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  2. 2 The Lagrangian Formalism

    www.damtp.cam.ac.uk/user/tong/dynamics/dynhtml/S2.html
    27 Mar 2022: θ. =. -. (. g. /. l. ). sin. θ. ,. T. =. m. l. θ. ˙. 2. m. g. cos. θ. ... 2. sin. 2. θ. ). m. g. l. cos. θ. Notice that the coordinate.
  3. 18 Nov 2019: q1 = Q1 cos λ P2 sin λ, q2 = Q2 cos λ P1 sin λ,. ... p1 = Q2 sin λ P1 cos λ, p2 = Q1 sin λ P2 cos λ.
  4. Paper1.dvi

    www.damtp.cam.ac.uk/user/na/NA_papers/NA2008_13.pdf
    30 Oct 2008: k=0. (1)k[2ω(n m)]2k2 [f. (2k1)(b) cos 2ω(n m)b. f(2k1)(a) cos 2ω(n m)a]}. ... m. ). {. k=0. (1)k[ω(2n 2m 1)]2k1. [f(2k)(b) cos ω(2n 2m 1)b f(2k)(a) cos ω(2n 2m 1)a].
  5. Paper1.dvi

    www.damtp.cam.ac.uk/user/na/NA_papers/NA2004_02.pdf
    23 Jan 2004: B(t) = v(t). [. ω1 sin ωt cos ωt. ]. [ cos ωt ω1 sin ωt ].(2.3). ... ω3,. b(2)2 (ω) =. 4(1 cos ω). ω2+. 8 sin ω.
  6. vesicles_shear

    www.damtp.cam.ac.uk/user/gold/pdfs/vesicles_shear.pdf
    23 Dec 2020: vr = rν cos φ[c(ν 1)Pν1 b(ν 1) cos θ Pν. ], ... 2.12a). vθ = rν cos φ[cP′ν1 2a csc θ Pν b.
  7. Dr H. Fawzi Mathematical Tripos Part II: Michaelmas Term ...

    www.damtp.cam.ac.uk/user/hf323/M23-II-NA/Lect06.pdf
    16 Oct 2023: λk(A) =λk(C). λk(B)=. 12µsin2 12πkh1 2µsin2 12πkh. |λk(A)| 1, k = 1.M. ... iγ where γ = 2 cos(πh) for = 1,.
  8. Mechanics Lecture Notes 1 Lecture 9: Simple harmonic motion ...

    www.damtp.cam.ac.uk/user/po242/pdfs/Mech2015/L9.pdf
    8 Oct 2015: x = A cos ωt B sin ωt a cos(ωt ϵ) Peiωt Qeiωt, (2). ... The solution isx = A cos ωt B sin ωt. Initially, x = a and ẋ = 0, so.
  9. §4 FLOWS WITH A FREE SURFACE Such flows are ...

    www.damtp.cam.ac.uk/user/mem/FLUIDS-IB/waves.pdf
    19 Oct 2013: exponential counterpart, cos(µ) = 12 (e. ... Then φ̂ = φ̂(x, z) exp(kz) cos(kx),equivalent to a single pair of progressive deep-water waves travelling in the x directions.
  10. J. Fluid Mech. (2018), vol. 856, pp. 870–897. c© ...

    www.damtp.cam.ac.uk/user/drh39/2018_viscoslender.pdf
    1 Dec 2023: sin α) 2π(2 cos φ, sin φ)/ log Bi1 (see (3.2)). ... Ṽs =U cos(φΦ), ω̃=URH. sin(φΦ). (4.5a,b). Dow. nloa. ded. from. htt.
  11. 5 Dec 2008: x = ax′ , y = by′ , z = cz′ ,. x′ = r′ sin θ′ cos φ′ , y′ = r′ sin θ′ sin φ′ , z′ = r′ cos θ′ ,. where a, b and c are positive constants. Calculate ... 1 e cos φ,. where (ρ, φ) are plane polar coordinates and e is a
  12. 26 Jul 2013: b) Two dimers. We now consider the case of two dimersa and b. ... 482 2d3, 3a. V = ̄ab2 b1b1b2. ̄ba2 a1. a1a2 f a f b.
  13. 20 Jan 2009: Repeat the calculation in spherical geometry, i.e. for concentric spheres of radiir = a, b, b > a. ... For (iii), from a decent diagram of spherical polars, find k = er cos θ eθ sin θ. ].
  14. topicsinqm

    www.damtp.cam.ac.uk/user/tong/aqm/topics5.pdf
    2 Jul 2024: along the a = (sin, 0, cos) axis or along the b = (sin, 0, cos) axis. ... hEPR|Az B |EPRi = sin2. 2 cos2. 2= cos. This means that if we take the four operators A2, B1, A1 and B2 to be spin operators,.
  15. 5 Mar 2021: Γ ={(r,θ): r = R(θ) = b cos θ. c2 b2 sin2 θ. = ... 2. ξ2+ η2. )and h = a. cosh η cos ξ ,(4.33a,b).
  16. A reciprocal theorem for boundary-driven channel flows

    www.damtp.cam.ac.uk/user/lauga/papers/111.pdf
    31 Dec 2015: ex. ez. ) a2 y(ez. ey eyez). (16). The contour of the elliptical cross section can be parameterized as x = a cos , y = b sin , with0   2. ... a sin e. x. b cos eypa2sin2 b2cos2. , n =b cos e.
  17. J. Fluid Mech. (2018), vol. 856, pp. 921–957. c© ...

    www.damtp.cam.ac.uk/user/mt599/papers/2018-jfm.pdf
    10 May 2022: µs(θ)=. l=0. µslPl(cos θ), µp(θ)=. l=0. µplPl(cos θ). (2.8a,b). In the case of our spherical particle, the slip velocity due to either one ... s0 =sb(rc)r sR3. 2r2(sz cos θ s. y sin θ sin φ).
  18. Hydrodynamic synchronization in strong confinement

    www.damtp.cam.ac.uk/user/lauga/papers/187.pdf
    8 Jul 2021: φ̇n = ω0 βω0 (cos χn cos χn1 ) βτ ω20 (sin χn1 sin χn ), (16). ... θ1 sin θ2 ) sin α1 sin δ cos θ1 (sin θ1 sin θ2 )]}, (46).
  19. Coherent Field and Specular Reflection At Grazing Incidence on a…

    www.damtp.cam.ac.uk/user/ms100/PAPERS/JASA94spec.pdf
    13 Dec 2018: b/ø (x,h) = exp{ik [xS h (x) cos 0 ] }. •ei•$[ 1 ikh(x)cos O- ( k2/2 )h2(x )cos 2 0]. (9). ... k2 •b• ø (x,zt) = - 1 ikh (x) cos 0- • cos 2 0 X [h2(x) (Zl-h) 2] )e ikxs -(za-h) •xx ikcos0.
  20. J. Fluid Mech. (2018), vol. 856, pp. 921–957. c© ...

    www.damtp.cam.ac.uk/user/lauga/papers/152.pdf
    19 Oct 2018: µs(θ)=. l=0. µslPl(cos θ), µp(θ)=. l=0. µplPl(cos θ). (2.8a,b). In the case of our spherical particle, the slip velocity due to either one ... s0 =sb(rc)r sR3. 2r2(sz cos θ s. y sin θ sin φ).
  21. Chapter 11 Phase-Plane Techniques 11.1 Plane Autonomous Systems A ...

    www.damtp.cam.ac.uk/user/reh10/lectures/ia-dyn-chapter11.pdf
    26 Feb 2008: e1 B. (cos(βt) i sin(βt). )e2}. = eαt(a cos(βt) b sin(βt). ... J =. (0 1. (g/l) cos θ 0. ). The phase diagram has this form:.

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