I know it ain't that many but if you ever wondered what maps and addons SMG4 uses well then here you go. C0 = CFrame.new(7.12578773, -0.113092422, -56.9015541, -0.999990702, 0.00427567447, -0.000560928893, 0.00055484724, -0.00142344052, -0.999998868, -0.00427646795, -0.999989867, 0.00142105494). C1 = CFrame.new(7.12578583, -2.68451595, -56.9015579, -0.999990702, 0.00427567447, -0.000560928893, 0.00055484724, -0.00142344052, -0.999998868, -0.00427646795, -0.999989867, 0.00142105494). johnny cash - guitar chords. Click the Download button; For the Roblox Script Code, wait for 30 seconds. hud housing st louis. 13 min ago We would You will need an executor to run the script code and cheats from Recoil Roblox. Burial Services - Eeds Funeral Home offers Pet Simulator X Script Pastebin September 2022. 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Bakken young funeral cremation services obituaries Published May 30, 2022. how to skip all How to pass all edgenuity classes How to pass all edgenuity classes von The Random Mix vor 3 Monaten 2 Minuten, 2 Sekunden 17.479 Aufrufe enjoy disclaimer im not responsible this is all a joke it. 11 min ago local p = game:GetService("Players").LocalPlayer, local rs = game:GetService("RunService").RenderStepped, ----------------------------------------------------, function FindNearestTorso(Position,Distance,SinglePlayer), if SinglePlayer then return(SinglePlayer.Torso.CFrame.p -Position).magnitude < Distance end, for i,v in pairs(workspace:GetChildren())do, if(v.Torso.Position -Position).magnitude <= Distance then, local HandCF = CFrame.new(root.Position - Vector3.new(0,0,0)) * CFrame.Angles(0,0,0), local wave1 = Instance.new("Part", torso), wave1.BrickColor = BrickColor.new("Really black"), wm.Scale = Vector3.new(2 + i*2, 2 + i*2, 2 + i*2), local HandCF = CFrame.new(root.Position - Vector3.new(0,3,0)) * CFrame.Angles(math.rad(90), math.rad(0), math.rad(0)), wave.BrickColor = BrickColor.new("New Yeller"), wm.Scale = Vector3.new(1 + i*1.1, 1 + i*1.1, 1), function lerp(a, b, t) -- Linear interpolation, function slerp(a, b, t) --Spherical interpolation, return (a*math.sin((1 - t)*r) + b*math.sin(t*r)) / math.sin(r), local ax, ay, az, a00, a01, a02, a10, a11, a12, a20, a21, a22 = a:components(), local bx, by, bz, b00, b01, b02, b10, b11, b12, b20, b21, b22 = b:components(), local v0 = lerp(Vector3.new(ax, ay, az), Vector3.new(bx , by , bz), t) -- Position, local v1 = slerp(Vector3.new(a00, a01, a02), Vector3.new(b00, b01, b02), t) -- Vector right, local v2 = slerp(Vector3.new(a10, a11, a12), Vector3.new(b10, b11, b12), t) -- Vector up, local v3 = slerp(Vector3.new(a20, a21, a22), Vector3.new(b20, b21, b22), t) -- Vector back, if not (t < 0 or t == 0 or t > 0) then -- Failsafe, local com1 = {c1.X,c1.Y,c1.Z,c1:toEulerAnglesXYZ()}, local com2 = {c2.X,c2.Y,c2.Z,c2:toEulerAnglesXYZ()}, return CFrame.new(com1[1],com1[2],com1[3]) * CFrame.Angles(select(4,unpack(com1))), newWeld = function(wp0, wp1, wc0x, wc0y, wc0z), local AddInstance = function(Object, ), --local SIDz = {"167985102"}, 167161785, 148274436, z.SoundId = "rbxassetid://397952612"--..SIDz[math.random(1,#SIDz)]. 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Crime Stoppers USA is the national Crime Stoppers organization that spans the United States to create a network of local programs that work together to prevent and solve crimes in communities and schools across the nation. 45 min ago 45 min ago C1 = CFrame.new(7.12578964, 2.69762135, -56.9015579, -0.999990702, 0.00427567447, -0.000560928893, 0.00055484724, -0.00142344052, -0.999998868, -0.00427646795, -0.999989867, 0.00142105494). 11 min ago 0 . Arthas is the final boss of the Icecrow Citadel in World of Warcraft. 1.Open Roblox And Start Playing 2.Click The Blue Circle To Copy The Script Code 3.Paste The Script Code Into Your Executor 4.Then Execute The Script Code 5.Enjoy Use your dummy account first we are not responsible if your account getting Ban. how to insult your ex boyfriend girlfriend. To summon the Megapithecus , you will need to head to any Obelisk on The Island map, bringing the required tributes along with you. C1 = CFrame.new(7.1258049, 1.38688946, -56.830143, -0.999990702, 0.00427594269, -0.000560964399, 0.000554880884, -0.00142379443, -0.999998868, -0.00427673617, -0.999989867, 0.00142140849). Inherited Will: Double Megamerge after inheriting Model Z in Mega Man ZX. Across all treatment phases, the synthesized reinforcement contingency identified in the treatment context IISCA was arranged to teach and maintain skills, and all problem behavior was placed on extinction. Players team up in groups called companies to build and sail their own ships and crew them with other players or computer-controlled crewmembers, team up with or battle against other crews, earn experience and level Eeds Funeral Home provides funeral and cremation services to families of Lockhart, Texas and the surrounding area. Mega Boss Spawn Locations soupbag Feb 20th, 2021 274 0 Never Add comment Not a member of Pastebin yet? 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October 31, 2022 by Can I Earn Money By Learning Python, 53 min ago Size = Vector3.new(0.54285717, 1.11428583, 0.371428579). turnBG.cframe = camCF * CFrame.Angles(-math.rad(forward * (flySpeed / MAX_FLY_SPEED)), 0, game:service'RunService'.RenderStepped:connect(function(), if Debounces.Slashing == true and Debounces.Slashed == false then, hit:FindFirstChild("Humanoid"):TakeDamage(math.huge), if hit.Parent:FindFirstChild("Humanoid") then, hit.Parent:FindFirstChild("Humanoid"):TakeDamage(math.huge), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(5,0.65,-6)*CFrame.Angles(math.rad(60),math.rad(70),math.rad(70)), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,-1,2.2) *CFrame.Angles(math.rad(-20),math.rad(0),math.rad (-40)), 0.2), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0,6.8,0)*CFrame.Angles(math.rad(0),math.rad(-50), math.rad(0)), 0.2), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(-.4, -1, 0) * CFrame.Angles(math.rad(0), math.rad(70), math.rad(0)), 0.2), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles (math.rad(-10), 0, math.rad(-10)), 0.2), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles (math.rad(10), 0, math.rad(10)), 0.2), z.SoundId = "rbxassetid://"..idz[math.random(1,#idz)], rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(2, -2, 3) * CFrame.Angles(math.rad(-40),math.rad(-20),math.rad(40)), 0.3), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1, 0.65, -.3) * CFrame.Angles(math.rad(65),math.rad(-20),math.rad(30)), 0.3), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0, 6.8, 0) * CFrame.Angles(math.rad(-9),math.rad(35), math.rad(0)), 0.3), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1, 1) * CFrame.Angles(math.rad(0), math.rad(-65), math.rad(0)), 0.3), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles(math.rad(10), 0, math.rad(-10)), 0.3), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles(math.rad(-10), 0, math.rad(10)), 0.3), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.1, 0.6, -.4) * CFrame.Angles(math.rad(130), 0, math.rad(40)), 0.3), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(1.1, 0.6, -.4) * CFrame.Angles(math.rad(130), 0, math.rad(-40)), 0.3), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1, 0) * CFrame.Angles(math.rad(30), 0, 0), 0.3), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0, 6.8, 0) * CFrame.Angles(math.rad(50), 0, 0), 0.3), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.5, -1, 0) * CFrame.Angles(math.rad(-30), 0, 0), 0.3), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.5, -.2, -.5) * CFrame.Angles(math.rad(-10), 0, 0), 0.3), cor.Weld.C1 = Lerp(cor.Weld.C1, CFrame.new(0, 2, 0) * CFrame.Angles (math.rad(40), math.rad(0), math.rad(0)), 0.35), z1.SoundId = "rbxassetid://"..idz[math.random(1,#idz)], larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.1, 0.6, -.4) * CFrame.Angles(math.rad(50), 0, math.rad(40)), 0.3), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(1.1, 0.6, -.4) * CFrame.Angles(math.rad(50), 0, math.rad(-40)), 0.3), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -2, 0) * CFrame.Angles(math.rad(-30), 0, 0), 0.3), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0, 6.8, 0) * CFrame.Angles(math.rad(10), 0, 0), 0.3), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.5, 0, -.7) * CFrame.Angles(math.rad(20), 0, 0), 0.3), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.5, -1, -.1) * CFrame.Angles(math.rad(-40), 0, 0), 0.3), cor.Weld.C1 = Lerp(cor.Weld.C1, CFrame.new(0, 2, 0) * CFrame.Angles (math.rad(40), math.rad(20), math.rad(20)), 0.35), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-8.2, -2.9, 0) * CFrame.Angles(math.rad(0), 0, math.rad(-90)), 0.8), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(8.2, -2.9, 0) * CFrame.Angles(math.rad(0), 0, math.rad(90)), 0.8), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1, 0) * CFrame.Angles(0, 0, 0), 0.8), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0, 6.8, 0) * CFrame.Angles(0, 0, 0), 0.8), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.5, -1, 0) * CFrame.Angles(math.rad(0), 0, 0), 0.8), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.5, -1, 0) * CFrame.Angles(math.rad(0), 0, 0), 0.8), cor.Weld.C1 = Lerp(cor.Weld.C1, CFrame.new(0, 2, 0) * CFrame.Angles (math.rad(80), math.rad(0), math.rad(0)), 0.35), torso.Weld.C1 = CFrame.new(0, -1, 0) * CFrame.Angles(math.rad(0), math.rad(i), math.rad(0)), u.SoundId = "http://www.roblox.com/asset/?id=261303790", u2.SoundId = "http://www.roblox.com/asset/?id=261303790", u3.SoundId = "http://www.roblox.com/asset/?id=261303790", game:GetService("RunService").RenderStepped:connect(function(), char.Humanoid.FreeFalling:connect(function(f), elseif (torso.Velocity*Vector3.new(1, 0, 1)).magnitude < 2 then, elseif (torso.Velocity*Vector3.new(1, 0, 1)).magnitude < 20 then, elseif (torso.Velocity*Vector3.new(1, 0, 1)).magnitude > 20 then, rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(3,-2.2,0)*CFrame.Angles(math.rad(0),math.rad(0),math.rad(40)), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,-0.65,0)*CFrame.Angles(math.rad(-20),math.rad(0),math.rad(-20)), 0.2), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0,6.8,-.2)*CFrame.Angles(math.rad(-14),math.rad(50),0), 0.2), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1, 0) * CFrame.Angles(0, math.rad(-50), 0), 0.2), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(0, -1.2, -0.5) * CFrame.Angles(math.rad(10), math.rad(30), math.rad(-20)), 0.2), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0, -1.2, -0.5) * CFrame.Angles(math.rad(0), math.rad(-15), math.rad(20)), 0.2), cor.Weld.C1 = Lerp(cor.Weld.C1, CFrame.new(0, 0, 0) * CFrame.Angles(0, 0, 0), 0.3), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(1.5,-0.62+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(-16),math.rad(-12),math.rad(10+2*math.cos(sine/14))), 0.4), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,-0.62+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(-16),math.rad(12),math.rad(-10-2*math.cos(sine/14))), 0.4), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0,6.8,-.2)*CFrame.Angles(math.rad(-14+1*math.cos(sine/14)),math.rad(0),0), 0.2), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1-0.4*math.cos(sine/14), 0) * CFrame.Angles(0, math.rad(0), math.rad(0)), 0.05), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles(0, 0, math.rad(-8-2*math.cos(sine/14))), 0.4), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles(0, 0, math.rad(8+2*math.cos(sine/14))), 0.4), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(3,-2.2+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(0),math.rad(0),math.rad(40+2*math.cos(sine/14))), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,-0.65+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(-20),math.rad(0),math.rad(-20-2*math.cos(sine/14))), 0.2), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0,6.8,-.2)*CFrame.Angles(math.rad(-14+1*math.cos(sine/14)),math.rad(50),0), 0.2), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(1.5,-0.65+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(0),math.rad(0),math.rad(20+2*math.cos(sine/14))), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,-0.65+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(0),math.rad(0),math.rad(-20-2*math.cos(sine/14))), 0.2), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0,6.8,-.2)*CFrame.Angles(math.rad(-20+1*math.cos(sine/14)),math.rad(0),0), 0.2), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1, 0) * CFrame.Angles(0, math.rad(0), 0), 0.2), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles(math.rad(0), math.rad(0), math.rad(-10)), 0.2), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles(math.rad(0), math.rad(0), math.rad(10)), 0.2), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(3,-2.2, 0)*CFrame.Angles(math.rad(-20), math.rad(-20),math.rad(40)), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,0, -math.sin(sine/8)/2.8)*CFrame.Angles(math.sin(sine/8)/4, -math.sin(sine/8)/2, math.rad(-10)), 0.2), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0,6.8,0)*CFrame.Angles(math.rad(-8+2*math.cos(sine/4)), math.rad(0), math.rad(0)),0.2), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1+0.1*math.cos(sine/4), 0) * CFrame.Angles(math.rad(-4+2*math.cos(sine/4)), 0, math.rad(0)), 0.2), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.5, -1-0.14*math.cos(sine/8)/2.8, -0.05 + math.sin(sine/8)/3.4) * CFrame.Angles(math.rad(-10) + -math.sin(sine/8)/2.3, 0, 0), .4), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.5, -1+0.14*math.cos(sine/8)/2.8, -0.05 + -math.sin(sine/8)/3.4) * CFrame.Angles(math.rad(-10) + math.sin(sine/8)/2.3, 0, 0), .4), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(1.5, 0-.05*math.cos(sine/4), math.sin(sine/8)/4) * CFrame.Angles(-math.sin(sine/8)/2.8, -math.sin(sine/8)/3, math.rad(10+2*math.cos(sine/4))), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5, 0+.05*math.cos(sine/4), -math.sin(sine/8)/4)*CFrame.Angles(math.sin(sine/8)/2.8, -math.sin(sine/8)/3, math.rad(-10-2*math.cos(sine/4))), 0.2), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1+0.07*math.cos(sine/4), 0) * CFrame.Angles(math.rad(-4+1*math.cos(sine/4)), 0, math.rad(0)), 0.2), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1-0.14*math.cos(sine/8)/2.8, -0.05 + math.sin(sine/8)/3.4) * CFrame.Angles(math.rad(-10) + -math.sin(sine/8)/2.3, 0, 0), .4), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1+0.14*math.cos(sine/8)/2.8, -0.05 + -math.sin(sine/8)/3.4) * CFrame.Angles(math.rad(-10) + math.sin(sine/8)/2.3, 0, 0), .4), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(1.5,-0.62+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(-16),math.rad(-12),math.rad(10+2*math.cos(sine/14))), 0.2), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-1.5,-0.62+0.1*math.cos(sine/14),0)*CFrame.Angles(math.rad(-16),math.rad(12),math.rad(-10-2*math.cos(sine/14))), 0.2), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0, 6.8, -.2) * CFrame.Angles(math.rad(-14-4*math.cos(sine/14)),0,0), 0.4), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles(math.rad(0-8*math.cos(sine/14)), 0, math.rad(-8)), 0.4), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles(math.rad(1-9*math.cos(sine/13)), 0, math.rad(8)), 0.4), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1-0.2*math.cos(sine/14), 0) * CFrame.Angles(math.rad(-10),0, math.rad(0)), 0.05), hed.Weld.C0 = Lerp(hed.Weld.C0, CFrame.new(0, 6.8, 0) * CFrame.Angles (math.rad(44), math.rad (0), math.rad(0)), 0.15), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, 1-0.1*math.cos(sine/14), -1) * CFrame.Angles(math.rad(- 80), math.rad(0), 0), 0.15), larm.Weld.C0 = Lerp(larm.Weld.C0, CFrame.new(-4, -0.5, 0) * CFrame.Angles(math.rad (0), math.rad(50), math.rad(-40)), 0.15), rarm.Weld.C0 = Lerp(rarm.Weld.C0, CFrame.new(4, -0.5, 0) * CFrame.Angles(math.rad(0), math.rad(-50), math.rad(40)), 0.15), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles(math.rad(8), math.rad(0), math.rad(- 10)), .15), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles(math.rad(8), math.rad(0), math.rad(10)), .15), hed.Weld.C0 = CFrame.new(0,6.8,0)*CFrame.Angles(math.rad(-14-4*math.cos(sine/14)),0,0), lleg.Weld.C0 = Lerp(lleg.Weld.C0, CFrame.new(-0.1, -1, 0) * CFrame.Angles(math.rad(-10-12*math.cos(sine/16)), 0, math.rad(-8)), 0.4), rleg.Weld.C0 = Lerp(rleg.Weld.C0, CFrame.new(0.1, -1, 0) * CFrame.Angles(math.rad(-10-12*math.cos(sine/16)), 0, math.rad(8)), 0.4), torso.Weld.C0 = Lerp(torso.Weld.C0, CFrame.new(0, -1-0.4*math.cos(sine/14), -.2) * CFrame.Angles(math.rad(-15),0, math.rad(0)), 0.05), function Lightning(Part0,Part1,Times,Offset,Color,Thickness,Trans) -- Lightning module, Times = number (Amount of lightning parts), li.Size = Vector3.new(Thickness,Thickness,magz/Times), local Offzet = Vector3.new(trz[math.random(1,2)],trz[math.random(1,2)],trz[math.random(1,2)]), local trolpos = CFrame.new(curpos,Part1)*CFrame.new(0,0,magz/Times).p+Offzet, li.Size = Vector3.new(Thickness,Thickness,magz2), li.CFrame = CFrame.new(curpos,Part1)*CFrame.new(0,0,-magz2/2), li.CFrame = CFrame.new(curpos,trolpos)*CFrame.new(0,0,magz/Times/2), curpos = li.CFrame*CFrame.new(0,0,magz/Times/2).p, BodyParts = {} -- Parts to emit lightning effects from, Bounding = {} -- Calculate the bounding boxes, while wait(0) do -- Emit the Lightning effects randomly, local Body1 = BodyParts[math.random(#BodyParts)], local Body2 = BodyParts[math.random(#BodyParts)].