Derive Reissner Nordstrom Eq. (8) Explained

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In summary, the Reissner Nordstrom equation is a mathematical equation that describes the electromagnetic field around a charged, non-rotating black hole. It is derived from the Einstein field equations of general relativity and is significant in understanding the behavior of black holes. Eq. (8) is a specific equation within the Reissner Nordstrom equation that describes the electric field component and is used in astrophysics to study charged black holes and their effect on their surroundings, as well as the formation of accretion disks.
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darida
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I want to derive Reissner Nordstrom solution using this paper as a guide: http://gmammado.mysite.syr.edu/notes/RN_Metric.pdf, but I get confused by the Eq. (8). Why the Enstein's equation can be rewritten in that form and what is the physical meaning of the Eq. (8)?
 
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Contract both sides of (3) with ##g^{\mu\nu}## and you will get a condition for ##R##
 
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Ah thank you, that's so simple >_<
 
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The trace of the energy-momentum tensor of a classical massless field vanishes because of symmetry under dilations. Now use the hint in #2.
 
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Related to Derive Reissner Nordstrom Eq. (8) Explained

1. What is the Reissner Nordstrom equation?

The Reissner Nordstrom equation is a mathematical equation that describes the electromagnetic field around a charged, non-rotating black hole. It is named after the physicists Hans Reissner and Gunnar Nordstrom who first derived the equation in 1916.

2. What does Eq. (8) refer to in the Reissner Nordstrom equation?

Eq. (8) is a specific equation within the Reissner Nordstrom equation that describes the electric field component of the electromagnetic field around a charged black hole. It is often used in conjunction with other equations to fully describe the electromagnetic field.

3. How is the Reissner Nordstrom equation derived?

The Reissner Nordstrom equation is derived from the Einstein field equations of general relativity, which describe the relationship between the curvature of space-time and the distribution of matter and energy within it. The equation is derived by assuming that the black hole is non-rotating and has a static, spherically symmetric charge distribution.

4. What is the significance of the Reissner Nordstrom equation?

The Reissner Nordstrom equation is significant because it provides a mathematical understanding of the electromagnetic field around a charged black hole. This is important for understanding the behavior of black holes and their interactions with matter and radiation.

5. How is Eq. (8) used in astrophysics?

Eq. (8) is used in astrophysics to study the behavior of charged black holes and their effect on their surroundings. It is also used in the study of accretion disks, which are disks of matter that form around black holes and emit electromagnetic radiation as they spiral towards the black hole. The Reissner Nordstrom equation helps to explain the behavior of these accretion disks and the role of the electric field in their formation.

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