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Review | Gravitational wave

Started bySam Wormley <swormley1@gmail.com>
First post2016-02-12 09:14 -0600
Last post2016-02-13 03:36 +0000
Articles 6 — 4 participants

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  Review | Gravitational wave Sam Wormley <swormley1@gmail.com> - 2016-02-12 09:14 -0600
    Re: Review | Gravitational wave jamesl51165@gmail.com - 2016-02-12 08:17 -0800
    Re: Review | Gravitational wave "Y.Porat" <y.y.porat@gmail.com> - 2016-02-12 08:37 -0800
    Re: Review | Gravitational wave jimp@specsol.spam.sux.com - 2016-02-12 17:47 +0000
      Re: Review | Gravitational wave Sam Wormley <swormley1@gmail.com> - 2016-02-12 20:16 -0600
        Re: Review | Gravitational wave jimp@specsol.spam.sux.com - 2016-02-13 03:36 +0000

#552517 — Review | Gravitational wave

FromSam Wormley <swormley1@gmail.com>
Date2016-02-12 09:14 -0600
SubjectReview | Gravitational wave
Message-ID<KcydnUxUoN1yayDLnZ2dnUU7-X2dnZ2d@giganews.com>
Gravitational wave
> https://en.wikipedia.org/wiki/Gravitational_wave


> In physics, gravitational waves are ripples in the curvature of
> spacetime which propagate as waves, travelling outward from the
> source. Predicted in 1916[1][2] by Albert Einstein on the basis of
> his theory of general relativity,[3][4] gravitational waves transport
> energy as gravitational radiation. The existence of gravitational
> waves is a possible consequence of the Lorentz invariance of general
> relativity since it brings the concept of a limiting speed of
> propagation of the physical interactions with it. By contrast,
> gravitational waves cannot exist in the Newtonian theory of
> gravitation, which postulates that physical interactions propagate at
> infinite speed.
>
> Before the direct detection of gravitational waves, there was
> indirect evidence for their existence. For example, measurements of
> the Hulse–Taylor binary system suggest that gravitational waves are
> more than a hypothetical concept. Potential sources of detectable
> gravitational waves include binary star systems composed of white
> dwarfs, neutron stars, and black holes. Various gravitational-wave
> detectors are under construction or in operation, such as Advanced
> LIGO which began observations in September 2015.[5]
>
> On 11th February 2016, the Advanced LIGO team announced that they had
> directly detected gravitational waves from a pair of black holes
> merging.


> Waves familiar from other areas of physics such as water waves, sound
> waves, and electromagnetic waves are able to carry energy, momentum,
> and angular momentum. By carrying these away from a source, waves are
> able to rob that source of its energy as well as its linear and
> angular momentum. Gravitational waves perform the same function.
> Thus, for example, a binary system loses angular momentum as the two
> orbiting objects spiral towards each other—the angular momentum is
> radiated away by gravitational waves.

-- 

sci.physics is an unmoderated newsgroup dedicated
to the discussion of physics, news from the physics
community, and physics-related social issues.

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#552524

Fromjamesl51165@gmail.com
Date2016-02-12 08:17 -0800
Message-ID<702a6b3c-0729-45fa-bc00-31ef653991e4@googlegroups.com>
In reply to#552517
بتاريخ الجمعة، 12 فبراير، 2016 7:14:59 ص UTC-8، كتب Sam Wormley:
> Gravitational wave
> > https://en.wikipedia.org/wiki/Gravitational_wave
> 

A Disembodied gravity field would pull and give weight.
These things are not detected. They move at the speed
of light causing pull and weight we cannot detect in time.

Mitchell Raemsch

> 
> > In physics, gravitational waves are ripples in the curvature of
> > spacetime which propagate as waves, travelling outward from the
> > source. Predicted in 1916[1][2] by Albert Einstein on the basis of
> > his theory of general relativity,[3][4] gravitational waves transport
> > energy as gravitational radiation. The existence of gravitational
> > waves is a possible consequence of the Lorentz invariance of general
> > relativity since it brings the concept of a limiting speed of
> > propagation of the physical interactions with it. By contrast,
> > gravitational waves cannot exist in the Newtonian theory of
> > gravitation, which postulates that physical interactions propagate at
> > infinite speed.
> >
> > Before the direct detection of gravitational waves, there was
> > indirect evidence for their existence. For example, measurements of
> > the Hulse–Taylor binary system suggest that gravitational waves are
> > more than a hypothetical concept. Potential sources of detectable
> > gravitational waves include binary star systems composed of white
> > dwarfs, neutron stars, and black holes. Various gravitational-wave
> > detectors are under construction or in operation, such as Advanced
> > LIGO which began observations in September 2015.[5]
> >
> > On 11th February 2016, the Advanced LIGO team announced that they had
> > directly detected gravitational waves from a pair of black holes
> > merging.
> 
> 
> > Waves familiar from other areas of physics such as water waves, sound
> > waves, and electromagnetic waves are able to carry energy, momentum,
> > and angular momentum. By carrying these away from a source, waves are
> > able to rob that source of its energy as well as its linear and
> > angular momentum. Gravitational waves perform the same function.
> > Thus, for example, a binary system loses angular momentum as the two
> > orbiting objects spiral towards each other—the angular momentum is
> > radiated away by gravitational waves.
> 
> -- 
> 
> sci.physics is an unmoderated newsgroup dedicated
> to the discussion of physics, news from the physics
> community, and physics-related social issues.

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#552535

From"Y.Porat" <y.y.porat@gmail.com>
Date2016-02-12 08:37 -0800
Message-ID<c5445f98-d121-4377-90e9-9ba67a2af156@googlegroups.com>
In reply to#552517
On Friday, February 12, 2016 at 5:14:59 PM UTC+2, Sam Wormley wrote:
> Gravitational wave
> > https://en.wikipedia.org/wiki/Gravitational_wave
> 
> 
> > In physics, gravitational waves are ripples in the curvature of
> > spacetime which propagate as waves, travelling outward from the
> > source. Predicted in 1916[1][2] by Albert Einstein on the basis of
> > his theory of general relativity,[3][4] gravitational waves transport
> > energy as gravitational radiation. The existence of gravitational
> > waves is a possible consequence of the Lorentz invariance of general
> > relativity since it brings the concept of a limiting speed of
> > propagation of the physical interactions with it. By contrast,
> > gravitational waves cannot exist in the Newtonian theory of
> > gravitation, which postulates that physical interactions propagate at
> > infinite speed.
> >
> > Before the direct detection of gravitational waves, there was
> > indirect evidence for their existence. For example, measurements of
> > the Hulse-Taylor binary system suggest that gravitational waves are
> > more than a hypothetical concept. Potential sources of detectable
> > gravitational waves include binary star systems composed of white
> > dwarfs, neutron stars, and black holes. Various gravitational-wave
> > detectors are under construction or in operation, such as Advanced
> > LIGO which began observations in September 2015.[5]
> >
> > On 11th February 2016, the Advanced LIGO team announced that they had
> > directly detected gravitational waves from a pair of black holes
> > merging.
> 
> 
> > Waves familiar from other areas of physics such as water waves, sound
> > waves, and electromagnetic waves are able to carry energy, momentum,
> > and angular momentum. By carrying these away from a source, waves are
> > able to rob that source of its energy as well as its linear and
> > angular momentum. Gravitational waves perform the same function.
> > Thus, for example, a binary system loses angular momentum as the two
> > orbiting objects spiral towards each other--the angular momentum is
> > radiated away by gravitational waves.
> 
> -- 
 ripples on yuor ass !!
========================

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#552557

Fromjimp@specsol.spam.sux.com
Date2016-02-12 17:47 +0000
Message-ID<sdi1pc-2so.ln1@mail.specsol.com>
In reply to#552517
Sam Wormley <swormley1@gmail.com> wrote:

After all the mainstream media and your repetitive cut and pastes of
the same information over and over again, it hardly need a review,
spammer.


-- 
Jim Pennino

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#552686

FromSam Wormley <swormley1@gmail.com>
Date2016-02-12 20:16 -0600
Message-ID<KcydnX9UoN1tDCPLnZ2dnUU7-X2dnZ2d@giganews.com>
In reply to#552557
On 2/12/16 11:47 AM, jimp@specsol.spam.sux.com wrote:
> After all the mainstream media and your repetitive cut and pastes of
> the same information over and over again, it hardly need a review,
> spammer.


Now, now, jimp, your *obsessive-compulsive* behavior is outta control,
your *language inappropriate* and your absolute contempt and total
disgust are addressed in these Anger Management classes. You, jimp,
need these services:
 > http://yellowpages.com/rancho-cucamonga-ca/anger-management-classes


Gravitational wave
 > https://en.wikipedia.org/wiki/Gravitational_wave


 > In physics, gravitational waves are ripples in the curvature of
 > spacetime which propagate as waves, travelling outward from the
 > source. Predicted in 1916[1][2] by Albert Einstein on the basis of
 > his theory of general relativity,[3][4] gravitational waves transport
 > energy as gravitational radiation. The existence of gravitational
 > waves is a possible consequence of the Lorentz invariance of general
 > relativity since it brings the concept of a limiting speed of
 > propagation of the physical interactions with it. By contrast,
 > gravitational waves cannot exist in the Newtonian theory of
 > gravitation, which postulates that physical interactions propagate at
 > infinite speed.
 >
 > Before the direct detection of gravitational waves, there was
 > indirect evidence for their existence. For example, measurements of
 > the Hulse–Taylor binary system suggest that gravitational waves are
 > more than a hypothetical concept. Potential sources of detectable
 > gravitational waves include binary star systems composed of white
 > dwarfs, neutron stars, and black holes. Various gravitational-wave
 > detectors are under construction or in operation, such as Advanced
 > LIGO which began observations in September 2015.[5]
 >
 > On 11th February 2016, the Advanced LIGO team announced that they had
 > directly detected gravitational waves from a pair of black holes
 > merging.


 > Waves familiar from other areas of physics such as water waves, sound
 > waves, and electromagnetic waves are able to carry energy, momentum,
 > and angular momentum. By carrying these away from a source, waves are
 > able to rob that source of its energy as well as its linear and
 > angular momentum. Gravitational waves perform the same function.
 > Thus, for example, a binary system loses angular momentum as the two
 > orbiting objects spiral towards each other—the angular momentum is
 > radiated away by gravitational waves.

-- 

sci.physics is an unmoderated newsgroup dedicated
to the discussion of physics, news from the physics
community, and physics-related social issues.

[toc] | [prev] | [next] | [standalone]


#552732

Fromjimp@specsol.spam.sux.com
Date2016-02-13 03:36 +0000
Message-ID<ruk2pc-phs.ln1@mail.specsol.com>
In reply to#552686
Sam Wormley <swormley1@gmail.com> wrote:
> On 2/12/16 11:47 AM, jimp@specsol.spam.sux.com wrote:
>> After all the mainstream media and your repetitive cut and pastes of
>> the same information over and over again, it hardly need a review,
>> spammer.
> 
> 
> Now, now, jimp, your *obsessive-compulsive* behavior is outta control,

After all the mainstream media and your repetitive cut and pastes of
the same information over and over again, it hardly need a review,
spammer.

Fuck off and die, shit head.


-- 
Jim Pennino

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