‰HDF  ÿÿÿÿÿÿÿÿ8Áÿÿÿÿÿÿÿÿ`ˆ¨  ˜TREEÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿ`1(DhðJ°xPøV88]xÀbÈHhÐu0X{`hY¨�‰Ø�( ”X(š€°Ÿ°8¥àÀ²H¸8нpHEAP€xЈ¨ ØConsistent Trees_columns›scale(0) id(1) desc_scale(2) desc_id(3) num_prog(4) pid(5) upid(6) desc_pid(7) phantom(8) sam_Mvir(9) Mvir(10) Rvir(11) rs(12) vrms(13) mmp?(14) scale_of_last_MM(15) vmax(16) x(17) y(18) z(19) vx(20) vy(21) vz(22) Jx(23) Jy(24) Jz(25) Spin(26) Breadth_first_ID(27) Depth_first_ID(28) Tree_root_ID(29) Orig_halo_ID(30) Snap_idx(31) Next_coprogenitor_depthfirst_ID(32) Last_progenitor_depthfirst_ID(33) Last_mainleaf_depthfirst_ID(34) Tidal_Force(35) Tidal_ID(36) Rs_Klypin(37) Mvir_all(38) M200b(39) M200c(40) M500c(41) M2500c(42) Xoff(43) Voff(44) Spin_Bullock(45) b_to_a(46) c_to_a(47) A[x](48) A[y](49) A[z](50) b_to_a(500c)(51) c_to_a(500c)(52) A[x](500c)(53) A[y](500c)(54) A[z](500c)(55) T/|U|(56) M_pe_Behroozi(57) M_pe_Diemer(58) Halfmass_Radius(59) rvmax(60) Macc(61) Mpeak(62) Vacc(63) Vpeak(64) Halfmass_Scale(65) Acc_Rate_Inst(66) Acc_Rate_100Myr(67) Acc_Rate_1*Tdyn(68) Acc_Rate_2*Tdyn(69) Acc_Rate_Mpeak(70) Acc_Log_Vmax_Inst(71) Acc_Log_Vmax_1*Tdyn(72) Mpeak_Scale(73) Acc_Scale(74) First_Acc_Scale(75) First_Acc_Mvir(76) First_Acc_Vmax(77) Vmax\@Mpeak(78) Tidal_Force_Tdyn(79) Log_(Vmax/Vmax_max(Tdyn;Tmpeak))(80) Time_to_future_merger(81) Future_merger_MMP_ID(82) èConsistent Trees_metadatažž#scale(0) id(1) desc_scale(2) desc_id(3) num_prog(4) pid(5) upid(6) desc_pid(7) phantom(8) sam_Mvir(9) Mvir(10) Rvir(11) rs(12) vrms(13) mmp?(14) scale_of_last_MM(15) vmax(16) x(17) y(18) z(19) vx(20) vy(21) vz(22) Jx(23) Jy(24) Jz(25) Spin(26) Breadth_first_ID(27) Depth_first_ID(28) Tree_root_ID(29) Orig_halo_ID(30) Snap_idx(31) Next_coprogenitor_depthfirst_ID(32) Last_progenitor_depthfirst_ID(33) Last_mainleaf_depthfirst_ID(34) Tidal_Force(35) Tidal_ID(36) Rs_Klypin(37) Mvir_all(38) M200b(39) M200c(40) M500c(41) M2500c(42) Xoff(43) Voff(44) Spin_Bullock(45) b_to_a(46) c_to_a(47) A[x](48) A[y](49) A[z](50) b_to_a(500c)(51) c_to_a(500c)(52) A[x](500c)(53) A[y](500c)(54) A[z](500c)(55) T/|U|(56) M_pe_Behroozi(57) M_pe_Diemer(58) Halfmass_Radius(59) rvmax(60) Macc(61) Mpeak(62) Vacc(63) Vpeak(64) Halfmass_Scale(65) Acc_Rate_Inst(66) Acc_Rate_100Myr(67) Acc_Rate_1*Tdyn(68) Acc_Rate_2*Tdyn(69) Acc_Rate_Mpeak(70) Acc_Log_Vmax_Inst(71) Acc_Log_Vmax_1*Tdyn(72) Mpeak_Scale(73) Acc_Scale(74) First_Acc_Scale(75) First_Acc_Mvir(76) First_Acc_Vmax(77) Vmax\@Mpeak(78) Tidal_Force_Tdyn(79) Log_(Vmax/Vmax_max(Tdyn;Tmpeak))(80) Time_to_future_merger(81) Future_merger_MMP_ID(82) #Omega_M = 0.308900; Omega_L = 0.691100; h0 = 0.677400 #Full box size = 2000.000000 Mpc/h #Scale: Scale factor of halo. #ID: ID of halo (unique across entire simulation). #Desc_Scale: Scale of descendant halo, if applicable. #Descid: ID of descendant halo, if applicable. #Num_prog: Number of progenitors. #Pid: ID of least massive host halo (-1 if distinct halo). #Upid: ID of most massive host halo (different from Pid when the halo is within two or more larger halos). #Desc_pid: Pid of descendant halo (if applicable). #Phantom: Nonzero for halos interpolated across timesteps. #SAM_Mvir: Halo mass, smoothed across accretion history; always greater than sum of halo masses of contributing progenitors (Msun/h). Only for use with select semi-analytical models. #Mvir: Halo mass (Msun/h). #Rvir: Halo radius (kpc/h comoving). #Rs: Scale radius (kpc/h comoving). #Vrms: Velocity dispersion (km/s physical). #mmp?: whether the halo is the most massive progenitor or not. #scale_of_last_MM: scale factor of the last major merger (Mass ratio > 0.3). #Vmax: Maxmimum circular velocity (km/s physical). #X/Y/Z: Halo position (Mpc/h comoving). #VX/VY/VZ: Halo velocity (km/s physical, peculiar). #JX/JY/JZ: Halo angular momenta ((Msun/h) * (Mpc/h) * km/s (physical)). #Spin: Halo spin parameter. #Breadth_first_ID: breadth-first ordering of halos within a tree. #Depth_first_ID: depth-first ordering of halos within a tree. #Tree_root_ID: ID of the halo at the last timestep in the tree. #Orig_halo_ID: Original halo ID from halo finder. #Snap_idx: Index of snapshot (in original snapshot list) from which halo originated. #Next_coprogenitor_depthfirst_ID: Depthfirst ID of next coprogenitor. #Last_progenitor_depthfirst_ID: Depthfirst ID of last progenitor. #Last_mainleaf_depthfirst_ID: Depthfirst ID of last progenitor on main progenitor branch. #Tidal_Force: Strongest tidal force from any nearby halo, in dimensionless units (Rhalo / Rhill). #Tidal_ID: ID of halo exerting strongest tidal force. #Rs_Klypin: Scale radius determined using Vmax and Mvir (see Rockstar paper) #Mvir_all: Mass enclosed within the specified overdensity, including unbound particles (Msun/h) #M200b--M2500c: Mass enclosed within specified overdensities (Msun/h) #Xoff: Offset of density peak from average particle position (kpc/h comoving) #Voff: Offset of density peak from average particle velocity (km/s physical) #Spin_Bullock: Bullock spin parameter (J/(sqrt(2)*MVR)) #b_to_a, c_to_a: Ratio of second and third largest shape ellipsoid axes (B and C) to largest shape ellipsoid axis (A) (dimensionless). # Shapes are determined by the method in Allgood et al. (2006). # (500c) indicates that only particles within R500c are considered. #A[x],A[y],A[z]: Largest shape ellipsoid axis (kpc/h comoving) #T/|U|: ratio of kinetic to potential energies #M_pe_*: Pseudo-evolution corrected masses (very experimental) #Halfmass_Radius rvmax: Radius within which 1/2 of Mvir is enclosed. #Consistent Trees Version 1.01 #Macc,Vacc: Mass and Vmax at accretion. #Mpeak,Vpeak: Peak mass and Vmax over mass accretion history. #Halfmass_Scale: Scale factor at which the MMP reaches 0.5*Mpeak. #Acc_Rate_*: Halo mass (or log10 vmax) accretion rates in Msun/h/yr (or dex/yr). # Inst: instantaneous; 100Myr: averaged over past 100Myr, # X*Tdyn: averaged over past X*virial dynamical time. # Mpeak: Growth Rate of Mpeak, averaged from current z to z+0.5 # Log_Vmax: Growth Rate of Log10(Vmax) #Mpeak_Scale: Scale at which Mpeak was reached. #Acc_Scale: Scale at which satellites were (last) accreted. #First_Acc_Scale: Scale at which current and former satellites first passed through a larger halo. #First_Acc_(Mvir|Vmax): Mvir and Vmax at First_Acc_Scale. #Vmax@Mpeak: Halo Vmax at the scale at which Mpeak was reached. #Tidal_Force_Tdyn: Dimensionless tidal force averaged over past dynamical time. #Log_(Vmax/Vmax_max(Tdyn;TMpeak)): Log10 of Vmax_now over Vmax@(Tdyn ago) OR Vmax@Mpeak (if and only if Mpeak happened > 1Tdyn ago). #Time_to_future_merger: Time (in Gyr) until the given halo merges into a larger halo. (-1 if no future merger happens) #Future_merger_MMP_ID: most-massive progenitor of the halo into which the given halo merges. (-1 if the main progenitor of the future merger halo does not exist at the given scale factor.) @Consistent Trees_version1.01 H HDF5_version¸¸.˜GCOL1.10.12.10.0À 8 TotNhalos@Æ)P H h5py_version¸ @input_catalog_typeConsistent Trees Hinput_filedatestamp ?@4 4ÿ(’�×A Pinput_filename'All100.hdf5/hlist_00000093_0.11410.list ?@4 4ÿ¸68I‡_xSNODP0¨2 ¸3(È4 ?@4 4ÿð68I‡_x ?@4 4ÿ(78I‡_x ?@4 4ÿ`78I‡_x×òAÏ^G@Êø÷n"À;ßO�—Ž&@¸…ëQ¨<@w-!ôì,@]mÅþ²(@õJY†8Öð?;ßO�—þ5@—ÿ�~ûš%À[Ó¼ã$@ŒJê412@é·¯çL)@ßà “©b$@4KÔÔ2ð?-}è‚úö@é·¯ç$E@.� ø1C@k+ö—Ý“+ÀGrùé/D@Dioð… 1ÀXni5$îâ¿´TÞŽpZù?”ö_˜Œ>@x $(~B@ßO�—nò1ÀóÒo_@@Ü×�sFd0À"øßJvlì?M„ OÏ@fN—ÅÄæô?Ÿ°ÄÊ&@M„ O¯ô6Àg½ʉ–@çŒ(í ^=@+‡Ù>;@;6ñº~@Û3KÔÔò¿ÒÞ J@AñcÌ]K2Àƒ£äÕ9Ö?œÄ °rØ7@ÿ!ýöu°9@î¬t{!·>6CŒyù>ÿĦ\Z> >;a,ؼ°>î:Çt•†*>©f`iÃ> Ê’¶ú >õÌFÀK>™ŠÕ™ >‘(*¼ðl> ãºY>uÏË\ï>Á½úÝZa}>}ISÊæ™ >¿@J¼@¸º@/·@o´@Œ°@œ²@ɽ@�»@º@š¶@Lµ@â°@Á²@ü²@Š´@o²@Ô±@t³@"°@ȯ@€ Á@¼¾@Ú¼@¹@“±@Þ®@#²@€ Á@¼¾@Ú¼@¹@“±@Þ®@#²@Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Š8"€èj¹ héŒpé…Þ é"¦@àé¾7êÐÎÈê!Ð!€èo6 héQpéêC éC~@àéã›7êŽÍÈê ëÉ;rBÀL':tBà3†�qB@YØÔmBàpè°pB FÝqBW8oBÙ=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?)\�Âõ0z@áz®GM}@\�Âõ(¨~@)\�ÂõŒ{@q= ×£ˆ{@fffff|@ö(\�Â5~@—Ý€èb6hé~dpéÊp éÈÈàét(ê9Æ ÈêJ +‡¶d@ê&1¬Ô`@¼t“&Y@E¶óýÔðY@²�ï§Æƒ\@é&1¬d^@}?5^ºÉU@l ù g³º?ŠT[r¸?l ù g³º?l ù g³º?ŠT[r¸?ŠT[r¸?ŠT[r¸?ºÀ³WBÀ£Ûw[B`ùà=dBÀnfŒ`BÁÜ(aBì]edB|ËÉ!B«hBš%JÂ@ ¤•QB&ªF1ÂTnB€ÉäºAÂð%x7ÂÃ@²RÂnÑóRBoƒ¸S€"¹_B€öQ˜Ú,ðÁè•RAB$Ð!€èu6 héWpéìC éH~@àéé›7ê’ÍÈê9Ð!€è‘6 hé|péD éd~@àéœ7ê�ÍÈêï=\rÜ)Á?C9Ñ®BÂ?TR' ‰°É?èeË-­Æ?cE ¦aøÔ?uqBàJ£7mB ]ßjpB�š ¯pB€ué¬nBÀ†sqBp¤ÍsB°n×>qBàˆ·+mB ]ßjpBðíQ«pB@v¥nBÙÊ­7B€ÏK¯NB â©SB€°çRLBák¶PB@:“‚EBàú^]BàYnÜVB ô€nBà’ØmB0^.¤gB×|iB�@6jBð[èFkB@v¥nBÀhæqB€E £qBà­ ÌkB@Å¢]mB@RÛinBà “pB µdw‚B ÝÏesBÀ[´ÊiB»rxhBÀŸôZnBàÕµÎpB’^B ëÉ;rBÀL':tBà3†�qB@YØÔmBàpè°pB FÝqBW8oB ëÉ;rBÀL':tBà3†�qB@YØÔmBàpè°pB FÝqBW8oB ?@4 4ÿ˜78I‡_x ?@4 4ÿÐ78I‡_x ?@4 4ÿ88I‡_x ?@4 4ÿ@88I‡_x ?@4 4ÿx88I‡_xSNOD8¸>@È?PØ@hèA ?@4 4ÿ°88I‡_x ?@4 4ÿè88I‡_x ?@4 4ÿ 98I‡_x ?@4 4ÿˆ;8I‡_x ?@4 4ÿX98I‡_xSNOD€øB�PE `F°pG ?@4 4ÿ�98I‡_x@È98I‡_€@:8I‡_€ ?@4 4ÿ8:8I‡_xSNODÀàIÐ8LàHMøXN ?@4 4ÿp:8I‡_x ?@4 4ÿ¨:8I‡_x@à:8I‡_€ ?@4 4ÿ;8I‡_xSNODhOÀQ(ÐR8àS ?@4 4ÿP;8I‡_x ?@4 4ÿ�o8I‡_xSNOD€Hz� | °}¨À~ ?@4 4ÿÀ;8I‡_x ?@4 4ÿø;8I‡_xSNODPðT`HWp€Hx[@0<8I‡_€@h<8I‡_€ ?@4 4ÿ <8I‡_x ?@4 4ÿØ<8I‡_xSNOD€(\ˆ€^¨�_È ` ?@4 4ÿ=8I‡_x ?@4 4ÿH=8I‡_x ?@4 4ÿ€=8I‡_x ?@4 4ÿ¸=8I‡_xSNODè°aðdøe(f ?@4 4ÿð=8I‡_x ?@4 4ÿ(>8I‡_x ?@4 4ÿ`>8I‡_x ?@4 4ÿÐm8I‡_xÙ=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½? ëÉ;rBÀL':tBà3†�qB@YØÔmBàpè°pB FÝqBW8oB/ ;rBàæ:tB ¬ƒqB �ÔmBЉ°pB°¤<qBW8oB:Ð!€è’6 hé}péD ée~@àéœ7êžÍÈêœ(ngŽ䟎?Ö‡³¥–ÿ𣿯XÉv¾Ÿ§[@†ÉTÁ¨”H@&䃞Íj<@œÄ °r�A@-!ôlÆF@´Yõ¹ÚrE@àœ¥½a8@Õxé&1Úp@fffffrq@Ûù~j¼ p@V-²…o@)\�Âõ\p@Zd;ßwp@= ×£põo@@@@@@@@}:3PŸ?��@¼®_�?£éìdp”œ?§èH.ÿ¡?îÎÚmš?cîZB>è™?ÕsÒûÆ×~?ËJ“RÐí¥?‘z6«>—?­£ª ¢î£?È TƿϨ?ÅrK«!¡?ãßg\8¢?õg?RD†…?q= ×£på?a2U0*©ç?Ü×�sF”è?B`åÐ"Ûç?_)ËǺæ?`vOjç?Ô+eâXé?ÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿð¿'Nîw(Ê@ð¿ð¿ð¿ð¿ð¿ ÑÖ€è5r�hé�Ppé´š§ éRçàéùÏê[hÈê)\�Âõ0z@áz®GM}@\�Âõ(¨~@)\�ÂõŒ{@q= ×£ˆ{@fffff|@ö(\�Â5~@)\�Âõ0z@áz®GM}@\�Âõ(¨~@)\�ÂõŒ{@q= ×£ˆ{@fffff|@ö(\�Â5~@= ×£pJ@)\�Âõ `@¸…ëQøh@ö(\�ÂÍj@Ãõ(\�"G@Ház®ç[@\�Âõ(,T@)\�Âõ0z@áz®GM}@\�Âõ(¨~@)\�ÂõŒ{@ìQ¸…³{@fffff|@ö(\�Â5~@ã6À[04@¹ü‡ôÛ—5@·ÑÞB/@-σ»³v@cÙ=y8)@A`åÐ"»8@�•C‹œ3@<½R–!Ž×?HKåí§Û?±KTo lä? Òo_Îæ?$œ¼è+ã?jjÙZ_$æ?ãǘ»–�ê?ÅZ| €ñá?Êø÷Ø??‘'I×Là?CV·zNì?±… %Ìä?²F=D£;Þ?4Mg'ƒé?‘~û:pÎÐ?�>‘'I×Ö?]Pß2§ËØ?g~5Ú?ªñÒMbÜ?jÁ‹¾‚4×?j¼t“à?pënžê�ß?&pënžêÔ?·E™ 2ÉÒ?e�zˆFwÚ?À燣Û?’ËH¿}Ñ?–ÊÛN Þ?L€èØÈhéˆêp骠éí#àéb5êçþÈêÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿ½ãÉå¿?½ãÉå¿?½ãÉå¿?½ãÉå¿?½ãÉå¿?½ãÉå¿?½ãÉå¿?—Ý€è™7hé~dpéÊp éÈÈàét(ê9Æ ÈêÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿßO�—n€p@ôýÔxé–O@¾Ÿ/ÝôA@‰A`åÐÒE@V-òJ@Ï÷Sã¥P@/Ý$�u5@Œlçû©ƒp@Ñ"Ûù~†f@ï§ÆK7ù^@d;ßO�¿a@þÔxé&=d@j¼t“$d@E¶óýÔØV@Рs�rBÐt!vtBhðƒ&qB�®™ªmB` tõpB`4ßãqBúoBSNOD8g�i( j0°k ?@4 4ÿn8I‡_x ?@4 4ÿ@n8I‡_x@xn8I‡_€@°n8I‡_€SNOD8ÀlHwP(x`8y ?@4 4ÿèn8I‡_x ?@4 4ÿ o8I‡_x ?@4 4ÿXo8I‡_xA_xA_x_500cA_yA_y_500cA_zA_z_500cAcc_Log_Vmax_1_TdynAcc_Log_Vmax_InstAcc_Rate_100MyrAcc_Rate_1_TdynAcc_Rate_2_TdynAcc_Rate_InstAcc_Rate_MpeakAcc_ScaleBreadth_first_IDDepth_first_IDFirst_Acc_MvirFirst_Acc_ScaleFirst_Acc_VmaxFuture_merger_MMP_IDHalfmass_RadiusHalfmass_ScaleJxJyJzLast_mainleaf_depthfirst_IDLast_progenitor_depthfirst_IDLog_Vmax_Vmax_max_Tdyn_Tmpeak_M200bM200cM2500cM500cM_pe_BehrooziM_pe_DiemerMaccMpeakMpeak_ScaleMvirMvir_allNext_coprogenitor_depthfirst_IDOrig_halo_IDRs_KlypinRvirSnap_idxSpinSpin_BullockT_UTidal_ForceTidal_Force_TdynTidal_IDTime_to_future_mergerTree_root_IDVaccVmax_MpeakVoffVpeakXoffb_to_ab_to_a_500cc_to_ac_to_a_500cdesc_iddesc_piddesc_scaleidmmpnum_progphantompidrsrvmaxsam_Mvirscalescale_of_last_MMupidvmaxvrmsvxvyvzxyz ?@4 4ÿÈo8I‡_x ?@4 4ÿp8I‡_x ?@4 4ÿ8p8I‡_x ?@4 4ÿpp8I‡_xSNOD¸XXÀP…Ð`†Øp‡@¨p8I‡_€ ?@4 4ÿàp8I‡_x@q8I‡_€ ?@4 4ÿPq8I‡_xSNOD耈؊è‹(øŒ ?@4 4ÿˆq8I‡_x ?@4 4ÿÀq8I‡_x ?@4 4ÿøq8I‡_x ?@4 4ÿ0r8I‡_xSNOD8Ž@`�Pp‘X€’ ?@4 4ÿhr8I‡_x ?@4 4ÿ r8I‡_x ?@4 4ÿØr8I‡_x ?@4 4ÿs8I‡_xSNOD`�“hè•pø–€˜@Hs8I‡_€@€s8I‡_€ ?@4 4ÿ¸s8I‡_x@ðs8I‡_€SNODˆ™˜p› €œ°��@(t8I‡_€@`t8I‡_€@˜t8I‡_€@Ðt8I‡_€SNODÀ žÈø Ð¢à£ ?@4 4ÿu8I‡_x ?@4 4ÿ@u8I‡_x ?@4 4ÿxu8I‡_x ?@4 4ÿÀª8I‡_xÙ=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?Ù=yX¨5½?×i¤¥òv´?vi©¼±?ŠT[r¸?‡P¥f´²?‡P¥f´²?×i¤¥òv´?ÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿÿ)\�Âõ0z@áz®GM}@\�Âõ(¨~@)\�ÂõŒ{@q= ×£ˆ{@fffff|@ö(\�Â5~@)\�Âõ{@ÍÌÌÌÌJ€@q= ×£�@¤p= ׳~@ìQ¸…g~@…ëQ¸m~@×£p= ‡�@®Gáz–`À\�Âõ(œX@R¸…ëáU@®GázŒs@áz®Gáú¿PQÀq= ×£ðYÀ)\�Âõ(B@Ãõ(\�gÀfffffb@Ház®_bÀHáz®[À¤p= ×sc@R¸…ëña@)\�ÂõèT@R¸…ëÙu@×£p= —?À= ×£pý^À…ëQ¸^pÀR¸…ë±a@ ×£p=Jb@Ãõ(\�¢œ@Äœ@)\�Âõ9�@= ×£pa�@fffffÈœ@fffffU�@ÍÌÌÌÌ¥œ@š™™™™Ú“@ÿ”@š™™™™á”@q= ×£k”@…ëQ¸<–@fffffJ—@Ház®˜@6Í;NѱI@oƒÀÊýŒ@®Gázr�@ÍÌÌÌÌÛ™@B`åÐ"?@¨ÆK7‰Ž@×£p= y”@SNODè(¤ð€¦ø�§ ¨ ?@4 4ÿøª8I‡_x@0«8I‡_€ ?@4 4ÿh«8I‡_x ?@4 4ÿ «8I‡_xSNOD°©´0µ8(¶ ?@4 4ÿØ«8I‡_x ?@4 4ÿ¬8I‡_x ?@4 4ÿH¬8I‡_x ?@4 4ÿ€¬8I‡_xSNOD@8·H�¹P ºX°»`À¼h¿p(À ?@4 4ÿ¸¬8I‡_x ?@4 4ÿð¬8I‡_x