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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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