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Groups > sci.physics.relativity > #403228 > unrolled thread
| Started by | Gary Harnagel <hitlong@yahoo.com> |
|---|---|
| First post | 2016-12-29 19:02 -0800 |
| Last post | 2016-12-30 23:17 -0800 |
| Articles | 20 — 6 participants |
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Re: Calculating G Gary Harnagel <hitlong@yahoo.com> - 2016-12-29 19:02 -0800
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-29 22:22 -0800
Re: Calculating G Dirk Van de moortel <dirkvandemoortel@hotspam.not> - 2016-12-30 12:13 +0100
Re: Calculating G Sylvia Else <sylvia@not.at.this.address> - 2016-12-30 22:35 +1100
Re: Calculating G Dirk Van de moortel <dirkvandemoortel@hotspam.not> - 2016-12-30 13:03 +0100
Re: Calculating G mlwozniak@wp.pl - 2016-12-30 04:11 -0800
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-30 14:32 -0800
Re: Calculating G Gary Harnagel <hitlong@yahoo.com> - 2016-12-30 15:17 -0800
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-30 16:51 -0800
Re: Calculating G Sylvia Else <sylvia@not.at.this.address> - 2016-12-31 12:48 +1100
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-30 19:31 -0800
Re: Calculating G Sylvia Else <sylvia@not.at.this.address> - 2016-12-31 14:36 +1100
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-30 23:15 -0800
Re: Calculating G Sylvia Else <sylvia@not.at.this.address> - 2016-12-31 19:29 +1100
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-31 01:18 -0800
Re: Calculating G Sylvia Else <sylvia@not.at.this.address> - 2016-12-31 20:29 +1100
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-31 19:06 -0800
Re: Calculating G Alan Folmsbee <omnilobe@gmail.com> - 2016-12-30 21:33 -0800
Re: Calculating G Gary Harnagel <hitlong@yahoo.com> - 2016-12-30 19:41 -0800
Re: Calculating G Peter Riedt <riedt1@yahoo.co.uk> - 2016-12-30 23:17 -0800
| From | Gary Harnagel <hitlong@yahoo.com> |
|---|---|
| Date | 2016-12-29 19:02 -0800 |
| Subject | Re: Calculating G |
| Message-ID | <c9d7d848-7c72-46c6-bfc5-a42e06c7e7fe@googlegroups.com> |
On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt wrote: > > Calculating G > > The constant G was anticipated by Newton but first accurately determined in > the laboratory by Henry Cavendish in 1798. It has the value > G=6.674E-11m3kg−1s−2 (cubic meters per kilogram second squared). > > G can be derived from elements of a star by the formula G=gstar*rstar^2/Mstar > > gstar rstar Mstar G > Sun 273.97 696,000,000 1.99E+30 6.674E-11 > ACa 200.18 853,992,000 2.19E+30 6.674E-11 > ACb 332.10 602,040,000 1.80E+30 6.674E-11 > AC c 1695.00 98,136,000 2.45E+29 6.674E-11 > > gstar = surface acceleration in m/sec > rstar = radius in m > Mstar = mass in kg SO how was g determined for each of these stars? > G can also be derived from g, radius and mass of the planets by the formula > G=gpl*rpl^2/mpl > > gpl rpl(m) mpl G > MER 3.71 2,439,000 3.30E+23 6.674E-11 > VEN 8.87 6,051,602 4.87E+24 6.674E-11 > EAR 9.80 6,378,621 5.97E+24 6.674E-11 > MAR 3.71 3,397,360 6.42E+23 6.674E-11 > JUP 24.79 71,499,344 1.90E+27 6.674E-11 > SAT 10.44 60,273,223 5.68E+26 6.674E-11 > URA 8.87 25,556,472 8.68E+25 6.674E-11 > NEP 11.15 24,765,365 1.02E+26 6.674E-11 > PLU 0.62 1,158,753 1.25E+22 6.674E-11 > > gpl = surface acceleration of a planet > rpl = radius of a planet > mpl = mass of a planet > > The calculated G numbers of the Sun, Alpha Centauri A, B and C and nine > planets are identical with the Codata value of G=6.674E-11. That's probably because G was used to determine g :-)
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-29 22:22 -0800 |
| Message-ID | <7fa64703-2169-456c-8055-f61465f5201b@googlegroups.com> |
| In reply to | #403228 |
On Friday, December 30, 2016 at 11:03:06 AM UTC+8, Gary Harnagel wrote: > On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt wrote: > > > > Calculating G > > > > The constant G was anticipated by Newton but first accurately determined in > > the laboratory by Henry Cavendish in 1798. It has the value > > G=6.674E-11m3kg−1s−2 (cubic meters per kilogram second squared). > > > > G can be derived from elements of a star by the formula G=gstar*rstar^2/Mstar > > > > gstar rstar Mstar G > > Sun 273.97 696,000,000 1.99E+30 6.674E-11 > > ACa 200.18 853,992,000 2.19E+30 6.674E-11 > > ACb 332.10 602,040,000 1.80E+30 6.674E-11 > > AC c 1695.00 98,136,000 2.45E+29 6.674E-11 > > > > gstar = surface acceleration in m/sec > > rstar = radius in m > > Mstar = mass in kg > > SO how was g determined for each of these stars? > > > G can also be derived from g, radius and mass of the planets by the formula > > G=gpl*rpl^2/mpl > > > > gpl rpl(m) mpl G > > MER 3.71 2,439,000 3.30E+23 6.674E-11 > > VEN 8.87 6,051,602 4.87E+24 6.674E-11 > > EAR 9.80 6,378,621 5.97E+24 6.674E-11 > > MAR 3.71 3,397,360 6.42E+23 6.674E-11 > > JUP 24.79 71,499,344 1.90E+27 6.674E-11 > > SAT 10.44 60,273,223 5.68E+26 6.674E-11 > > URA 8.87 25,556,472 8.68E+25 6.674E-11 > > NEP 11.15 24,765,365 1.02E+26 6.674E-11 > > PLU 0.62 1,158,753 1.25E+22 6.674E-11 > > > > gpl = surface acceleration of a planet > > rpl = radius of a planet > > mpl = mass of a planet > > > > The calculated G numbers of the Sun, Alpha Centauri A, B and C and nine > > planets are identical with the Codata value of G=6.674E-11. > > That's probably because G was used to determine g :-) Alpha Centauri A B C have their g values on the Internet in the form log g. B and C are inaccurate. I calculated the correct values of A B C with my own equation and got a G value for them and the sun consistent with the value of Codata.
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| From | Dirk Van de moortel <dirkvandemoortel@hotspam.not> |
|---|---|
| Date | 2016-12-30 12:13 +0100 |
| Message-ID | <o45fh4$1v6d$1@gioia.aioe.org> |
| In reply to | #403434 |
Op 30-dec-2016 om 07:22 schreef Peter Riedt: > On Friday, December 30, 2016 at 11:03:06 AM UTC+8, Gary Harnagel wrote: >> On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt wrote: >>> >>> Calculating G >>> >>> The constant G was anticipated by Newton but first accurately determined in >>> the laboratory by Henry Cavendish in 1798. It has the value >>> G=6.674E-11m3kg−1s−2 (cubic meters per kilogram second squared). >>> >>> G can be derived from elements of a star by the formula G=gstar*rstar^2/Mstar >>> >>> gstar rstar Mstar G >>> Sun 273.97 696,000,000 1.99E+30 6.674E-11 >>> ACa 200.18 853,992,000 2.19E+30 6.674E-11 >>> ACb 332.10 602,040,000 1.80E+30 6.674E-11 >>> AC c 1695.00 98,136,000 2.45E+29 6.674E-11 >>> >>> gstar = surface acceleration in m/sec >>> rstar = radius in m >>> Mstar = mass in kg >> >> SO how was g determined for each of these stars? >> >>> G can also be derived from g, radius and mass of the planets by the formula >>> G=gpl*rpl^2/mpl >>> >>> gpl rpl(m) mpl G >>> MER 3.71 2,439,000 3.30E+23 6.674E-11 >>> VEN 8.87 6,051,602 4.87E+24 6.674E-11 >>> EAR 9.80 6,378,621 5.97E+24 6.674E-11 >>> MAR 3.71 3,397,360 6.42E+23 6.674E-11 >>> JUP 24.79 71,499,344 1.90E+27 6.674E-11 >>> SAT 10.44 60,273,223 5.68E+26 6.674E-11 >>> URA 8.87 25,556,472 8.68E+25 6.674E-11 >>> NEP 11.15 24,765,365 1.02E+26 6.674E-11 >>> PLU 0.62 1,158,753 1.25E+22 6.674E-11 >>> >>> gpl = surface acceleration of a planet >>> rpl = radius of a planet >>> mpl = mass of a planet >>> >>> The calculated G numbers of the Sun, Alpha Centauri A, B and C and nine >>> planets are identical with the Codata value of G=6.674E-11. And you went to visit these planets to measure the gpl-values, right. >> >> That's probably because G was used to determine g :-) > > Alpha Centauri A B C have their g values on the Internet in the form log g. And the Internet went there to measure them, right. Dirk Vdm
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| From | Sylvia Else <sylvia@not.at.this.address> |
|---|---|
| Date | 2016-12-30 22:35 +1100 |
| Message-ID | <ecmv3qFgbs1U1@mid.individual.net> |
| In reply to | #403452 |
On 30/12/2016 10:13 PM, Dirk Van de moortel wrote: > Op 30-dec-2016 om 07:22 schreef Peter Riedt: >> On Friday, December 30, 2016 at 11:03:06 AM UTC+8, Gary Harnagel wrote: >>> On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt wrote: >>>> >>>> Calculating G >>>> >>>> The constant G was anticipated by Newton but first accurately >>>> determined in >>>> the laboratory by Henry Cavendish in 1798. It has the value >>>> G=6.674E-11m3kg−1s−2 (cubic meters per kilogram second squared). >>>> >>>> G can be derived from elements of a star by the formula >>>> G=gstar*rstar^2/Mstar >>>> >>>> gstar rstar Mstar G >>>> Sun 273.97 696,000,000 1.99E+30 6.674E-11 >>>> ACa 200.18 853,992,000 2.19E+30 6.674E-11 >>>> ACb 332.10 602,040,000 1.80E+30 6.674E-11 >>>> AC c 1695.00 98,136,000 2.45E+29 6.674E-11 >>>> >>>> gstar = surface acceleration in m/sec >>>> rstar = radius in m >>>> Mstar = mass in kg >>> >>> SO how was g determined for each of these stars? >>> >>>> G can also be derived from g, radius and mass of the planets by the >>>> formula >>>> G=gpl*rpl^2/mpl >>>> >>>> gpl rpl(m) mpl G >>>> MER 3.71 2,439,000 3.30E+23 6.674E-11 >>>> VEN 8.87 6,051,602 4.87E+24 6.674E-11 >>>> EAR 9.80 6,378,621 5.97E+24 6.674E-11 >>>> MAR 3.71 3,397,360 6.42E+23 6.674E-11 >>>> JUP 24.79 71,499,344 1.90E+27 6.674E-11 >>>> SAT 10.44 60,273,223 5.68E+26 6.674E-11 >>>> URA 8.87 25,556,472 8.68E+25 6.674E-11 >>>> NEP 11.15 24,765,365 1.02E+26 6.674E-11 >>>> PLU 0.62 1,158,753 1.25E+22 6.674E-11 >>>> >>>> gpl = surface acceleration of a planet >>>> rpl = radius of a planet >>>> mpl = mass of a planet >>>> >>>> The calculated G numbers of the Sun, Alpha Centauri A, B and C and nine >>>> planets are identical with the Codata value of G=6.674E-11. > > And you went to visit these planets to measure the gpl-values, right. > >>> >>> That's probably because G was used to determine g :-) >> >> Alpha Centauri A B C have their g values on the Internet in the form >> log g. > > And the Internet went there to measure them, right. > > Dirk Vdm Peter persists with these circular analyses despite the issue being raised with him repeatedly. He seems to be yet another poster with some disorder of the mind that muddles their thinking. Sylvia.
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| From | Dirk Van de moortel <dirkvandemoortel@hotspam.not> |
|---|---|
| Date | 2016-12-30 13:03 +0100 |
| Message-ID | <o45ifj$4ip$1@gioia.aioe.org> |
| In reply to | #403453 |
Op 30-dec-2016 om 12:35 schreef Sylvia Else: > On 30/12/2016 10:13 PM, Dirk Van de moortel wrote: >> Op 30-dec-2016 om 07:22 schreef Peter Riedt: >>> On Friday, December 30, 2016 at 11:03:06 AM UTC+8, Gary Harnagel >>> wrote: >>>> On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt [snip] >>>>> The calculated G numbers of the Sun, Alpha Centauri A, B and >>>>> C and nine planets are identical with the Codata value of >>>>> G=6.674E-11. >> >> And you went to visit these planets to measure the gpl-values, >> right. >> >>>> >>>> That's probably because G was used to determine g :-) >>> >>> Alpha Centauri A B C have their g values on the Internet in the >>> form log g. >> >> And the Internet went there to measure them, right. >> >> Dirk Vdm > > Peter persists with these circular analyses despite the issue being > raised with him repeatedly. He seems to be yet another poster with > some disorder of the mind that muddles their thinking. He's come to just the right clinic. The only clinic in fact. And it's not able to help either :-| Dirk Vdm
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| From | mlwozniak@wp.pl |
|---|---|
| Date | 2016-12-30 04:11 -0800 |
| Message-ID | <0ba70e50-84e2-4702-a26d-060cd1d639cd@googlegroups.com> |
| In reply to | #403455 |
W dniu piątek, 30 grudnia 2016 13:04:05 UTC+1 użytkownik Dirk Van de moortel napisał: > Op 30-dec-2016 om 12:35 schreef Sylvia Else: > > On 30/12/2016 10:13 PM, Dirk Van de moortel wrote: > >> Op 30-dec-2016 om 07:22 schreef Peter Riedt: > >>> On Friday, December 30, 2016 at 11:03:06 AM UTC+8, Gary Harnagel > >>> wrote: > >>>> On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt > > [snip] > > >>>>> The calculated G numbers of the Sun, Alpha Centauri A, B and > >>>>> C and nine planets are identical with the Codata value of > >>>>> G=6.674E-11. > >> > >> And you went to visit these planets to measure the gpl-values, > >> right. > >> > >>>> > >>>> That's probably because G was used to determine g :-) > >>> > >>> Alpha Centauri A B C have their g values on the Internet in the > >>> form log g. > >> > >> And the Internet went there to measure them, right. > >> > >> Dirk Vdm > > > > Peter persists with these circular analyses despite the issue being > > raised with him repeatedly. He seems to be yet another poster with > > some disorder of the mind that muddles their thinking. > > He's come to just the right clinic. > The only clinic in fact. Or, of course, retrograde abortion, the perfect solution
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-30 14:32 -0800 |
| Message-ID | <856d66d4-ed05-4279-a6f8-f5a10a6a1ee1@googlegroups.com> |
| In reply to | #403453 |
On Friday, December 30, 2016 at 7:35:25 PM UTC+8, Sylvia Else wrote: > On 30/12/2016 10:13 PM, Dirk Van de moortel wrote: > > Op 30-dec-2016 om 07:22 schreef Peter Riedt: > >> On Friday, December 30, 2016 at 11:03:06 AM UTC+8, Gary Harnagel wrote: > >>> On Thursday, December 29, 2016 at 6:31:08 PM UTC-7, Peter Riedt wrote: > >>>> > >>>> Calculating G > >>>> > >>>> The constant G was anticipated by Newton but first accurately > >>>> determined in > >>>> the laboratory by Henry Cavendish in 1798. It has the value > >>>> G=6.674E-11m3kg−1s−2 (cubic meters per kilogram second squared). > >>>> > >>>> G can be derived from elements of a star by the formula > >>>> G=gstar*rstar^2/Mstar > >>>> > >>>> gstar rstar Mstar G > >>>> Sun 273.97 696,000,000 1.99E+30 6.674E-11 > >>>> ACa 200.18 853,992,000 2.19E+30 6.674E-11 > >>>> ACb 332.10 602,040,000 1.80E+30 6.674E-11 > >>>> AC c 1695.00 98,136,000 2.45E+29 6.674E-11 > >>>> > >>>> gstar = surface acceleration in m/sec > >>>> rstar = radius in m > >>>> Mstar = mass in kg > >>> > >>> SO how was g determined for each of these stars? > >>> > >>>> G can also be derived from g, radius and mass of the planets by the > >>>> formula > >>>> G=gpl*rpl^2/mpl > >>>> > >>>> gpl rpl(m) mpl G > >>>> MER 3.71 2,439,000 3.30E+23 6.674E-11 > >>>> VEN 8.87 6,051,602 4.87E+24 6.674E-11 > >>>> EAR 9.80 6,378,621 5.97E+24 6.674E-11 > >>>> MAR 3.71 3,397,360 6.42E+23 6.674E-11 > >>>> JUP 24.79 71,499,344 1.90E+27 6.674E-11 > >>>> SAT 10.44 60,273,223 5.68E+26 6.674E-11 > >>>> URA 8.87 25,556,472 8.68E+25 6.674E-11 > >>>> NEP 11.15 24,765,365 1.02E+26 6.674E-11 > >>>> PLU 0.62 1,158,753 1.25E+22 6.674E-11 > >>>> > >>>> gpl = surface acceleration of a planet > >>>> rpl = radius of a planet > >>>> mpl = mass of a planet > >>>> > >>>> The calculated G numbers of the Sun, Alpha Centauri A, B and C and nine > >>>> planets are identical with the Codata value of G=6.674E-11. > > > > And you went to visit these planets to measure the gpl-values, right. > > > >>> > >>> That's probably because G was used to determine g :-) > >> > >> Alpha Centauri A B C have their g values on the Internet in the form > >> log g. > > > > And the Internet went there to measure them, right. > > > > Dirk Vdm > > Peter persists with these circular analyses despite the issue being > raised with him repeatedly. He seems to be yet another poster with some > disorder of the mind that muddles their thinking. > > Sylvia. If no good arguments then ad hom. It may be difficult but try to be professional.
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| From | Gary Harnagel <hitlong@yahoo.com> |
|---|---|
| Date | 2016-12-30 15:17 -0800 |
| Message-ID | <8421fc05-930f-4398-bf6e-b7db1938db17@googlegroups.com> |
| In reply to | #403542 |
On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt wrote: >> If no good arguments then ad hom. It may be difficult but try to be > professional. Your error has been explained to you, yet you persist with this stupidity. What do you expect others to say when you act like you misplaced your logic chip?
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-30 16:51 -0800 |
| Message-ID | <d7ee7c50-d023-466b-8704-8fe9f10df966@googlegroups.com> |
| In reply to | #403547 |
On Saturday, December 31, 2016 at 7:17:38 AM UTC+8, Gary Harnagel wrote: > On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt wrote: > >> If no good arguments then ad hom. It may be difficult but try to be > > professional. > > Your error has been explained to you, yet you persist with this stupidity. > What do you expect others to say when you act like you misplaced your > logic chip? You persist in ad hom. What is your agenda? I persist in using G to confirm relationships between elements of free fall objects in the solar system and to establish if G is the same in other star systems and the solar system.
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| From | Sylvia Else <sylvia@not.at.this.address> |
|---|---|
| Date | 2016-12-31 12:48 +1100 |
| Message-ID | <ecoh33Fs65oU1@mid.individual.net> |
| In reply to | #403551 |
On 31/12/2016 11:51 AM, Peter Riedt wrote: > On Saturday, December 31, 2016 at 7:17:38 AM UTC+8, Gary Harnagel > wrote: >> On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt >> wrote: >>>> If no good arguments then ad hom. It may be difficult but try >>>> to be >>> professional. >> >> Your error has been explained to you, yet you persist with this >> stupidity. What do you expect others to say when you act like you >> misplaced your logic chip? > > You persist in ad hom. What is your agenda? I persist in using G to > confirm relationships between elements of free fall objects in the > solar system It's far from clear what you actually think you're achieving. Unless you're using a telescope to check the positions of the planets, all you're doing is checking that the predicted orbits of the planets are the same as the predicted orbits. Well, of course they are. If a planet deviated from its predicted path, that would soon be noticed, but by people who look at them, not by you. > and to establish if G is the same in other star systems > and the solar system. > Which you won't be able to do by means of circular analyses. Sylvia.
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-30 19:31 -0800 |
| Message-ID | <5ed3eefc-efcc-4756-8d78-7cc30ef9b9de@googlegroups.com> |
| In reply to | #403554 |
On Saturday, December 31, 2016 at 9:48:20 AM UTC+8, Sylvia Else wrote: > On 31/12/2016 11:51 AM, Peter Riedt wrote: > > On Saturday, December 31, 2016 at 7:17:38 AM UTC+8, Gary Harnagel > > wrote: > >> On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt > >> wrote: > >>>> If no good arguments then ad hom. It may be difficult but try > >>>> to be > >>> professional. > >> > >> Your error has been explained to you, yet you persist with this > >> stupidity. What do you expect others to say when you act like you > >> misplaced your logic chip? > > > > You persist in ad hom. What is your agenda? I persist in using G to > > confirm relationships between elements of free fall objects in the > > solar system > > It's far from clear what you actually think you're achieving. Unless > you're using a telescope to check the positions of the planets, all > you're doing is checking that the predicted orbits of the planets are > the same as the predicted orbits. Well, of course they are. > > If a planet deviated from its predicted path, that would soon be > noticed, but by people who look at them, not by you. > > > and to establish if G is the same in other star systems > > and the solar system. > > > > Which you won't be able to do by means of circular analyses. > > Sylvia. I failed to establish that G in the Alpha Centauri star systems is the same as in the solar system. If it is, please provide evidence. Also I have established that the observed/calculated g and M of the AC stars are incorrect as reported in the literature. You can't have it both ways. It's called double standards, a favourite of politics. Refer to my post 'Question about calculation of G'.
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| From | Sylvia Else <sylvia@not.at.this.address> |
|---|---|
| Date | 2016-12-31 14:36 +1100 |
| Message-ID | <econe0FtfjeU1@mid.individual.net> |
| In reply to | #403560 |
On 31/12/2016 2:31 PM, Peter Riedt wrote: > Also I have established that the observed/calculated g and M of the AC stars are incorrect as reported in the literature. > Which literature? Cite. Sylvia.
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-30 23:15 -0800 |
| Message-ID | <3db9f70e-139b-41a3-8180-daaac1e36a1a@googlegroups.com> |
| In reply to | #403561 |
On Saturday, December 31, 2016 at 11:36:35 AM UTC+8, Sylvia Else wrote: > On 31/12/2016 2:31 PM, Peter Riedt wrote: > > > Also I have established that the observed/calculated g and M of the AC stars are incorrect as reported in the literature. > > > > Which literature? Cite. > > Sylvia. The values I used were from the Internet. I found g for the Alpha Centauris not accurate. No problem as it is irrelevant.
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| From | Sylvia Else <sylvia@not.at.this.address> |
|---|---|
| Date | 2016-12-31 19:29 +1100 |
| Message-ID | <ecp8jsF2i6rU1@mid.individual.net> |
| In reply to | #403574 |
On 31/12/2016 6:15 PM, Peter Riedt wrote: > On Saturday, December 31, 2016 at 11:36:35 AM UTC+8, Sylvia Else wrote: >> On 31/12/2016 2:31 PM, Peter Riedt wrote: >> >>> Also I have established that the observed/calculated g and M of the AC stars are incorrect as reported in the literature. >>> >> >> Which literature? Cite. >> >> Sylvia. > > The values I used were from the Internet. I found g for the Alpha Centauris not accurate. No problem as it is irrelevant. > You do realise that the Internet is not peer reviewed? It is also not conventionally referred to as "the literature". You may have found a site that contains some incorrect numbers, that's all. Sylvia.
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-31 01:18 -0800 |
| Message-ID | <b6a2ec8b-4331-4218-9fe7-68da756eed5a@googlegroups.com> |
| In reply to | #403583 |
On Saturday, December 31, 2016 at 4:29:51 PM UTC+8, Sylvia Else wrote: > On 31/12/2016 6:15 PM, Peter Riedt wrote: > > On Saturday, December 31, 2016 at 11:36:35 AM UTC+8, Sylvia Else wrote: > >> On 31/12/2016 2:31 PM, Peter Riedt wrote: > >> > >>> Also I have established that the observed/calculated g and M of the AC stars are incorrect as reported in the literature. > >>> > >> > >> Which literature? Cite. > >> > >> Sylvia. > > > > The values I used were from the Internet. I found g for the Alpha Centauris not accurate. No problem as it is irrelevant. > > > > You do realise that the Internet is not peer reviewed? It is also not > conventionally referred to as "the literature". > > You may have found a site that contains some incorrect numbers, that's all. > > Sylvia. The Internet gives references to the literature. It doesn't pull it out of the air. Many elements of stars however are presented as fact by consensus experts when in fact they are only assumptions. If the values I used for gstar, rstar and Mstar are wrong, do you know more correct ones?
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| From | Sylvia Else <sylvia@not.at.this.address> |
|---|---|
| Date | 2016-12-31 20:29 +1100 |
| Message-ID | <ecpc3vF3d5gU2@mid.individual.net> |
| In reply to | #403584 |
On 31/12/2016 8:18 PM, Peter Riedt wrote: > On Saturday, December 31, 2016 at 4:29:51 PM UTC+8, Sylvia Else > wrote: >> On 31/12/2016 6:15 PM, Peter Riedt wrote: >>> On Saturday, December 31, 2016 at 11:36:35 AM UTC+8, Sylvia Else >>> wrote: >>>> On 31/12/2016 2:31 PM, Peter Riedt wrote: >>>> >>>>> Also I have established that the observed/calculated g and M >>>>> of the AC stars are incorrect as reported in the literature. >>>>> >>>> >>>> Which literature? Cite. >>>> >>>> Sylvia. >>> >>> The values I used were from the Internet. I found g for the Alpha >>> Centauris not accurate. No problem as it is irrelevant. >>> >> >> You do realise that the Internet is not peer reviewed? It is also >> not conventionally referred to as "the literature". >> >> You may have found a site that contains some incorrect numbers, >> that's all. >> >> Sylvia. > > The Internet gives references to the literature. It doesn't pull it > out of the air. Many elements of stars however are presented as fact > by consensus experts when in fact they are only assumptions. If the > values I used for gstar, rstar and Mstar are wrong, do you know more > correct ones? > If you have references, given to you by the Internet, then cite them. Otherwise readers have no way to know where you're getting your numbers from. Sylvia.
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-31 19:06 -0800 |
| Message-ID | <293cef2f-49ff-42f3-8d99-f25e677d8036@googlegroups.com> |
| In reply to | #403587 |
On Saturday, December 31, 2016 at 5:29:37 PM UTC+8, Sylvia Else wrote: > On 31/12/2016 8:18 PM, Peter Riedt wrote: > > On Saturday, December 31, 2016 at 4:29:51 PM UTC+8, Sylvia Else > > wrote: > >> On 31/12/2016 6:15 PM, Peter Riedt wrote: > >>> On Saturday, December 31, 2016 at 11:36:35 AM UTC+8, Sylvia Else > >>> wrote: > >>>> On 31/12/2016 2:31 PM, Peter Riedt wrote: > >>>> > >>>>> Also I have established that the observed/calculated g and M > >>>>> of the AC stars are incorrect as reported in the literature. > >>>>> > >>>> > >>>> Which literature? Cite. > >>>> > >>>> Sylvia. > >>> > >>> The values I used were from the Internet. I found g for the Alpha > >>> Centauris not accurate. No problem as it is irrelevant. > >>> > >> > >> You do realise that the Internet is not peer reviewed? It is also > >> not conventionally referred to as "the literature". > >> > >> You may have found a site that contains some incorrect numbers, > >> that's all. > >> > >> Sylvia. > > > > The Internet gives references to the literature. It doesn't pull it > > out of the air. Many elements of stars however are presented as fact > > by consensus experts when in fact they are only assumptions. If the > > values I used for gstar, rstar and Mstar are wrong, do you know more > > correct ones? > > > > If you have references, given to you by the Internet, then cite them. > Otherwise readers have no way to know where you're getting your numbers > from. > > Sylvia. The nine elements of Alpha Centauri A B and C used by me in my calculations and given below were reported by the researchers in Reports 1 to 5. log g converted g in m/sec2 ACa 4.30 199.53 ACb 4.37 234.42 ACc 5.20 1584.89 radius*sun converted radius in m ACa 1.227 853,992,000 ACb 0.865 602,040,000 ACc 0.141 98,136,000 mass*sun converted mass in kg ACa 1.1 2.18741E+30 ACb 0.907 1.80361E+30 ACc 0.123 2.44592E+29 Alpha Centauri A and B Rep 1. Thévenin, F.; Provost, J.; Morel, P.; Berthomieu, G.; Bouchy, F.; Carrier, F. (2002). "Asteroseismology and calibration of alpha Cen binary system". Astronomy & Astrophysics. 392: L9. arXiv:astro¬ph/0206283 . Bibcode:2002A&A...392L...9T. doi:10.1051/0004¬6361:20021074. Rep 2. Kervella, P.; Thévenin, F.; Ségransan, D.; Berthomieu, G.; Lopez, B.; Morel, P.; Provost, J. (2003). "The diameters of α Centauri A and B". Astronomy and Astrophysics. 404 (3): 1087–1097. arXiv:astro¬ph/0303634. Bibcode:2003A&A...404.1087K. doi:10.1051/0004¬6361:20030570. ISSN 0004¬6361. Rep 3. Gilli G.; Israelian G.; Ecuvillon A.; Santos NC.; Mayor M. (2006). Abundances of Refractory Elements in the Atmospheres of Stars with Extrasolar Planets. Astronomy and Astrophysics. 449 (2): 723–36. arXiv:astro¬ph/0512219 . Bibcode:2006A&A...449..723G. doi:10.1051/0004¬ 6361:20053850. libcode 2005astro.ph.12219G. Alpha Centauri C Rep 4. Ségransan, D.; Kervella, P.; Forveille, T.; Queloz, D. (2003), "First radius measurements of very low mass stars with the VLTI", Astronomy and Astrophysics, 397 (3): L5–L8, arXiv:astro¬ph/0211647 , Bibcode:2003A&A...397L...5S, doi:10.1051/0004¬6361:20021714 Rep 5. Demory, B.¬O.; Ségransan, D.; Forveille, T.; Queloz, D.; Beuzit, J.¬L.; Delfosse, X.; Di Folco, E.; Kervella, P.; Le Bouquin, J.¬B. (October 2009), "Mass ¬radius relation of low and very low ¬mass stars revisited with the VLTI", Astronomy and Astrophysics, 505 (1): 205–215, arXiv:0906.0602 , Bibcode:2009A&A...505..205D,
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| From | Alan Folmsbee <omnilobe@gmail.com> |
|---|---|
| Date | 2016-12-30 21:33 -0800 |
| Message-ID | <5810ec53-8357-4671-a151-efead06fd6e8@googlegroups.com> |
| In reply to | #403560 |
On Friday, December 30, 2016 at 5:31:21 PM UTC-10, Peter Riedt wrote: > On Saturday, December 31, 2016 at 9:48:20 AM UTC+8, Sylvia Else wrote: > > On 31/12/2016 11:51 AM, Peter Riedt wrote: > > > On Saturday, December 31, 2016 at 7:17:38 AM UTC+8, Gary Harnagel > > > wrote: > > >> On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt > > >> wrote: > > >>>> If no good arguments then ad hom. It may be difficult but try > > >>>> to be > > >>> professional. > > >> > > >> Your error has been explained to you, yet you persist with this > > >> stupidity. What do you expect others to say when you act like you > > >> misplaced your logic chip? > > > > > > You persist in ad hom. What is your agenda? I persist in using G to > > > confirm relationships between elements of free fall objects in the > > > solar system > > > > It's far from clear what you actually think you're achieving. Unless > > you're using a telescope to check the positions of the planets, all > > you're doing is checking that the predicted orbits of the planets are > > the same as the predicted orbits. Well, of course they are. > > > > If a planet deviated from its predicted path, that would soon be > > noticed, but by people who look at them, not by you. > > > > > and to establish if G is the same in other star systems > > > and the solar system. > > > > > > > Which you won't be able to do by means of circular analyses. > > > > Sylvia. > > I failed to establish that G in the Alpha Centauri star systems is the same as in the solar system. If it is, please provide evidence. > > Also I have established that the observed/calculated g and M of the AC stars are incorrect as reported in the literature. > > You can't have it both ways. It's called double standards, a favourite of politics. > > Refer to my post 'Question about calculation of G'. The Proxima Centauri information on Wikipedia is not right. See my Table 3 for a comparison of local stars' gravities, it confirms what you wrote. Antares and Sirius are also imprecise. Wikipedia is not good enough to expect perfection. http://fcontinuumgravity.blogspot.com/p/research-planning.html
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| From | Gary Harnagel <hitlong@yahoo.com> |
|---|---|
| Date | 2016-12-30 19:41 -0800 |
| Message-ID | <f50b30c4-b6de-4433-a464-0e09cc3007c9@googlegroups.com> |
| In reply to | #403551 |
On Friday, December 30, 2016 at 5:52:03 PM UTC-7, Peter Riedt wrote: > On Saturday, December 31, 2016 at 7:17:38 AM UTC+8, Gary Harnagel wrote: > > On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt wrote: > > > > > If no good arguments then ad hom. It may be difficult but try to be > > > professional. > > > > Your error has been explained to you, yet you persist with this stupidity. > > What do you expect others to say when you act like you misplaced your > > logic chip? > > You persist in ad hom. “Let me never fall into the vulgar mistake of dreaming that I am persecuted whenever I am contradicted.” -- Ralph Waldo Emerson > What is your agenda? “I’m allergic to stupidity. I break out in sarcasm.” – Rebels Market > I persist in using G to confirm relationships between elements of free fall > objects in the solar system and to establish if G is the same in other star > systems and the solar system. Since those values were calculated by using G in the first place, it is stupid to use those values to "confirm" G. You are blind not to see this. “We are only as blind as we want to be.” – Maya Angelou
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| From | Peter Riedt <riedt1@yahoo.co.uk> |
|---|---|
| Date | 2016-12-30 23:17 -0800 |
| Message-ID | <5a356d08-ac6f-41d5-a0f7-78c974e71579@googlegroups.com> |
| In reply to | #403562 |
On Saturday, December 31, 2016 at 11:41:12 AM UTC+8, Gary Harnagel wrote: > On Friday, December 30, 2016 at 5:52:03 PM UTC-7, Peter Riedt wrote: > > On Saturday, December 31, 2016 at 7:17:38 AM UTC+8, Gary Harnagel wrote: > > > On Friday, December 30, 2016 at 3:32:20 PM UTC-7, Peter Riedt wrote: > > > > > > > If no good arguments then ad hom. It may be difficult but try to be > > > > professional. > > > > > > Your error has been explained to you, yet you persist with this stupidity. > > > What do you expect others to say when you act like you misplaced your > > > logic chip? > > > > You persist in ad hom. > > “Let me never fall into the vulgar mistake of dreaming that I am > persecuted whenever I am contradicted.” -- Ralph Waldo Emerson > > > What is your agenda? > > “I’m allergic to stupidity. I break out in sarcasm.” – Rebels Market > > > I persist in using G to confirm relationships between elements of free fall > > objects in the solar system and to establish if G is the same in other star > > systems and the solar system. > > Since those values were calculated by using G in the first place, it is stupid > to use those values to "confirm" G. You are blind not to see this. > > “We are only as blind as we want to be.” – Maya Angelou I can see that very well and also that the elements of stars are not well understood. No problem, it is irrelevant to my theory.
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