<--- Back to Details
First PageDocument Content
Gravitational wave / Differential equation / Physical cosmology / General relativity / Physics / Gravitation
Date: 2006-05-26 03:09:21
Gravitational wave
Differential equation
Physical cosmology
General relativity
Physics
Gravitation

GW-experiment: current situation at Jan.2006 Gravitational Waves (GW) Gravitational waves give fundamental informations on the Universe.

Add to Reading List

Source URL: dbserv.pnpi.spb.ru

Download Document from Source Website

File Size: 2,30 MB

Share Document on Facebook

Similar Documents

Differential Equation Axiomatization The Impressive Power of Differential Ghosts André Platzer Yong Kiam Tan

Differential Equation Axiomatization The Impressive Power of Differential Ghosts André Platzer Yong Kiam Tan

DocID: 1xUKG - View Document

MathQuest: Differential Equations What is a Differential Equation? 1. Which of the following is not a differential equation? (a) y ′ = 3y (b) 2x2 y + y 2 = 6 =2

MathQuest: Differential Equations What is a Differential Equation? 1. Which of the following is not a differential equation? (a) y ′ = 3y (b) 2x2 y + y 2 = 6 =2

DocID: 1vbJA - View Document

MathQuest: Differential Equations Introduction to Partial Differential Equations 1. Which of the following functions satisfies the equation x ∂f + y ∂f = f? ∂x

MathQuest: Differential Equations Introduction to Partial Differential Equations 1. Which of the following functions satisfies the equation x ∂f + y ∂f = f? ∂x

DocID: 1vb7j - View Document

Equilibrium Solutions For the 1st Order Autonomous Differential Equation Consider the IVP dy  y ( y

Equilibrium Solutions For the 1st Order Autonomous Differential Equation Consider the IVP dy y ( y

DocID: 1v5d6 - View Document

Landing a probe on Mars Suppose we want to land a 200kg mass on the surface of Mars. We release it at a height of 10 km. 2 If we simply allow free fall the differential equation and corresponding IVP governing this is

Landing a probe on Mars Suppose we want to land a 200kg mass on the surface of Mars. We release it at a height of 10 km. 2 If we simply allow free fall the differential equation and corresponding IVP governing this is

DocID: 1v4OQ - View Document