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In physics, specifically relativistic quantum mechanics (RQM) and its applications to particle physics, relativistic wave equations predict the behavior of particles at high energies and velocities comparable to the speed of light. In the context of quantum field theory (QFT), the equations determine the dynamics of quantum fields.The solutions to the equations, universally denoted as ψ or Ψ (Greek psi), are referred to as "wave functions" in the context of RQM, and "fields" in the context of QFT. The equations themselves are called "wave equations" or "field equations", because they have the mathematical form of a wave equation or are generated from a Lagrangian density and the field-theoretic Euler–Lagrange equations (see classical field theory for background).

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  • معادلات الموجة النسبية (ar)
  • Relativistic wave equations (en)
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  • قبل ظهور نظرية المجال الكمي حاول علماء الفيزياء صياغة معادلة شرودنجر للتتوافق مع النسبية الخاصة وسميت هذه المعادلات معادلات الموجة النسبية (بالإنجليزية: Relativistic wave equations)‏ حيث قام إروين شرودنغر بوضع أول معادلة من معادلات الموجة النسبية وسميت هذه المعادلة معادلة كلاين-غوردون، إلا أن هذه المعادلة تعطي نتائج خاطئة عند حساب طاقة مستويات ذرة الهيدروجين . (ar)
  • In physics, specifically relativistic quantum mechanics (RQM) and its applications to particle physics, relativistic wave equations predict the behavior of particles at high energies and velocities comparable to the speed of light. In the context of quantum field theory (QFT), the equations determine the dynamics of quantum fields.The solutions to the equations, universally denoted as ψ or Ψ (Greek psi), are referred to as "wave functions" in the context of RQM, and "fields" in the context of QFT. The equations themselves are called "wave equations" or "field equations", because they have the mathematical form of a wave equation or are generated from a Lagrangian density and the field-theoretic Euler–Lagrange equations (see classical field theory for background). (en)
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