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Z
 ddlmZ ddlmZ ddlmZmZmZ eee Zeed	 ed
  eed   Zeee ed	 ed	   ZG dd deZG dd deZG dd deZdS )z
**Contains**

* Medium
    )secondmeterkilogramampereMedium)Basic)Str)_sympify)sqrt)speed_of_lightu0e0         c                   @   s>   e Zd ZdZdddZedd Zedd Zed	d
 ZdS )r   aW  
    This class represents an optical medium. The prime reason to implement this is
    to facilitate refraction, Fermat's principle, etc.

    Explanation
    ===========

    An optical medium is a material through which electromagnetic waves propagate.
    The permittivity and permeability of the medium define how electromagnetic
    waves propagate in it.


    Parameters
    ==========

    name: string
        The display name of the Medium.

    permittivity: Sympifyable
        Electric permittivity of the space.

    permeability: Sympifyable
        Magnetic permeability of the space.

    n: Sympifyable
        Index of refraction of the medium.


    Examples
    ========

    >>> from sympy.abc import epsilon, mu
    >>> from sympy.physics.optics import Medium
    >>> m1 = Medium('m1')
    >>> m2 = Medium('m2', epsilon, mu)
    >>> m1.intrinsic_impedance
    149896229*pi*kilogram*meter**2/(1250000*ampere**2*second**3)
    >>> m2.refractive_index
    299792458*meter*sqrt(epsilon*mu)/second


    References
    ==========

    .. [1] https://en.wikipedia.org/wiki/Optical_medium

    Nc                 C   s  t |ts	t|}|d urt|n|}|d urt|n|}|d ur%t|n|}|d url|d urC|d u rC|d td |  }t|||S |d ur[|d u r[|d td |  }t|||S |d urg|d urgtdt||S |d urz|d urzt|||S |d u r|d u rt|ttS td)Nr   zBSpecifying all of permittivity, permeability, and n is not allowedz^Arguments are underspecified. Either specify n or any two of permittivity, permeability, and n)	
isinstancer   r	   cMediumPP
ValueErrorMediumN_e0mksa_u0mksa)clsnamepermittivitypermeabilityn r   o/var/www/html/construction_image-detection-poc/venv/lib/python3.10/site-packages/sympy/physics/optics/medium.py__new__H   s(   

zMedium.__new__c                 C   
   | j d S )Nr   argsselfr   r   r   r   c      
zMedium.namec                 C   
   t | j S )aM  
        Returns speed of the electromagnetic wave travelling in the medium.

        Examples
        ========

        >>> from sympy.physics.optics import Medium
        >>> m = Medium('m')
        >>> m.speed
        299792458*meter/second
        >>> m2 = Medium('m2', n=1)
        >>> m.speed == m2.speed
        True

        )r   r   r#   r   r   r   speedg   s   
zMedium.speedc                 C   r&   )z
        Returns refractive index of the medium.

        Examples
        ========

        >>> from sympy.physics.optics import Medium
        >>> m = Medium('m')
        >>> m.refractive_index
        1

        )r   r'   r#   r   r   r   refractive_indexz      
zMedium.refractive_index)NNN)	__name__
__module____qualname____doc__r   propertyr   r'   r(   r   r   r   r   r      s    
0

c                       s,   e Zd ZdZ fddZedd Z  ZS )r   a  
    Represents an optical medium for which only the refractive index is known.
    Useful for simple ray optics.

    This class should never be instantiated directly.
    Instead it should be instantiated indirectly by instantiating Medium with
    only n specified.

    Examples
    ========
    >>> from sympy.physics.optics import Medium
    >>> m = Medium('m', n=2)
    >>> m
    MediumN(Str('m'), 2)
    c                    s   t t| | ||}|S Nsuperr   r   )r   r   r   obj	__class__r   r   r      s   zMediumN.__new__c                 C   r    )N   r!   r#   r   r   r   r      r%   z	MediumN.n)r*   r+   r,   r-   r   r.   r   __classcell__r   r   r3   r   r      s
    r   c                       sP   e Zd ZdZ fddZedd Zedd Zedd	 Zed
d Z	  Z
S )r   aJ  
    Represents an optical medium for which the permittivity and permeability are known.

    This class should never be instantiated directly. Instead it should be
    instantiated indirectly by instantiating Medium with any two of
    permittivity, permeability, and n specified, or by not specifying any
    of permittivity, permeability, or n, in which case default values for
    permittivity and permeability will be used.

    Examples
    ========
    >>> from sympy.physics.optics import Medium
    >>> from sympy.abc import epsilon, mu
    >>> m1 = Medium('m1', permittivity=epsilon, permeability=mu)
    >>> m1
    MediumPP(Str('m1'), epsilon, mu)
    >>> m2 = Medium('m2')
    >>> m2
    MediumPP(Str('m2'), 625000*ampere**2*second**4/(22468879468420441*pi*kilogram*meter**3), pi*kilogram*meter/(2500000*ampere**2*second**2))
    c                    s   t t| | |||}|S r/   r0   )r   r   r   r   r2   r3   r   r   r      s   zMediumPP.__new__c                 C   s   t | j| j S )a  
        Returns intrinsic impedance of the medium.

        Explanation
        ===========

        The intrinsic impedance of a medium is the ratio of the
        transverse components of the electric and magnetic fields
        of the electromagnetic wave travelling in the medium.
        In a region with no electrical conductivity it simplifies
        to the square root of ratio of magnetic permeability to
        electric permittivity.

        Examples
        ========

        >>> from sympy.physics.optics import Medium
        >>> m = Medium('m')
        >>> m.intrinsic_impedance
        149896229*pi*kilogram*meter**2/(1250000*ampere**2*second**3)

        )r
   r   r   r#   r   r   r   intrinsic_impedance   s   zMediumPP.intrinsic_impedancec                 C   r    )a  
        Returns electric permittivity of the medium.

        Examples
        ========

        >>> from sympy.physics.optics import Medium
        >>> m = Medium('m')
        >>> m.permittivity
        625000*ampere**2*second**4/(22468879468420441*pi*kilogram*meter**3)

        r5   r!   r#   r   r   r   r      r)   zMediumPP.permittivityc                 C   r    )a  
        Returns magnetic permeability of the medium.

        Examples
        ========

        >>> from sympy.physics.optics import Medium
        >>> m = Medium('m')
        >>> m.permeability
        pi*kilogram*meter/(2500000*ampere**2*second**2)

        r   r!   r#   r   r   r   r      r)   zMediumPP.permeabilityc                 C   s   t t| j| j  S r/   )r   r
   r   r   r#   r   r   r   r      s   z
MediumPP.n)r*   r+   r,   r-   r   r.   r7   r   r   r   r6   r   r   r3   r   r      s    


r   N)r-   sympy.physics.unitsr   r   r   r   __all__sympy.core.basicr   sympy.core.symbolr   sympy.core.sympifyr	   (sympy.functions.elementary.miscellaneousr
   r   r   r   
convert_tor   r   r   r   r   r   r   r   r   r   <module>   s    "u