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For your information, All Star earrape Roblox ID is 1523363902. On behalf of sodmg records. By continuing to use Pastebin, you agree to our use of cookies as described in the Ear rape Roblox ID's. 39 min ago, Bash | Things To Know. maxForce = Vector3.new(math.huge, 0, math.huge). Funny Words That Start With B, Marrying Millions Cast Instagram, You can easily copy the code or add it to your favorite list. 100 bad days roblox id code 100 dollar roblox gift card codes 10000 robux 10000 robux code 10000 robux code 2019 10000 robux code free 10000 robux free 10000 robux gift card 10000 robux obby 10000 robux picture 10000 robux price 10000 robux to usd 2018 roblox visor actually free robux aimbot for kat roblox aimbot for roblox free download all roblox toy codes all roblox … Dj Geoff - Monsters Inc. Billie Eilish - bad guy Roblox ID - Robl... Find Roblox ID for track "Billie Eilish - bad guy" and also many other song IDs. Dont Call Me. Tags . 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Ear Rape is a popular term in meme culture.It means very loud & distored audio clips that appears in youtube & fb videos.It affects your ears. … Lovin Touchin Squeezin Lyrics Meaning, Curry Leaves Near Me, CFrame.new(char.Torso.Position, Vector3.new(mouse.Hit.p.x, char.Torso.Position.y, mouse.Hit.p.z)), Vector3.new(mouse.Hit.p.x, mouse.Hit.p.y, mouse.Hit.p.z), NSound.SoundId = "http://www.roblox.com/asset/?id="..ID, game:GetService("Debris"):AddItem(NSound, 10), function CameraEnshaking(Length, Intensity), intensity = intensity - 0.05 * Intensity / Length, rotM = rotM - 5.0E-4 * Intensity / Length, hum.CameraOffset = Vector3.new(Rad(Mrandom(-intensity, intensity)), Rad(Mrandom(-intensity, intensity)), Rad(Mrandom(-intensity, intensity))), cam.CFrame = cam.CFrame * CF(Rad(Mrandom(-intensity, intensity)), Rad(Mrandom(-intensity, intensity)), Rad(Mrandom(-intensity, intensity))) * Euler(Rad(Mrandom(-intensity, intensity)) * rotM, Rad(Mrandom(-intensity, intensity)) * rotM, Rad(Mrandom(-intensity, intensity)) * rotM), local Particle = IT("ParticleEmitter",nil), --Particle.Transparency = NumberSequence.new({NumberSequenceKeypoint.new(0,1),NumberSequenceKeypoint.new(0.3,0.95),NumberSequenceKeypoint.new(1,1)}), Particle.Rotation = NumberRange.new(-180, 180), Particle.RotSpeed = NumberRange.new(-180, 180), Particle.Texture = "http://www.roblox.com/asset/?id=284205403", Particle.Color = ColorSequence.new(Color3.new(0,0,0),Color3.new(0,0,0)), local Acel = Table.Acel or Vector3.new(0,-50,0), PRTCL.Size = NumberSequence.new(Size1,Size2), PRTCL.Lifetime = NumberRange.new(Lifetime1,Lifetime2), game:GetService("Debris"):AddItem(PRTCL,Lifetime2), local PRT = ParticleEmitter({Speed = 0.3, Drag = 3, Size1 = 1.1, Size2 = 0.3, Lifetime1 = 0.2, Lifetime2 = 1, Parent = rl, Emit = 900, Offset = 360, Enabled = true}), local PRT = ParticleEmitter({Speed = 0.3, Drag = 3, Size1 = 1.1, Size2 = 0.3, Lifetime1 = 0.2, Lifetime2 = 1, Parent = ll, Emit = 900, Offset = 360, Enabled = true}), local PRT = ParticleEmitter({Speed = 0.3, Drag = 3, Size1 = 1.1, Size2 = 0.3, Lifetime1 = 0.3, Lifetime2 = 1.5, Parent = tors, Emit = 900, Offset = 360, Enabled = true}), local PRT = ParticleEmitter({Speed = 0.3, Drag = 3, Size1 = 1.1, Size2 = 0.3, Lifetime1 = 0.2, Lifetime2 = 1, Parent = ra, Emit = 900, Offset = 360, Enabled = true}), local PRT = ParticleEmitter({Speed = 0.3, Drag = 3, Size1 = 1.1, Size2 = 0.3, Lifetime1 = 0.2, Lifetime2 = 1, Parent = la, Emit = 900, Offset = 360, Enabled = true}), function CreateWeldOrSnapOrMotor(TYPE, PARENT, PART0, PART1, C0, C1), function Raycast(POSITION, DIRECTION, RANGE, IGNOREDECENDANTS), return workspace:FindPartOnRay(Ray.new(POSITION, DIRECTION.unit * RANGE), IGNOREDECENDANTS), for i,v in ipairs(workspace:GetChildren()) do, if v:FindFirstChild("Hit2By"..plr.Name) == nil then, if(v:FindFirstChild("Hit2By"..plr.Name) == nil and (body[part].ClassName == "Part" or body[part].ClassName == "MeshPart") and v ~= char) then, if(body[part].Position - position).Magnitude < radius then, v:FindFirstChildOfClass("Humanoid").Name = "Humanoid", local defence = Instance.new("BoolValue",v), local TORS = v:FindFirstChild("HumanoidRootPart") or v:FindFirstChild("Torso") or v:FindFirstChild("UpperTorso"), local HITFLOOR2, HITPOS2 = Raycast(TORS.Position, (CF(TORS.Position, TORS.Position + Vector3.new(0, -1, 0))).lookVector, 25 * TORS.Size.Y/2, v), local Hole2 = CreatePart(3, EffectModel, "Neon", 0, 0, "Really black", "Hole", Vector3.new(TORS.Size.X*4,0,TORS.Size.X*4)), MESH.Scale = MESH.Scale + Vector3.new(0.1,0,0.1), --Cso("160440683", v:FindFirstChild("Head"), 10, .8), Cso("154955269", v:FindFirstChild("Head"), 10, 1), --MESH.Scale = MESH.Scale + Vector3.new(0,1.6,0), MESH.Scale = MESH.Scale - Vector3.new(0.1,0,0.1), --body[part].Velocity = CFrame.new(position,body[part].Position).lookVector*5*maxstrength, TRAIL.Transparency = TRAIL.Transparency + ((1-TRANS)/20), return workspace:FindPartsInRegion3WithIgnoreList(Region3.new(point-Vector3.new(1,1,1)*range/2,point+Vector3.new(1,1,1)*range/2),ignore,100), return char:FindFirstChild'Torso' or char:FindFirstChild'UpperTorso' or char:FindFirstChild'LowerTorso' or char:FindFirstChild'HumanoidRootPart', local M = {C=math.cos,R=math.rad,S=math.sin,P=math.pi,RNG=math.random,MRS=math.randomseed,H=math.huge,RRNG = function(min,max,div) return math.rad(math.random(min,max)/(div or 1)) end}, NewInstance = function(instance,parent,properties), function Part(parent,color,material,size,cframe,anchored,cancollide), part[typeof(color) == 'BrickColor' and 'BrickColor' or 'Color'] = color or Color3.new(0,0,0), part.Material = material or Enum.Material.SmoothPlastic, ----------------------------------------------------------------------------------, rootj.C0 = RootCF * CF(0 * Player_Size, 0 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(0), Rad(0)), rootj.C1 = RootCF * CF(0 * Player_Size, 0 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(0), Rad(0)), neck.C0 = necko * CF(0 * Player_Size, 0 * Player_Size, 0 + ((1 * Player_Size) - 1)) * angles(Rad(0), Rad(0), Rad(0)), neck.C1 = CF(0 * Player_Size, -0.5 * Player_Size, 0 * Player_Size) * angles(Rad(-90), Rad(0), Rad(180)), RW.C0 = CF(1.5 * Player_Size, 0.5 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(0), Rad(0)) --* RIGHTSHOULDERC0, LW.C0 = CF(-1.5 * Player_Size, 0.5 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(0), Rad(0)) --* LEFTSHOULDERC0, RH.C0 = CF(1 * Player_Size, -1 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(90), Rad(0)) * angles(Rad(0), Rad(0), Rad(0)), LH.C0 = CF(-1 * Player_Size, -1 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(-90), Rad(0)) * angles(Rad(0), Rad(0), Rad(0)), RH.C1 = CF(0.5 * Player_Size, 1 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(90), Rad(0)) * angles(Rad(0), Rad(0), Rad(0)), LH.C1 = CF(-0.5 * Player_Size, 1 * Player_Size, 0 * Player_Size) * angles(Rad(0), Rad(-90), Rad(0)) * angles(Rad(0), Rad(0), Rad(0)), local Hole = CreatePart(3, EffectModel, "Neon", 0, 0, "Really black", "Hole", Vector3.new(5,0,5)), local ROBLOXIDLEANIMATION = IT("Animation"), ROBLOXIDLEANIMATION.Name = "Roblox Idle Animation", ROBLOXIDLEANIMATION.AnimationId = "http://www.roblox.com/asset/?id=180435571", rootj.C0 = clerp(rootj.C0, RootCF * CF(0 - 0.04 * Sin(sine / 24) * Player_Size, 0 + 0.04 * Sin(sine / 12) * Player_Size, 0 + 0.05 * Player_Size * Cos(sine / 12)) * angles(Rad(0 - 2.5 * Sin(sine / 12)), Rad(0 - 2.5 * Sin(sine / 24)), Rad(0)), 0.15), tors.Neck.C0 = clerp(tors.Neck.C0, necko* CF(0, 0, 0 + ((1* Player_Size) - 1)) * angles(Rad(25 - 6.5 * Cos(sine / 12)), Rad(0), Rad(20 * Cos(sine / 12))), 0.3), RH.C0 = clerp(RH.C0, CF(1 * Player_Size, -1 * Player_Size + 0.06 * Sin(sine / 24) - 0.05 * Player_Size * Cos(sine / 12), -0.01 * Player_Size) * angles(Rad(0 - 2.5 * Sin(sine / 12)), Rad(84), Rad(0)) * angles(Rad(-6 - 2.5 * Sin(sine / 24)), Rad(0), Rad(0)), 0.15), LH.C0 = clerp(LH.C0, CF(-1 * Player_Size, -1 * Player_Size - 0.06 * Sin(sine / 24) - 0.05 * Player_Size * Cos(sine / 12), -0.01 * Player_Size) * angles(Rad(0 - 2.5 * Sin(sine / 12)), Rad(-84), Rad(0)) * angles(Rad(-6 + 2.5 * Sin(sine / 24)), Rad(0), Rad(0)), 0.15), RW.C0 = clerp(RW.C0, CF(1.5* Player_Size, 0.35 + 0.15 * Cos(sine / 12)* Player_Size, 0* Player_Size) * angles(Rad(-6 + 4.5 * Sin(sine / 12)), Rad(25 + 2.5 * Sin(sine / 12)), Rad(25 + 4.5 * Sin(sine / 12))), 0.1), LW.C0 = clerp(LW.C0, CF(-1.5* Player_Size, 0.35 + 0.15 * Cos(sine / 12)* Player_Size, 0* Player_Size) * angles(Rad(7 + 4.5 * Sin(sine / 12)), Rad(0 + 2.5 * Sin(sine / 12)), Rad(-13 - 4.5 * Sin(sine / 12))), 0.1), rootj.C0 = clerp(rootj.C0, RootCF * CF(0 - 0.04 * Sin(sine / 24) * Player_Size, 0 + 0.04 * Sin(sine / 12) * Player_Size, -15 + 0.05 * Player_Size * Cos(sine / 12)) * angles(Rad(0 - 2.5 * Sin(sine / 12)), Rad(0 - 2.5 * Sin(sine / 24)), Rad(0)), 0.15), MESH.Scale = MESH.Scale - Vector3.new(0.02,0,0.02), root.CFrame = CF(Vector3.new(mouse.Hit.p.X,root.Position.Y,mouse.Hit.p.Z),ORIGINPOS), MESH.Scale = MESH.Scale + Vector3.new(0.02,0,0.02), elseif key == 'p' and Mode == "Normal" then, elseif key == 'p' and Mode == "Chase" then, Sink(Hole.Position, Hole.Size.X/2.2 * MESH.Scale.X), local IDLEANIMATION = hum:LoadAnimation(ROBLOXIDLEANIMATION), local torvel = (root.Velocity * Vector3.new(1, 0, 1)).magnitude, hitfloor, posfloor = rayCast(root.Position, CFrame.new(root.Position, root.Position - Vector3.new(0, 1, 0)).lookVector, 4 * Player_Size, char), if equipped == true or equipped == false then, if 1 < root.Velocity.y and hitfloor == nil then, rootj.C0 = clerp(rootj.C0, RootCF * CF(0* Player_Size, 0* Player_Size, -0.1 + 0.1 * Cos(sine / 20)* Player_Size) * angles(Rad(-16), Rad(0), Rad(0)), 0.15), neck.C0 = clerp(neck.C0, necko* CF(0, 0, 0 + ((1* Player_Size) - 1)) * angles(Rad(0 - 2.5 * Sin(sine / 30)), Rad(0), Rad(0)), 0.3), RH.C0 = clerp(RH.C0, CF(1* Player_Size, -0.9 - 0.1 * Cos(sine / 20)* Player_Size, 0* Player_Size) * RHCF * angles(Rad(-6.5), Rad(0), Rad(0)), 0.15), LH.C0 = clerp(LH.C0, CF(-1* Player_Size, -.9 - 0.1 * Cos(sine / 20), -.5* Player_Size) * LHCF * angles(Rad(-6.5), Rad(0), Rad(0)), 0.15), RW.C0 = clerp(RW.C0, CF(1.5* Player_Size, 0.5 + 0.02 * Sin(sine / 20)* Player_Size, 0* Player_Size) * angles(Rad(25), Rad(-.6), Rad(13 + 4.5 * Sin(sine / 20))), 0.1), LW.C0 = clerp(LW.C0, CF(-1.5* Player_Size, 0.5 + 0.02 * Sin(sine / 20)* Player_Size, 0* Player_Size) * angles(Rad(25), Rad(-.6), Rad(-13 - 4.5 * Sin(sine / 20))), 0.1), elseif -1 > root.Velocity.y and hitfloor == nil then, rootj.C0 = clerp(rootj.C0, RootCF * CF(0* Player_Size, 0* Player_Size, -0.1 + 0.1 * Cos(sine / 20)* Player_Size) * angles(Rad(15), Rad(0), Rad(0)), 0.15), neck.C0 = clerp(neck.C0, necko* CF(0, 0, 0 + ((1* Player_Size) - 1)) * angles(Rad(10 - 2.5 * Sin(sine / 30)), Rad(0), Rad(0)), 0.3), RH.C0 = clerp(RH.C0, CF(1* Player_Size, -1 - 0.1 * Cos(sine / 20)* Player_Size, 0* Player_Size) * RHCF * angles(Rad(-9.5), Rad(0), Rad(20)), 0.15), LH.C0 = clerp(LH.C0, CF(-1* Player_Size, -.4 - 0.1 * Cos(sine / 20)* Player_Size, -.5* Player_Size) * LHCF * angles(Rad(-9.5), Rad(0), Rad(20)), 0.15), RW.C0 = clerp(RW.C0, CF(1.5* Player_Size, 0.5 + 0.02 * Sin(sine / 20)* Player_Size, 0* Player_Size) * angles(Rad(65), Rad(-.6), Rad(75 + 4.5 * Sin(sine / 20))), 0.1), LW.C0 = clerp(LW.C0, CF(-1.5* Player_Size, 0.5 + 0.02 * Sin(sine / 20)* Player_Size, 0* Player_Size) * angles(Rad(55), Rad(-.6), Rad(-75 - 4.5 * Sin(sine / 20))), 0.1), elseif torvel < 1 and hitfloor ~= nil then, tors.Neck.C0 = clerp(tors.Neck.C0, necko* CF(0, 0, 0 + ((1* Player_Size) - 1)) * angles(Rad(-6.5 * Cos(sine / 12)), Rad(10), Rad(0)), 0.3), RW.C0 = clerp(RW.C0, CF(1.5* Player_Size, 0.35 + 0.15 * Cos(sine / 12)* Player_Size, 0* Player_Size) * angles(Rad(-6 + 4.5 * Sin(sine / 12)), Rad(25 + 2.5 * Sin(sine / 12)), Rad(5)), 0.1), LW.C0 = clerp(LW.C0, CF(-1.5* Player_Size, 0.35 + 0.15 * Cos(sine / 12)* Player_Size, 0* Player_Size) * angles(Rad(7 + 4.5 * Sin(sine / 12)), Rad(0 + 2.5 * Sin(sine / 12)), Rad(-5)), 0.1), elseif (tors.Velocity).magnitude < 200 and hitfloor ~= nil then, rootj.C0 = clerp(rootj.C0, RootCF * CF(0* Player_Size, 0* Player_Size, -0.175 + 0.13 * Cos(sine / 3.5) + -Sin(sine / 3.5) / 7* Player_Size) * angles(Rad(3 - 2.5 * Cos(sine / 3.5)), Rad(0) - root.RotVelocity.Y / 75, Rad(10 * Cos(sine / 7))), 0.15), tors.Neck.C0 = clerp(tors.Neck.C0, necko* CF(0, 0, 0 + ((1* Player_Size) - 1)) * angles(Rad(0), Rad(0), Rad(0) - hed.RotVelocity.Y / 15), 0.3), RH.C0 = clerp(RH.C0, CF(1* Player_Size, -0.8 - 0.5 * Cos(sine / 7) / 2* Player_Size, 0.6 * Cos(sine / 7) / 2* Player_Size) * angles(Rad(-10 - 25 * Cos(sine / 7)) - rl.RotVelocity.Y / 75 + -Sin(sine / 7) / 2.5, Rad(90 - 15 * Cos(sine / 7)), Rad(0)) * angles(Rad(0 + 2 * Cos(sine / 7)), Rad(0), Rad(0)), 0.3), LH.C0 = clerp(LH.C0, CF(-1* Player_Size, -0.8 + 0.5 * Cos(sine / 7) / 2* Player_Size, -0.6 * Cos(sine / 7) / 2* Player_Size) * angles(Rad(-10 + 25 * Cos(sine / 7)) + ll.RotVelocity.Y / 75 + Sin(sine / 7) / 2.5, Rad(-90 - 15 * Cos(sine / 7)), Rad(0)) * angles(Rad(0 - 2 * Cos(sine / 7)), Rad(0), Rad(0)), 0.3), RW.C0 = clerp(RW.C0, CF(1.5* Player_Size, 0.5 + 0.05 * Sin(sine / 7)* Player_Size, 0* Player_Size) * angles(Rad(57) * Cos(sine / 7) , Rad(10 * Cos(sine / 7)), Rad(10) - ra.RotVelocity.Y / 75), 0.1), LW.C0 = clerp(LW.C0, CF(-1.5* Player_Size, 0.5 + 0.05 * Sin(sine / 7)* Player_Size, 0* Player_Size) * angles(Rad(-57) * Cos(sine / 7) , Rad(10 * Cos(sine / 7)) , Rad(-10) + la.RotVelocity.Y / 75), 0.1), rootj.C0 = clerp(rootj.C0, RootCF * CF(0* Player_Size, 0* Player_Size, -0.175 + 0.13 * Cos(sine / 3.5) + -Sin(sine / 3.5) / 7* Player_Size) * angles(Rad(3 - 2.5 * Cos(sine / 3.5)), Rad(0) - root.RotVelocity.Y / 75, Rad(17 + 8 * Cos(sine / 7))), 0.15), tors.Neck.C0 = clerp(tors.Neck.C0, necko* CF(0, 0, 0 + ((1* Player_Size) - 1)) * angles(Rad(0), Rad(0), Rad(-17) - hed.RotVelocity.Y / 15), 0.3), RH.C0 = clerp(RH.C0, CF(1* Player_Size, -0.8 - 0.5 * Cos(sine / 7) / 2* Player_Size, 0.6 * Cos(sine / 7) / 2* Player_Size) * angles(Rad(-15 - 5 * Cos(sine / 7)) - rl.RotVelocity.Y / 75 + -Sin(sine / 7) / 2.5, Rad(90 - 15 * Cos(sine / 7)), Rad(0)) * angles(Rad(0 + 2 * Cos(sine / 7)), Rad(0), Rad(0)), 0.3), LH.C0 = clerp(LH.C0, CF(-1* Player_Size, -0.8 + 0.5 * Cos(sine / 7) / 2* Player_Size, -0.6 * Cos(sine / 7) / 2* Player_Size) * angles(Rad(-15 + 5 * Cos(sine / 7)) + ll.RotVelocity.Y / 75 + Sin(sine / 7) / 2.5, Rad(-90 - 15 * Cos(sine / 7)), Rad(0)) * angles(Rad(0 - 2 * Cos(sine / 7)), Rad(0), Rad(0)), 0.3), RW.C0 = clerp(RW.C0, CF(1.5* Player_Size, 0.5 + 0.05 * Sin(sine / 7)* Player_Size, 0* Player_Size) * angles(Rad(90) , Rad(10 * Cos(sine / 7)), Rad(28) - ra.RotVelocity.Y / 75), 0.1), for _, c in pairs(char:GetDescendants()) do, if c.ClassName == "Part" and c.Name ~= "Eye" and c.Parent ~= Effects and c.Parent.Parent ~= Effects then, if c:FindFirstChildOfClass("SpecialMesh") then, c:FindFirstChildOfClass("SpecialMesh").TextureId = "", elseif c.ClassName == "Part" and c.Name == "Eye" then, elseif c.ClassName == "CharacterMesh" or c.Name == "Body Colors" then, elseif (c.ClassName == "Shirt" or c.ClassName == "Pants") and c.Name ~= "Cloth" then, Thing[1].CFrame = Thing[1].CFrame * CFrame.fromEulerAnglesXYZ(math.random(-50, 50), math.random(-50, 50), math.random(-50, 50)), Mesh.Scale = Mesh.Scale + Vector3.new(Thing[4], Thing[5], Thing[6]), Thing[1].Transparency = Thing[1].Transparency + Thing[3], Thing[1].CFrame = Thing[1].CFrame + Vector3.new(0, 0, 0), Thing[1].CFrame = Thing[1].CFrame * CFrame.fromEulerAnglesXYZ(math.random(-50, 50), math.random(-50, 50), math.random(-50, 50)) + Vector3.new(0, 0.15, 0), Thing[1].CFrame = Thing[1].CFrame * Vector3.new(0, 0.5, 0), Mesh.Scale = Mesh.Scale + Vector3.new(Thing[7], Thing[8], Thing[9]), Thing[4] = Thing[4] * CFrame.new(0, Thing[7], 0), Thing[1].CFrame = Thing[4] * CFrame.fromEulerAnglesXYZ(Thing[6], 0, 0), C# |

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