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Motion energy

Bewegungs-, motive, motor, motion, -energie, /. kinetic energy. -grSfise, /. quantity of mo-... [Pg.69]

Molecules translate, rotate and vibrate at any temperature (except absolute zero), jumping between the requisite quantum-mechanically allowed energy levels. We call the common pool of energy enabling translation, rotation and vibration the thermal energy . In fact, we can now rephrase the statement on p. 34, and say that temperature is a macroscopic manifestation of these motions. Energy can be readily distributed and redistributed at random between these different modes. [Pg.465]

AUTOMATIC MOVIE ANALYSIS (AMA) AND MOTION-ENERGY-DETECTION (MED)... [Pg.101]

Essa, I. Pentland, A. 1995. Facial expression recognition using a dynamic model and motion energy. Int l Conference on Computer Vision, Cambridge, MA, June 20-23, 1995. [Pg.118]

Was this your answer Put the pie back into the oven and none of the motional energy of its molecules will be transferred to its hotter surroundings.To maximize the dispersal of its energy, you place the pie outside where the temperature is the lowest.The greater the temperature difference, the greater will be the change in entropy. [Pg.316]

Whereas the group jr and its representations are relevant and sufficient for problems which are completely defined by relative nuclear configurations (RNCs) of a SRM, primitive period isometric transformations have to be considered as nontrivial symmetry operations in all those applications where the orientation of the NC w.r.t. the frame and laboratory coordinate system is relevant, e.g. the rotation-internal motion energy eigenvalue problem of a SRM. Inclusion of such primitive period operations leads to the internal isometric group ( ) represented faithfully by... [Pg.15]

Kinetic molecular theory says that the particles of a substance are in constant random motion. What causes this motion Energy. [Pg.108]

Mean free path indicates the transfer of momentum, energy, or mass a distance. In the steady state, the net transport equals zero. These forces, or transfer functions, always act to bring a system back to the steady state. This implies (1) diffusion from high concentration to low concentration, (2) heat conduction from hot to cold, and (3) momentum flow—mass motion energy to molecular motion (hence accompanied by a rise in temperature of the gas). [Pg.34]

Radon-222 is unstable and spontaneously emits an alpha particle. The resulting polonium is more stable than the radon and has a lower energy state. In fact, there is a transformation of mass into energy (the kinetic, or motion, energy of the alpha particle accounts for most of this), so the radon has a greater mass than the sum of the masses of the polonium and the alpha particle. [Pg.117]

The most important and attractive part of the NSC is a Science Park for children. With green surroundings, the Children s Science Park has exhibited on time, motion, energy, power and work. Also, there are models of railway engines, tram cars, aeroplanes, steam lorries, a windmill and a sun dial. There are birds, animals and fish to acquaint children with nature. While children enjoy the Science Park the most, it also helps them to understand what why and how of the queries, questions and problems haunting their minds. [Pg.6]

We have thus chosen to pursue these studies using vinyl homopolymers labelled with PBD and PPO with a view to elucidating both the fundamental photophysical processes involved in sub-nanosecond excimer formation and also the effect of segmental motion, energy migration and the constraints Imposed by the polymer backbone. [Pg.172]


See other pages where Motion energy is mentioned: [Pg.181]    [Pg.184]    [Pg.547]    [Pg.112]    [Pg.33]    [Pg.199]    [Pg.102]    [Pg.107]    [Pg.199]    [Pg.203]    [Pg.197]    [Pg.47]    [Pg.677]    [Pg.735]    [Pg.315]    [Pg.106]    [Pg.196]    [Pg.196]    [Pg.17]    [Pg.133]    [Pg.66]    [Pg.4532]    [Pg.29]    [Pg.55]    [Pg.29]    [Pg.272]    [Pg.1246]    [Pg.211]    [Pg.57]    [Pg.58]    [Pg.10]    [Pg.277]    [Pg.110]    [Pg.60]    [Pg.76]    [Pg.48]   
See also in sourсe #XX -- [ Pg.29 ]




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Activation energies local motions

Brownian motion energy distribution function

Chemical energy motion produced

Damped harmonic motion energy

Design energy and motion control

Energies motion production

Energy States for Nuclear Motion

Energy and Motion Control

Energy from Earths Two Great Fluids in Motion

Energy levels rotational motion

Energy molecular motion

Energy of a fluid in motion

Energy simple harmonic motion

Energy sources muscle contraction motion

Hypersurface of the potential energy for nuclear motion

Kinetic energy 78 directional motion

Kinetic energy 78 random motion

Kinetic energy global motion

Kinetic energy of random motion

Kinetic energy operator nuclear motion Schrodinger equation

Light energy motion produced

Motion chemical energy production

Motion energy conversions

Motion light energy production

Motion thermal energy production

Motion, kinetic energy and

Motions and Energy

Potential energy curves rotational motion

Potential energy surfaces nuclear motions

Relative motion, energy eigenvalue

Rolling motion, energy

Rugged energy landscape for water motion

Sums in the Energy Equation Modes of Motion

Thermal energy motion produced

Thermal energy/motion

Translational motion allowed energy states

Translational motion, average energy

Vibrational motions and energies

Water motion 35 translational energy

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