لخّصلي

خدمة تلخيص النصوص العربية أونلاين،قم بتلخيص نصوصك بضغطة واحدة من خلال هذه الخدمة

نتيجة التلخيص (100%)

X-rays result from the conversion of the kinetic energy
attained by electrons accelerated under a potential difference--the magnitude of which is termed voltage with units of volts (V)--into electromagnetic radiation, as am result of collisional and radiative interactions.The x-ray tube provides the environment (evacuated x-ray tube insert and high-voltage cable sockets), source of electrons (cathode), source of x-rays (anode), induction motor to rotate the anode (rotor/stator), transformer oil and expansion bellows to provide electrical and heat build-up protection, and the tube housing to support the insert and provide protection from leakage radiation.The x-ray tube provides the proper environment and components to produce x-rays, whereas the x-ray generator provides the source of electrical voltage
and user controls to energize the x-ray tube.The x-ray generator provides operator control of the radiographic techniques, including tube voltage (kVp), tube current (mA), and exposure duration, and delivers power to the x-ray tube.In the x-ray tube, 2 electrodes, the cathode and anode, are situated a small distance apart (about 1-2 cm) in a vacuum enclosure called the insert, made of either glass or metal.A separate, isolated circuit connects the cathode filament (a coiled wire structure similar to a coiled light-bulb filament) to a low-voltage power source.Connected to the cathode and the anode are negative and positive high-voltage cables, respectively, from the x-ray generator.X-ray generator and x-ray tube components are illustrated.An x-ray tube and
x-ray generator are the necessary components for x-ray production and control.Basic components of an x-ray system are illustrated in Figure 3.To produce x-rays, a specific sequence of events is required.


النص الأصلي

X-rays result from the conversion of the kinetic energy
attained by electrons accelerated under a potential difference—the magnitude of which is termed voltage with units of volts (V)—into electromagnetic radiation, as am result of collisional and radiative interactions. An x-ray tube and
x-ray generator are the necessary components for x-ray production and control. The x-ray tube provides the proper environment and components to produce x-rays, whereas the x-ray generator provides the source of electrical voltage
and user controls to energize the x-ray tube. Basic components of an x-ray system are illustrated in Figure 3. In the x-ray tube, 2 electrodes, the cathode and anode, are situated a small distance apart (about 1–2 cm) in a vacuum enclosure called the insert, made of either glass or metal. Connected to the cathode and the anode are negative and positive high-voltage cables, respectively, from the x-ray generator. A separate, isolated circuit connects the cathode filament (a coiled wire structure similar to a coiled light-bulb filament) to a low-voltage power source. To produce x-rays, a specific sequence of events is required.
X-ray generator and x-ray tube components are illustrated. The x-ray generator provides operator control of the radiographic techniques, including tube voltage (kVp), tube current (mA), and exposure duration, and delivers power to the x-ray tube. The x-ray tube provides the environment (evacuated x-ray tube insert and high-voltage cable sockets), source of electrons (cathode), source of x-rays (anode), induction motor to rotate the anode (rotor/stator), transformer oil and expansion bellows to provide electrical and heat build-up protection, and the tube housing to support the insert and provide protection from leakage radiation.


تلخيص النصوص العربية والإنجليزية أونلاين

تلخيص النصوص آلياً

تلخيص النصوص العربية والإنجليزية اليا باستخدام الخوارزميات الإحصائية وترتيب وأهمية الجمل في النص

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