supersonic jet, a significant portion of the engine's output is dedicated to increasing the aircraft's translational energy.
In plasma physics, understanding the translational energy of ions is essential for fusion research.
Increasing the temperature of a gas directly increases the average translational energy of its constituent molecules.
Inelastic collisions involve changes in both translational energy and internal energy.
Measuring the translational energy of scattered particles provides information about the potential energy surface.
Molecular collisions transfer translational energy, influencing the temperature and pressure of a gas.
Studying the translational energy released during molecular dissociation provides insights into the bond breaking process.
The amount of translational energy possessed by an object is determined by its mass and velocity.
The average translational energy of a gas molecule is directly proportional to its absolute temperature.
The ball gained significant translational energy as it rolled down the steep hill.
The change in translational energy of the system reflects the work done on it.
The collision resulted in a significant transfer of translational energy between the objects.
The conservation of translational energy is a fundamental principle in physics.
The conversion of chemical potential energy into translational energy is the basis of many propulsion systems.
The design of the new engine aims at optimizing the conversion of heat into translational energy.
The design of the robot prioritized efficient conversion of electrical energy into translational energy.
The design of the solar sail aimed to efficiently convert photons into translational energy.
The efficiency of a heat engine is limited by the second law of thermodynamics, which dictates the flow of translational energy.
The efficiency of a rocket engine depends, in part, on how effectively it converts chemical energy into translational energy of the exhaust gases.
The efficiency of the motor was greatly improved by reducing losses in translational energy.
The engine's power output is directly related to the rate at which it generates translational energy.
The experiment aimed to demonstrate the quantum nature of translational energy.
The experiment aimed to measure the increase in translational energy of the particles after being subjected to a laser pulse.
The experiment demonstrated the transfer of translational energy from a macroscopic object to a microscopic system.
The experiment investigated the effects of magnetic fields on the translational energy of charged particles.
The experiment was designed to measure the distribution of translational energy.
The impact of a falling object is determined by its potential energy converted into translational energy.
The impact of the meteor converted a large amount of potential energy into kinetic energy, primarily translational energy and heat.
The kinetic theory of gases provides a statistical description of translational energy.
The laser cooling technique aims to reduce the translational energy of atoms, bringing them to near absolute zero temperatures.
The laser was used to precisely control the translational energy of the targeted atoms.
The principle of equipartition states that energy is equally distributed among different degrees of freedom, including translational energy.
The probe was designed to measure the translational energy of particles in the solar wind.
The project focused on developing new materials that can efficiently store translational energy.
The researchers aimed to understand how translational energy influences chemical reaction dynamics.
The researchers focused on developing a more efficient way to convert light into translational energy.
The rotational and translational energy modes of a molecule contribute to its overall thermal energy.
The scientist was researching how to harness translational energy from ocean currents.
The scientists were studying how to minimize the loss of translational energy during energy transfer.
The sensor accurately detected the small changes in translational energy of the system.
The sensor measured the fluctuating translational energy of the vibrating machinery.
The simulation accurately predicted the final translational energy of the simulated spacecraft.
The study explored how different collision energies affect the transfer of translational energy between molecules.
The study investigated the relationship between temperature and the average translational energy of atoms.
The translational energy associated with an object's motion is a form of kinetic energy.
The translational energy associated with the explosion caused a widespread destruction.
The translational energy distribution can reveal information about the origin of a gas sample.
The translational energy helps describe the movement of objects in physics.
The translational energy helps explain the behavior of objects in motion.
The translational energy influences the temperature and pressure of a gas.
The translational energy is a significant aspect of thermodynamics and molecular behavior.
The translational energy is critical to understanding the behavior of gases.
The translational energy is crucial for predicting the speed of molecules.
The translational energy is fundamental to understanding kinetic theory.
The translational energy is the kinetic energy associated with the motion of an object from one point to another.
The translational energy must be measured accurately in order to determine the system's overall energy state.
The translational energy of a bouncing ball decreases with each bounce due to energy dissipation.
The translational energy of a particle is the energy it has due to its motion.
The translational energy of a spacecraft determines its orbital trajectory.
The translational energy of an object is proportional to its mass and the square of its velocity.
The translational energy of electrons is critical in determining the conductivity of a material.
The translational energy of the air molecules causes pressure on the walls of the container.
The translational energy of the air molecules creates wind pressure.
The translational energy of the air molecules is related to the ambient temperature.
The translational energy of the ball increased as it rolled down the hill.
The translational energy of the bullet was sufficient to penetrate the target.
The translational energy of the comet was immense due to its high velocity.
The translational energy of the electrons was high enough to ionize the gas.
The translational energy of the emitted particles was measured using a time-of-flight spectrometer.
The translational energy of the gas was directly proportional to its temperature.
The translational energy of the gas was used to drive a small turbine.
The translational energy of the individual particles could be calculated using their velocities.
The translational energy of the molecule increased as it heated up.
The translational energy of the molecules was reduced during the cooling process.
The translational energy of the moving car allows it to overcome friction.
The translational energy of the moving object was equal to one half its mass times the square of its speed.
The translational energy of the moving parts contributed to the overall noise of the machine.
The translational energy of the object increased as it was pushed faster and faster.
The translational energy of the object was converted to other forms of energy during the impact.
The translational energy of the particles increased due to the applied force.
The translational energy of the photons was too low to induce a chemical reaction.
The translational energy of the projectile depended on the initial force applied.
The translational energy of the projectile was sufficient to cause significant damage to the target.
The translational energy of the sound waves is related to the loudness.
The translational energy of the spacecraft was carefully monitored during its mission.
The translational energy of the vibrating molecules resulted in the emission of infrared radiation.
The translational energy of the wind is harnessed by wind turbines to generate electricity.
The translational energy of water molecules is responsible for the phenomenon of evaporation.
The translational energy plays an important role in determining reaction rates.
The translational energy released in the nuclear reaction was immense.
The translational energy spectrum provides a detailed picture of the kinetic state of the system.
The translational energy, when sufficiently high, can cause molecular bonds to break.
Understanding the distribution of translational energy within a system is crucial for predicting reaction rates.
Understanding translational energy is fundamental to the study of thermodynamics and statistical mechanics.