15 done
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22 changed files with 626 additions and 581 deletions
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@ -161,3 +161,11 @@ to $-1/r^n$ with $n > 2$.
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<!-- (m1+m2)x+m2) sin = constant, -->
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<!-- (m1+m2)x+m2) sin = constant, -->
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<!-- (2) -->
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<!-- (2) -->
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<!-- which expresses the fact that the centre of mass of the system does not move horizontally. -->
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<!-- which expresses the fact that the centre of mass of the system does not move horizontally. -->
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<!-- Using (1), we find the energy in the form -->
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<!-- E -->
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<!-- (3) -->
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<!-- Hence -->
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<!-- Expressing the co-ordinates X2 sin o, y = l cos of the particle m2 in terms of -->
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<!-- by means of (2), we find that its path is an arc of an ellipse with horizontal semi- -->
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<!-- axis lm1/(m1+m2) and vertical semi-axis l. As M1 8 we return to the familiar simple pen- -->
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<!-- dulum, which moves in an arc of a circle. -->
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1
1/equations/15.1.tex
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1
1/equations/15.1.tex
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@ -0,0 +1 @@
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U=-\alpha/r
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1
1/equations/15.10.tex
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1
1/equations/15.10.tex
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r=a(1-e\cos\xi),\qquad t=\sqrt{ma^3/\alpha}(\xi-e\sin\xi),
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1
1/equations/15.11.tex
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1
1/equations/15.11.tex
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x=a(\cos\xi-e),\qquad y=a\sqrt{q-e^2}\sin\xi
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4
1/equations/15.12.tex
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4
1/equations/15.12.tex
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@ -0,0 +1,4 @@
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\begin{align}
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r &= a(e\ch\xi-1), & t&=\sqrt{ma^3/\alpha}(e\sh\xi-\xi), \\
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x &= a(e-\ch\xi)), & t&=a\sqrt{e^2-1}\sh\xi,
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\end{align}
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1
1/equations/15.13.tex
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1
1/equations/15.13.tex
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@ -0,0 +1 @@
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U=\alpha/r,\quad(\alpha\gt0)
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1
1/equations/15.14.tex
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1
1/equations/15.14.tex
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@ -0,0 +1 @@
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p/r=-1+e\cos\phi
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1
1/equations/15.15.tex
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1
1/equations/15.15.tex
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r_\min=p/(e-1)=a(e+1)
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4
1/equations/15.16.tex
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4
1/equations/15.16.tex
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@ -0,0 +1,4 @@
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\begin{align}
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r &= a(e\ch\xi+1), & t&=\sqrt{ma^3/\alpha}(e\sh\xi+\xi), \\
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x &= a(\ch\xi+e)), & t&=a\sqrt{e^2-1}\sh\xi,
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\end{align}
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1
1/equations/15.17.tex
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1
1/equations/15.17.tex
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\v{v}\times\v{M}+\alpha\v{r}/r
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1
1/equations/15.2.tex
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1
1/equations/15.2.tex
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U_\text{eff}=-\frac{\alpha}{r}+\frac{M^2}{2mr^2}
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1
1/equations/15.3.tex
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1
1/equations/15.3.tex
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@ -0,0 +1 @@
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U_{\text{eff,min}}=-m\alpha^2/2M^2
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1
1/equations/15.4.tex
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1
1/equations/15.4.tex
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p=M^2/m\alpha,\qquad e=\sqrt{1+(2EM^2/m\alpha^2)}
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1
1/equations/15.5.tex
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1
1/equations/15.5.tex
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@ -0,0 +1 @@
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p/r=1+e\cos\phi
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1
1/equations/15.6.tex
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1
1/equations/15.6.tex
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@ -0,0 +1 @@
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a=p/(1-e^2)=\alpha/2|E|,\qquad b=p/\sqrt{1-e^2}=M/\sqrt{2m|E|}
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1
1/equations/15.7.tex
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1
1/equations/15.7.tex
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@ -0,0 +1 @@
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r_\min=p/(1+e)=a(1-e),\qquad r_\max=p/(1-e)=a(1+e)
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4
1/equations/15.8.tex
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4
1/equations/15.8.tex
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\begin{align}
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T&=2\pi a^{3/2}\sqrt{m/\alpha} \\
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&=\pi\alpha\sqrt{m/2|E|^3}
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\end{align}
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1
1/equations/15.9.tex
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1
1/equations/15.9.tex
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@ -0,0 +1 @@
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r_\min=p/(e+1)=a(e-1)
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@ -23,12 +23,12 @@ III. INTEGRATION OF THE EQUATIONS OF MOTION
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12. [Determination of the potential energy from the period of oscillation](12-determination-of-the-potential-energy-from-the-period-of-oscillation.html)
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12. [Determination of the potential energy from the period of oscillation](12-determination-of-the-potential-energy-from-the-period-of-oscillation.html)
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13. [The reduced mass](13-the-reduced-mass.html)
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13. [The reduced mass](13-the-reduced-mass.html)
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14. [Motion in a central field](14-motion-in-a-central-field.html)
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14. [Motion in a central field](14-motion-in-a-central-field.html)
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15. [Kepler's problem](15-keplers-problem.html)
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<span style="background-color: yellow; color: white: width: 100%;">
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<span style="background-color: yellow; color: white: width: 100%;">
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🚧 WORK IN PROGRESS BELOW THIS POINT 🚧
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🚧 WORK IN PROGRESS BELOW THIS POINT 🚧
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</span>
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</span>
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15. [Kepler's problem](15-keplers-problem.html)
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IV. COLLISION BETWEEN PARTICLES
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IV. COLLISION BETWEEN PARTICLES
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16. [Disintegration of particles](16-disintegration-of-particles.html)
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16. [Disintegration of particles](16-disintegration-of-particles.html)
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17. [Elastic collisions](17-elastic-collisions.html)
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17. [Elastic collisions](17-elastic-collisions.html)
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@ -14,6 +14,7 @@
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\newcommand{\ptag}[2][]{\label{#1/#2}\tag*{(#2)}}
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\newcommand{\ptag}[2][]{\label{#1/#2}\tag*{(#2)}}
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\newcommand{\min}{\text{min}}
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\newcommand{\min}{\text{min}}
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\newcommand{\max}{\text{max}}
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\newcommand{\max}{\text{max}}
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\newcommand{\constant}{\text{constant}}
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\DeclareMathOperator{\ch}{ch}
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\DeclareMathOperator{\ch}{ch}
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\DeclareMathOperator{\sh}{sh}
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\DeclareMathOperator{\sh}{sh}
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@ -40,7 +40,7 @@ def action(elem, doc):
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return elem
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return elem
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else:
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else:
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# section ref
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# section ref
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_pnum = text
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pnum = text
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try:
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try:
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slug = [f for f in os.listdir(book) if f.startswith(pnum)][0]
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slug = [f for f in os.listdir(book) if f.startswith(pnum)][0]
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except:
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except:
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