subject
Physics, 02.07.2019 20:20 andy2461

Constructing the schw arzs child embedding dia r goal in this box is to construct in a three-dimensional euclidean space a t ou dimensional surface having the same metric as a t = const, θ π/2 slice through schwarzschild spacetime, which is given by equation 11.14 (repeated here): wo dr2 1-2gmir ds (11.14r) ates r and φ on the horizontal plane and a vertical coordinate z. the metric for such a onsider a three-dimensional euclidean space described by polar coordin space in this coordinate system is (11.21) note that a horizontal circle in this space has circumference s = fr = 2m, so r is a circumferential coordinate for such circles, as it is in the schwarzschild metric. in this three-dimensional space, we can describe a two-dimensional surface by specifying its heightz as a function of the horizontal coordinates r and φ. since the schwarzschild geometry is symmetric under rotations in φ, we would expect the surface that represents it to display the same symmetry, so in this particular case, we expect the height of our surface to be a function of r alone: z = z(r). the metric on this surface can be found by substituting z(r) into equation 11.21 to eliminate dz and thus find a metric that depends only on r and φ. doing this yields dz dr r'+pdが dr (11.22) our goal is to find the function z(r) that makes the metric of this surface match the metric in equation 11.14, that is, z(r) such that (11.23) this is a firs-order differential equation that you can solve. exercise 11.5.1. solve equation 11.23 for dz/dr and integrate the resulting equation. you should find that z(r)=±v8gm(r_2gm) plus an irrelevant constant of integration that merely moves the surface up or down vertically. we choose (arbitrarily) the positive solution to represent our surface.

ansver
Answers: 2

Another question on Physics

question
Physics, 21.06.2019 19:00
What is work? how much work is done to move an object 0 meters?
Answers: 1
question
Physics, 21.06.2019 23:00
Acoal-fired plant generates 600 mw of electric power. the plant uses 4.8 x 10^6 kg of coal each day, and the heat of combustion of coal is 3.3x 10^7 j/kg. the steam that drives the turbines is at a temperature of 300° c, and the exhaust water is at 37° c. (a) what is the overall efficiency of the plant for generating electric power? (b) how much thermal energy is exhausted each day? (c) what is the change in entropy of the universe for this heat engine? (d) using the same heat reservoirs, what is the maximum possible (carnot) efficiency for a heat engine?
Answers: 1
question
Physics, 22.06.2019 02:20
Which changes of state do the labels represent? a: b: c:
Answers: 1
question
Physics, 22.06.2019 19:20
Two kilograms of air within a piston–cylinder assembly executes a carnot power cycle with maximum and minimum temperatures of 800 k and 300 k, respectively. the heat transfer to the air during the isothermal expansion is 60 kj. at the end of the isothermal expansion the volume is 0.4 m3. assume the ideal gas model for the air. determine the thermal efficiency, the volume at the beginning of the isothermal expansion, in m3, and the work during the adiabatic expansion, in kj.
Answers: 1
You know the right answer?
Constructing the schw arzs child embedding dia r goal in this box is to construct in a three-dimensi...
Questions
question
Social Studies, 03.07.2019 20:30
Questions on the website: 13722361