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Groups > sci.physics > #521259 > unrolled thread
| Started by | Sam Wormley <swormley1@gmail.com> |
|---|---|
| First post | 2015-09-15 08:33 -0500 |
| Last post | 2015-09-15 15:37 -0700 |
| Articles | 7 — 5 participants |
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If time slows down when you travel at high speeds, then couldn’t you travel across the galaxy within your lifetime by just accelerating continuously? Sam Wormley <swormley1@gmail.com> - 2015-09-15 08:33 -0500
Re: If time slows down when you travel at high speeds, then couldn’t you travel across the galaxy within your lifetime by just accelerating continuously? gilber34 <invalid@invalid.com> - 2015-09-15 10:48 -0500
Re: If time slows down when you travel at high speeds, then couldn’t you travel across the galaxy within your lifetime by just accelerating continuously? jimp@specsol.spam.sux.com - 2015-09-15 17:48 +0000
Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? "nuny@bid.nes" <Alien8752@gmail.com> - 2015-09-15 15:05 -0700
Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? Sam Wormley <swormley1@gmail.com> - 2015-09-15 19:11 -0500
Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? "reber g=emc^2" <herbertglazier0@gmail.com> - 2015-09-16 12:50 -0700
Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? "reber g=emc^2" <herbertglazier0@gmail.com> - 2015-09-15 15:37 -0700
| From | Sam Wormley <swormley1@gmail.com> |
|---|---|
| Date | 2015-09-15 08:33 -0500 |
| Subject | If time slows down when you travel at high speeds, then couldn’t you travel across the galaxy within your lifetime by just accelerating continuously? |
| Message-ID | <rtydnYXx1Jmmg2XInZ2dnUU7-fednZ2d@giganews.com> |
If time slows down when you travel at high speeds, then couldn’t you travel across the galaxy within your lifetime by just accelerating continuously? > http://www.askamathematician.com/2014/05/q-if-time-slows-down-when-you-travel-at-high-speeds-then-couldnt-you-travel-across-the-galaxy-within-your-lifetime-by-just-accelerating-continuously/ > Physicist: Yup! But sadly, this will never happen. > > This is a good news / really bad news situation. On the one hand, it > is true (for all intents and purposes) that if you travel fast > enough, time will slow down and you’ll get to your destination is > surprisingly little time. The far side of the galaxy is about > 100,000 lightyears away, so it will always take at least 100,000 > years to get there. However, the on-board clocks run slower (from > the perspective of anyone “sitting still” in the galaxy) so the ship > and everything on it may experience far less than 100,000 years. > > First, when you read about traveling to far-off stars you’ll often > hear about “constant acceleration drives”, which are rockets capable > of accelerating at a comfortable 1g for years at a time (“1g” means > that people on the rocket would feel an acceleration equivalent to > the force of Earth’s gravity). However! Leaving a rocket on until > it’s moving near the speed of light is totally infeasible. A rocket > capable of 1g of acceleration for years is a rocket that can hover > just above the ground for years. While this is definitely possible > for a few seconds or minutes (“retro rockets“), you’ll never see > people building bridges on rockets, or hanging out and having a > picnic for an afternoon or three on a hovering rocket. Spacecraft in > general coast ballistically except for the very beginning and very > end of their trip (excluding small corrections). For example, the > shuttle (before the program was shut down) could spend weeks coasting > along in orbit, but the main rockets only fire for the first 8 > minutes or so. And those 8 minutes are why the shuttle weighs more > than 20 times as much on the launch pad than when it weighs when it > lands. > The speed of light is still a fundamental limit, so if you were on > the ship you’ll still never see stars whipping by faster than the > speed of light (which you might expect would be necessary to cross > 100,000 light years in only 25 years). But relativity is a slick > science; length contraction and time dilation are two sides of the > same coin. While everyone else in the galaxy explains the remarkably > short travel time in terms of the people on the ship moving slower > through time, the people on the ship attribute it to the distance > being shorter. The stars pass by slower than light speed, but > they’re closer together (in the direction of travel). “Which > explanation is right?” isn’t a useful question; if every party does > their math right, they’ll come to the same conclusions. > -- 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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| From | gilber34 <invalid@invalid.com> |
|---|---|
| Date | 2015-09-15 10:48 -0500 |
| Message-ID | <mt9ejo$8ct$2@speranza.aioe.org> |
| In reply to | #521259 |
On 9/15/2015 8:33 AM, Sam Wormley wrote: > If time slows down when you travel at high speeds, then couldn’t you > travel across the galaxy within your lifetime by just accelerating >> Physicist: Yup! But sadly, this will never happen. >> >> This is a good news / really bad news situation. On the one hand, it >> is true (for all intents and purposes) that if you travel fast >> enough, time will slow down and you’ll get to your destination is >> surprisingly little time. The far side of the galaxy is about >> 100,000 lightyears away, so it will always take at least 100,000 >> years to get there. However, the on-board clocks run slower (from >> the perspective of anyone “sitting still” in the galaxy) so the ship >> and everything on it may experience far less than 100,000 years. >> >> First, when you read about traveling to far-off stars you’ll often >> hear about “constant acceleration drives”, which are rockets capable >> of accelerating at a comfortable 1g for years at a time (“1g” means >> that people on the rocket would feel an acceleration equivalent to >> the force of Earth’s gravity). However! Leaving a rocket on until >> it’s moving near the speed of light is totally infeasible. because of the amount of MASS that has to be expended, that is your real limit, calculate it for extra points. <snip rest>
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| From | jimp@specsol.spam.sux.com |
|---|---|
| Date | 2015-09-15 17:48 +0000 |
| Message-ID | <r72mcc-2na.ln1@mail.specsol.com> |
| In reply to | #521259 |
Sam Wormley <swormley1@gmail.com> wrote: > If time slows down when you travel at high speeds, then couldn?t you > travel across the galaxy within your lifetime by just accelerating > continuously? No, spamming shit head. You have a great fascination for puerile questions, spamming shit head. -- Jim Pennino
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| From | "nuny@bid.nes" <Alien8752@gmail.com> |
|---|---|
| Date | 2015-09-15 15:05 -0700 |
| Subject | Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? |
| Message-ID | <7a3bca1c-485a-417a-8265-51cd37fbaea4@googlegroups.com> |
| In reply to | #521259 |
On Tuesday, September 15, 2015 at 6:33:50 AM UTC-7, Sam Wormley wrote: > If time slows down when you travel at high speeds, then couldn't you > travel across the galaxy within your lifetime by just accelerating > continuously? More than just the galaxy. See: https://en.wikipedia.org/wiki/Tau_Zero Mark L. Fergerson
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| From | Sam Wormley <swormley1@gmail.com> |
|---|---|
| Date | 2015-09-15 19:11 -0500 |
| Subject | Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? |
| Message-ID | <at2dnb1-gLYkLmXInZ2dnUU7-RednZ2d@giganews.com> |
| In reply to | #521361 |
On 9/15/15 5:05 PM, nuny@bid.nes wrote: > On Tuesday, September 15, 2015 at 6:33:50 AM UTC-7, Sam Wormley wrote: >> If time slows down when you travel at high speeds, then couldn't you >> travel across the galaxy within your lifetime by just accelerating >> continuously? > > More than just the galaxy. See: > > https://en.wikipedia.org/wiki/Tau_Zero > > > Mark L. Fergerson > There is another oft overlooked problem traveling at relativistic speed with respect to the galaxy -- interstellar dust grains, micro- meteoroids and grains of sand -- you can't see them coming and they will vaporize your spacecraft. -- 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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| From | "reber g=emc^2" <herbertglazier0@gmail.com> |
|---|---|
| Date | 2015-09-16 12:50 -0700 |
| Subject | Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? |
| Message-ID | <264c1679-d02a-45d9-862b-7c4a60c20150@googlegroups.com> |
| In reply to | #521385 |
On Tuesday, September 15, 2015 at 5:11:39 PM UTC-7, Sam Wormley wrote: > On 9/15/15 5:05 PM, nuny@bid.nes wrote: > > On Tuesday, September 15, 2015 at 6:33:50 AM UTC-7, Sam Wormley wrote: > >> If time slows down when you travel at high speeds, then couldn't you > >> travel across the galaxy within your lifetime by just accelerating > >> continuously? > > > > More than just the galaxy. See: > > > > https://en.wikipedia.org/wiki/Tau_Zero > > > > > > Mark L. Fergerson > > > > There is another oft overlooked problem traveling at relativistic > speed with respect to the galaxy -- interstellar dust grains, micro- > meteoroids and grains of sand -- you can't see them coming and they > will vaporize your spacecraft. > > -- > > sci.physics is an unmoderated newsgroup dedicated > to the discussion of physics, news from the physics > community, and physics-related social issues. Sam They can create hazards for LIGO .Fine molecules of dust are everywhere Even comets are deep in dust.NASA sees water when its in reality dust. TreBert
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| From | "reber g=emc^2" <herbertglazier0@gmail.com> |
|---|---|
| Date | 2015-09-15 15:37 -0700 |
| Subject | Re: If time slows down when you travel at high speeds, then couldn't you travel across the galaxy within your lifetime by just accelerating continuously? |
| Message-ID | <82468074-beab-4d5a-ada1-435fd001fe7c@googlegroups.com> |
| In reply to | #521259 |
On Tuesday, September 15, 2015 at 6:33:50 AM UTC-7, Sam Wormley wrote:
> If time slows down when you travel at high speeds, then couldn't you
> travel across the galaxy within your lifetime by just accelerating
> continuously?
> > http://www.askamathematician.com/2014/05/q-if-time-slows-down-when-you-travel-at-high-speeds-then-couldnt-you-travel-across-the-galaxy-within-your-lifetime-by-just-accelerating-continuously/
>
>
> > Physicist: Yup! But sadly, this will never happen.
> >
> > This is a good news / really bad news situation. On the one hand, it
> > is true (for all intents and purposes) that if you travel fast
> > enough, time will slow down and you'll get to your destination is
> > surprisingly little time. The far side of the galaxy is about
> > 100,000 lightyears away, so it will always take at least 100,000
> > years to get there. However, the on-board clocks run slower (from
> > the perspective of anyone "sitting still" in the galaxy) so the ship
> > and everything on it may experience far less than 100,000 years.
> >
> > First, when you read about traveling to far-off stars you'll often
> > hear about "constant acceleration drives", which are rockets capable
> > of accelerating at a comfortable 1g for years at a time ("1g" means
> > that people on the rocket would feel an acceleration equivalent to
> > the force of Earth's gravity). However! Leaving a rocket on until
> > it's moving near the speed of light is totally infeasible. A rocket
> > capable of 1g of acceleration for years is a rocket that can hover
> > just above the ground for years. While this is definitely possible
> > for a few seconds or minutes ("retro rockets"), you'll never see
> > people building bridges on rockets, or hanging out and having a
> > picnic for an afternoon or three on a hovering rocket. Spacecraft in
> > general coast ballistically except for the very beginning and very
> > end of their trip (excluding small corrections). For example, the
> > shuttle (before the program was shut down) could spend weeks coasting
> > along in orbit, but the main rockets only fire for the first 8
> > minutes or so. And those 8 minutes are why the shuttle weighs more
> > than 20 times as much on the launch pad than when it weighs when it
> > lands.
>
>
>
> > The speed of light is still a fundamental limit, so if you were on
> > the ship you'll still never see stars whipping by faster than the
> > speed of light (which you might expect would be necessary to cross
> > 100,000 light years in only 25 years). But relativity is a slick
> > science; length contraction and time dilation are two sides of the
> > same coin. While everyone else in the galaxy explains the remarkably
> > short travel time in terms of the people on the ship moving slower
> > through time, the people on the ship attribute it to the distance
> > being shorter. The stars pass by slower than light speed, but
> > they're closer together (in the direction of travel). "Which
> > explanation is right?" isn't a useful question; if every party does
> > their math right, they'll come to the same conclusions.
> >
>
>
>
>
> --
>
> sci.physics is an unmoderated newsgroup dedicated
> to the discussion of physics, news from the physics
> community, and physics-related social issues.
Lots of big body problems take place once you hit 84% of c,Heart and lungs get heavy.You can;t do work.Things get more worse the closer to c.In the end acceleration kills like falling into a BH. TreBert
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