《概率论与数理统计》习题二答案
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《概率论与数理统计》习题及答案习题二1.一袋中有5只乒乓球,编号为1,2,3,4,5,在其中同时取3只,以X 表示取出的3只球中的最大号码,写出随机变量X 的分布律. 【解】353524353,4,51(3)0.1C 3(4)0.3C C (5)0.6C X P X P X P X ==========故所求分布律为2.设在15只同类型零件中有2只为次品,在其中取3次,每次任取1只,作不放回抽样,以X 表示取出的次品个数,求: (1) X 的分布律;(2) X 的分布函数并作图; (3)133{},{1},{1},{12}222P X P X P X P X ≤<≤≤≤<<.【解】313315122133151133150,1,2.C 22(0).C 35C C 12(1).C 35C 1(2).C 35X P X P X P X ========== 故X 的分布律为(2) 当x <0时,F (x )=P (X ≤x )=0当0≤x <1时,F (x )=P (X ≤x )=P (X =0)=2235当1≤x <2时,F (x )=P (X ≤x )=P (X =0)+P (X =1)=3435当x ≥2时,F (x )=P (X ≤x )=1 故X 的分布函数0,022,0135()34,12351,2x x F x x x <⎧⎪⎪≤<⎪=⎨⎪≤<⎪⎪≥⎩(3)1122()(),2235333434(1)()(1)02235353312(1)(1)(1)2235341(12)(2)(1)(2)10.3535P X F P X F F P X P X P X P X F F P X ≤==<≤=-=-=≤≤==+<≤=<<=--==--=3.射手向目标独立地进行了3次射击,每次击中率为0.8,求3次射击中击中目标的次数的分布律及分布函数,并求3次射击中至少击中2次的概率. 【解】设X 表示击中目标的次数.则X =0,1,2,3.31232233(0)(0.2)0.008(1)C 0.8(0.2)0.096(2)C (0.8)0.20.384(3)(0.8)0.512P X P X P X P X ============0,00.008,01()0.104,120.488,231,3x x F x x x x <⎧⎪≤<⎪⎪=≤<⎨⎪≤<⎪≥⎪⎩(2)(2)(3)0.896P X P X P X ≥==+==4.(1) 设随机变量X 的分布律为P {X =k }=!k akλ,其中k =0,1,2,…,λ>0为常数,试确定常数a . (2) 设随机变量X 的分布律为P {X =k }=a/N , k =1,2,…,N ,试确定常数a . 【解】(1) 由分布律的性质知1()e !kk k P X k a a k λλ∞∞======∑∑g故 ea λ-=(2) 由分布律的性质知111()NNk k aP X k a N======∑∑即 1a =.5.甲、乙两人投篮,投中的概率分别为0.6,0.7,今各投3次,求: (1) 两人投中次数相等的概率; (2) 甲比乙投中次数多的概率.【解】分别令X 、Y 表示甲、乙投中次数,则X~b (3,0.6),Y~b (3,0.7)(1) ()(0,0)(1,1)(2,2)P X Y P X Y P X Y P X Y ====+==+==+(3,3)P X Y ==33121233(0.4)(0.3)C 0.6(0.4)C 0.7(0.3)=++22223333C (0.6)0.4C (0.7)0.3(0.6)(0.7)+0.32076=(2) ()(1,0)(2,0)(3,0)P X Y P X Y P X Y P X Y >===+==+==+ (2,1)(3,1)(3,2)P X Y P X Y P X Y ==+==+==12322333C 0.6(0.4)(0.3)C (0.6)0.4(0.3)=++ 33221233(0.6)(0.3)C (0.6)0.4C 0.7(0.3)++ 31232233(0.6)C 0.7(0.3)(0.6)C (0.7)0.3+=0.2436.设某机场每天有200架飞机在此降落,任一飞机在某一时刻降落的概率设为0.02,且设各飞机降落是相互独立的.试问该机场需配备多少条跑道,才能保证某一时刻飞机需立即降落而没有空闲跑道的概率小于0.01(每条跑道只能允许一架飞机降落)?【解】设X 为某一时刻需立即降落的飞机数,则X ~b (200,0.02),设机场需配备N 条跑道,则有()0.01P X N ><即 2002002001C (0.02)(0.98)0.01k k kk N -=+<∑利用泊松近似2000.02 4.np λ==⨯=41e 4()0.01!kk N P X N k -∞=+≥<∑B查表得N ≥9.故机场至少应配备9条跑道.7.有一繁忙的汽车站,每天有大量汽车通过,设每辆车在一天的某时段出事故的概率为0.0001,在某天的该时段内有1000辆汽车通过,问出事故的次数不小于2的概率是多少(利用泊松定理)?【解】设X 表示出事故的次数,则X ~b (1000,0.0001)(2)1(0)(1)P X P X P X ≥=-=-=0.10.11e0.1e --=--⨯8.已知在五重贝努里试验中成功的次数X 满足P {X =1}=P {X =2},求概率P {X =4}. 【解】设在每次试验中成功的概率为p ,则1422355C (1)C (1)p p p p -=- 故 13p =所以 4451210(4)C ()33243P X ===. 9.设事件A 在每一次试验中发生的概率为0.3,当A 发生不少于3次时,指示灯发出信号, (1) 进行了5次独立试验,试求指示灯发出信号的概率; (2) 进行了7次独立试验,试求指示灯发出信号的概率. 【解】(1) 设X 表示5次独立试验中A 发生的次数,则X ~6(5,0.3)5553(3)C (0.3)(0.7)0.16308kk k k P X -=≥==∑(2) 令Y 表示7次独立试验中A 发生的次数,则Y~b (7,0.3)7773(3)C (0.3)(0.7)0.35293k k k k P Y -=≥==∑10.某公安局在长度为t 的时间间隔内收到的紧急呼救的次数X 服从参数为(1/2)t 的泊松分布,而与时间间隔起点无关(时间以小时计).(1) 求某一天中午12时至下午3时没收到呼救的概率;(2) 求某一天中午12时至下午5时至少收到1次呼救的概率. 【解】(1)32(0)eP X -== (2) 52(1)1(0)1eP X P X -≥=-==-11.设P {X =k }=kkkp p --22)1(C , k =0,1,2P {Y =m }=mmmp p --44)1(C , m =0,1,2,3,4分别为随机变量X ,Y 的概率分布,如果已知P {X ≥1}=59,试求P {Y ≥1}. 【解】因为5(1)9P X ≥=,故4(1)9P X <=. 而 2(1)(0)(1)P X P X p <===-故得 24(1),9p -=即 1.3p =从而 465(1)1(0)1(1)0.8024781P Y P Y p ≥=-==--=≈ 12.某教科书出版了2000册,因装订等原因造成错误的概率为0.001,试求在这2000册书中恰有5册错误的概率.【解】令X 为2000册书中错误的册数,则X~b (2000,0.001).利用泊松近似计算,20000.0012np λ==⨯=得 25e 2(5)0.00185!P X -=≈= 13.进行某种试验,成功的概率为34,失败的概率为14.以X 表示试验首次成功所需试验的次数,试写出X 的分布律,并计算X 取偶数的概率. 【解】1,2,,,X k =L L113()()44k P X k -==(2)(4)(2)P X P X P X k =+=++=+L L321131313()()444444k -=++++g L L213141451()4==-g 14.有2500名同一年龄和同社会阶层的人参加了保险公司的人寿保险.在一年中每个人死亡的概率为0.002,每个参加保险的人在1月1日须交12元保险费,而在死亡时家属可从保险公司领取2000元赔偿金.求: (1) 保险公司亏本的概率;(2) 保险公司获利分别不少于10000元、20000元的概率. 【解】以“年”为单位来考虑.(1) 在1月1日,保险公司总收入为2500×12=30000元. 设1年中死亡人数为X ,则X~b (2500,0.002),则所求概率为(200030000)(15)1(14)P X P X P X >=>=-≤由于n 很大,p 很小,λ=np =5,故用泊松近似,有514e 5(15)10.000069!kk P X k -=>≈-≈∑(2) P (保险公司获利不少于10000)(30000200010000)(10)P X P X =-≥=≤510e 50.986305!kk k -=≈≈∑即保险公司获利不少于10000元的概率在98%以上P (保险公司获利不少于20000)(30000200020000)(5)P X P X =-≥=≤55e 50.615961!kk k -=≈≈∑即保险公司获利不少于20000元的概率约为62%15.已知随机变量X 的密度函数为f (x )=A e -|x |, -∞<x <+∞,求:(1)A 值;(2)P {0<X <1}; (3) F (x ). 【解】(1) 由()d 1f x x ∞-∞=⎰得||01e d 2e d 2x x A x A x A ∞∞---∞===⎰⎰故 12A =. (2) 11011(01)e d (1e )22x p X x --<<==-⎰(3) 当x <0时,11()e d e 22x x x F x x -∞==⎰当x ≥0时,0||0111()e d e d e d 222xx x xx F x x x x ---∞-∞==+⎰⎰⎰11e 2x-=-故 1e ,02()11e 02xx x F x x -⎧<⎪⎪=⎨⎪-≥⎪⎩16.设某种仪器内装有三只同样的电子管,电子管使用寿命X 的密度函数为f (x )=⎪⎩⎪⎨⎧<≥.100,0,100,1002x x x求:(1) 在开始150小时内没有电子管损坏的概率; (2) 在这段时间内有一只电子管损坏的概率; (3) F (x ). 【解】(1) 15021001001(150)d .3P X x x ≤==⎰ 33128[(150)]()327p P X =>==(2) 1223124C ()339p ==(3) 当x <100时F (x )=0当x ≥100时()()d xF x f t t -∞=⎰100100()d ()d x f t t f t t -∞=+⎰⎰2100100100d 1xt t x==-⎰ 故 1001,100()0,0x F x xx ⎧-≥⎪=⎨⎪<⎩ 17.在区间[0,a ]上任意投掷一个质点,以X 表示这质点的坐标,设这质点落在[0,a ]中任意小区间内的概率与这小区间长度成正比例,试求X 的分布函数. 【解】 由题意知X ~∪[0,a ],密度函数为1,0()0,x af x a⎧≤≤⎪=⎨⎪⎩其他 故当x <0时F (x )=0 当0≤x ≤a 时01()()d ()d d xx xxF x f t t f t t t a a-∞====⎰⎰⎰当x >a 时,F (x )=1 即分布函数0,0(),01,x x F x x a a x a<⎧⎪⎪=≤≤⎨⎪>⎪⎩ 18.设随机变量X 在[2,5]上服从均匀分布.现对X 进行三次独立观测,求至少有两次的观测值大于3的概率. 【解】X ~U [2,5],即1,25()30,x f x ⎧≤≤⎪=⎨⎪⎩其他 5312(3)d 33P X x >==⎰故所求概率为22333321220C ()C ()33327p =+= 19.设顾客在某银行的窗口等待服务的时间X (以分钟计)服从指数分布1()5E .某顾客在窗口等待服务,若超过10分钟他就离开.他一个月要到银行5次,以Y 表示一个月内他未等到服务而离开窗口的次数,试写出Y 的分布律,并求P {Y ≥1}. 【解】依题意知1~()5X E ,即其密度函数为51e ,0()50,xx f x -⎧>⎪=⎨⎪≤⎩x 0该顾客未等到服务而离开的概率为25101(10)e d e 5x P X x -∞->==⎰2~(5,e )Y b -,即其分布律为225525()C (e )(1e ),0,1,2,3,4,5(1)1(0)1(1e )0.5167kk k P Y k k P Y P Y ----==-=≥=-==--=20.某人乘汽车去火车站乘火车,有两条路可走.第一条路程较短但交通拥挤,所需时间X 服从N (40,102);第二条路程较长,但阻塞少,所需时间X 服从N (50,42). (1) 若动身时离火车开车只有1小时,问应走哪条路能乘上火车的把握大些? (2) 又若离火车开车时间只有45分钟,问应走哪条路赶上火车把握大些? 【解】(1) 若走第一条路,X~N (40,102),则406040(60)(2)0.977271010x P X P Φ--⎛⎫<=<== ⎪⎝⎭若走第二条路,X~N (50,42),则506050(60)(2.5)0.993844X P X P Φ--⎛⎫<=<== ⎪⎝⎭++故走第二条路乘上火车的把握大些.(2) 若X~N (40,102),则404540(45)(0.5)0.69151010X P X P Φ--⎛⎫<=<== ⎪⎝⎭若X~N (50,42),则504550(45)( 1.25)44X P X P Φ--⎛⎫<=<=- ⎪⎝⎭1(1.25)0.1056Φ=-= 故走第一条路乘上火车的把握大些.21.设X ~N (3,22),(1) 求P {2<X ≤5},P {-4<X ≤10},P {|X |>2},P {X >3}; (2) 确定c 使P {X >c }=P {X ≤c }. 【解】(1) 23353(25)222X P X P ---⎛⎫<≤=<≤⎪⎝⎭11(1)(1)1220.841310.69150.5328ΦΦΦΦ⎛⎫⎛⎫=--=-+ ⎪ ⎪⎝⎭⎝⎭=-+=433103(410)222X P X P ----⎛⎫-<≤=<≤ ⎪⎝⎭770.999622ΦΦ⎛⎫⎛⎫=--=⎪ ⎪⎝⎭⎝⎭(||2)(2)(2)P X P X P X >=>+<-323323222215151122220.691510.99380.6977X X P P ΦΦΦΦ-----⎛⎫⎛⎫=>+< ⎪ ⎪⎝⎭⎝⎭⎛⎫⎛⎫⎛⎫⎛⎫=--+-=+- ⎪ ⎪ ⎪ ⎪⎝⎭⎝⎭⎝⎭⎝⎭=+-=333(3)()1(0)0.522X P X P Φ->=>=-=- (2) c=322.由某机器生产的螺栓长度(cm )X ~N (10.05,0.062),规定长度在10.05±0.12内为合格品,求一螺栓为不合格品的概率. 【解】10.050.12(|10.05|0.12)0.060.06X P X P ⎛-⎫->=>⎪⎝⎭1(2)(2)2[1(2)]0.0456ΦΦΦ=-+-=-=23.一工厂生产的电子管寿命X (小时)服从正态分布N (160,σ2),若要求P {120<X ≤200=≥0.8,允许σ最大不超过多少? 【解】120160160200160(120200)X P X P σσσ---⎛⎫<≤=<≤⎪⎝⎭ 404040210.8ΦΦΦσσσ-⎛⎫⎛⎫⎛⎫=-=-≥⎪ ⎪ ⎪⎝⎭⎝⎭⎝⎭故4031.251.29σ≤= 24.设随机变量X 分布函数为F (x )=e ,0,(0),00.xt A B x ,x λ-⎧+≥>⎨<⎩(1) 求常数A ,B ;(2) 求P {X ≤2},P {X >3}; (3) 求分布密度f (x ).【解】(1)由00lim ()1lim ()lim ()x x x F x F x F x →+∞→+→-=⎧⎪⎨=⎪⎩得11A B =⎧⎨=-⎩(2) 2(2)(2)1eP X F λ-≤==-33(3)1(3)1(1e)e P X F λλ-->=-=--=(3) e ,0()()0,0x x f x F x x λλ-⎧≥'==⎨<⎩25.设随机变量X 的概率密度为f (x )=⎪⎩⎪⎨⎧<≤-<≤.,0,21,2,10,其他x x x x 求X 的分布函数F (x ),并画出f (x )及F (x ).【解】当x <0时F (x )=0当0≤x <1时0()()d ()d ()d xxF x f t t f t t f t t -∞-∞==+⎰⎰⎰20d 2xx t t ==⎰当1≤x<2时()()d xF x f t t -∞=⎰1011122()d ()d ()d d (2)d 132222212xx f t t f t t f t tt t t tx x x x -∞==+=+-=+--=-+-⎰⎰⎰⎰⎰当x ≥2时()()d 1xF x f t t -∞==⎰故 220,0,012()21,1221,2x x x F x x x x x <⎧⎪⎪≤<⎪=⎨⎪-+-≤<⎪⎪≥⎩26.设随机变量X 的密度函数为(1) f (x )=a e -|x |,λ>0;(2) f (x )=⎪⎩⎪⎨⎧<≤<<.,0,21,1,10,2其他x xx bx 试确定常数a ,b ,并求其分布函数F (x ). 【解】(1) 由()d 1f x x ∞-∞=⎰知||21ed 2e d x x aa x a x λλλ∞∞---∞===⎰⎰故 2a λ=即密度函数为 e ,02()e 02xx x f x x λλλλ-⎧>⎪⎪=⎨⎪≤⎪⎩当x ≤0时1()()d e d e 22xxx x F x f x x x λλλ-∞-∞===⎰⎰当x >0时0()()d e d e d 22xxxx F x f x x x x λλλλ--∞-∞==+⎰⎰⎰11e 2x λ-=-故其分布函数11e ,02()1e ,02xx x F x x λλ-⎧->⎪⎪=⎨⎪≤⎪⎩(2) 由12201111()d d d 22b f x x bx x x x ∞-∞==+=+⎰⎰⎰得 b =1即X 的密度函数为2,011(),120,x x f x x x<<⎧⎪⎪=≤<⎨⎪⎪⎩其他当x ≤0时F (x )=0 当0<x <1时0()()d ()d ()d xxF x f x x f x x f x x -∞-∞==+⎰⎰⎰2d 2xx x x ==⎰当1≤x <2时01211()()d 0d d d x xF x f x x x x x x x -∞-∞==++⎰⎰⎰⎰312x=- 当x ≥2时F (x )=1 故其分布函数为20,0,012()31,1221,2x x x F x x x x ≤⎧⎪⎪<<⎪=⎨⎪-≤<⎪⎪≥⎩27.求标准正态分布的上α分位点, (1)α=0.01,求z α; (2)α=0.003,求z α,/2z α. 【解】(1) ()0.01P X z α>=即 1()0.01z αΦ-= 即 ()0.09z αΦ= 故 2.33z α= (2) 由()0.003P X z α>=得1()0.003z αΦ-=即 ()0.997z αΦ= 查表得 2.75z α= 由/2()0.0015P X z α>=得/21()0.0015z α-Φ=即 /2()0.9985z αΦ= 查表得 /2 2.96z α=求Y =X 的分布律.【解】Y 可取的值为0,1,4,91(0)(0)5117(1)(1)(1)615301(4)(2)511(9)(3)30P Y P X P Y P X P X P Y P X P Y P X =======-+==+====-=====29.设P {X =k }=(2)k, k =1,2,…,令 1,1,.X Y X ⎧=⎨-⎩当取偶数时当取奇数时求随机变量X 的函数Y 的分布律.【解】(1)(2)(4)(2)P Y P X P X P X k ===+=++=+L L242111()()()222111()/(1)443k =++++=-=L L2(1)1(1)3P Y P Y =-=-==30.设X ~N (0,1).(1) 求Y =e X 的概率密度; (2) 求Y =2X 2+1的概率密度; (3) 求Y =|X |的概率密度.【解】(1) 当y ≤0时,()()0Y F y P Y y =≤=当y >0时,()()(e )(ln )xY F y P Y y P y P X y =≤=≤=≤ln ()d yX f x x -∞=⎰故2/2ln d ()1()(ln ),0d y Y Y x F y f y f y y y y -===> (2)2(211)1P Y X =+≥=当y ≤1时()()0Y F y P Y y =≤=当y >1时2()()(21)Y F y P Y y P X y =≤=+≤212y P X P X ⎛-⎛⎫=≤=≤≤ ⎪ ⎝⎭⎝()d X f x x =故d ()()d Y Y XX f y F y f f y ⎤⎛==+⎥ ⎥⎝⎦(1)/4,1y y --=>(3) (0)1P Y ≥=当y ≤0时()()0Y F y P Y y =≤=当y >0时()(||)()Y F y P X y P y X y =≤=-≤≤ ()d yX yf x x -=⎰故d()()()()d Y Y X X f y F y f y f y y==+-2/2,0y y -=> 31.设随机变量X ~U (0,1),试求:(1) Y =e X 的分布函数及密度函数; (2) Z =-2ln X 的分布函数及密度函数. 【解】(1) (01)1P X <<=故 (1e e)1XP Y <=<= 当1y ≤时()()0Y F y P Y y =≤=当1<y <e 时()(e )(ln )XY F y P y P X y =≤=≤ln 0d ln yx y ==⎰当y ≥e 时()(e )1XY F y P y =≤=即分布函数0,1()ln ,1e 1,e Y y F y y y y ≤⎧⎪=<<⎨⎪≥⎩故Y 的密度函数为11e ,()0,Y y y f y ⎧<<⎪=⎨⎪⎩其他(2) 由P (0<X <1)=1知(0)1P Z >=当z ≤0时,()()0Z F z P Z z =≤=当z >0时,()()(2ln )Z F z P Z z P X z =≤=-≤/2(ln )(e)2z z P X P X -=≤-=≥/21/2ed 1e z z x --==-⎰即分布函数-/20,0()1-e ,Z z z F z z ≤⎧=⎨>⎩0故Z 的密度函数为/21e ,0()20,z Z z f z z -⎧>⎪=⎨⎪≤⎩032.设随机变量X 的密度函数为f (x )=22,0π,π0,.xx ⎧<<⎪⎨⎪⎩其他试求Y =sin X 的密度函数. 【解】(01)1P Y <<=当y ≤0时,()()0Y F y P Y y =≤=当0<y <1时,()()(sin )Y F y P Y y P X y =≤=≤(0arcsin )(πarcsin π)P X y P y X =<≤+-≤<arcsin π220πarcsin 22d d ππyy x x x x -=+⎰⎰222211arcsin 1πarcsin ππy y =+--()()2arcsin πy =当y ≥1时,()1Y F y = 故Y 的密度函数为201π()0,Y y f y ⎧<<⎪=⎨⎪⎩其他 33.设随机变量X 的分布函数如下:⎪⎩⎪⎨⎧≥<+=.)3(,)2(,)1(,11)(2x x x x F试填上(1),(2),(3)项.【解】由lim ()1x F x →∞=知②填1。
第二章练习题(答案)一、单项选择题1. 已知连续型随机变量X 的分布函数为3.若函数f(x)是某随机变量X 的概率密度函数,则一定成立的是(C ) A. f(x)的定义域是[0, 1] B. f(x)的值域为[0,1]4.设X - N(l,l),密度函数为f(x),则有(C )5.设随机变量X ~ N (/M6), Y 〜N 仏25),记 P1 = P (X <//-4), p 2 = P (Y> “ + 5), 则正确的是(A)对任意“,均有Pi = p 2 (B)对任意“,均有Pi v p?(c)对任意〃,均有Pl > Pi (D )只对“的个别值有P1 = P26.设随机变量x 〜N(10^s 2) 9 则随着s 的增加 P{|X- 10|< s} ( C )F(x) =o,kx+b 、 x<0 0 < x< x>则常数&和〃分别为 (A) k = —b = 0龙, (B) k = 0,b 丄 (C) k = —,b = 0 (D) k = 0,b= 1 n In In2.下列函数哪个是某随机变量的分布函数(A ) z 7fl -cosx ; 2 0, f sinx,A. f(x)』沁,xnO C. f (x)= a (a>0);B. f (x)1, x < 0[cosx, — - < X < - 1 2 2 D. f (x) 其他 0, 0 < X < 7T 其他 —-< x < - 2 2 其他 C- f(x)非负D. f (x)在(-叫+00)内连续A. P {X <O }=P {X >O }B. f(x)= f(-x)C. p{x<l}=p{x>l} D ・ F(x) = l-F(-x)A.递增B.递减C.不变D.不能确定7.设片3与E(力分别为随机变量X、兀的分布函数,为使F(沪aF©—胡(力是某一随机变量的分布函数,在下列给定的多组数值中应取(A )&设心与人是任意两个相互独立的连续型随机变量,它们的概率密度函数分别为ft (力和f2(力,分布函数分别为川力和E (力,则(A)亡(力+負(力必为某个随机变量的概率密度;(B) f心)临(力必为某个随机变量的概率密度;(C)川力+£(力必为某个随机变量的分布函数;(D)FAx)吠(力必为某个随机变量的分布函数。
《概率论与数理统计》习题及答案第 二 章1.假设一批产品中一、二、三等品各占60%,30%,10%,从中任取一件,发现它不是三等品,求它是一等品的概率.解 设i A =‘任取一件是i 等品’ 1,2,3i =,所求概率为13133()(|)()P A A P A A P A =,因为 312A A A =+所以 312()()()0.60.30.9P A P A P A =+=+=131()()0.6P A A P A ==故1362(|)93P A A ==. 2.设10件产品中有4件不合格品,从中任取两件,已知所取两件中有一件是不合格品,求另一件也是不合格品的概率.解 设A =‘所取两件中有一件是不合格品’i B =‘所取两件中恰有i 件不合格’ 1, 2.i = 则12A B B =+11246412221010()()()C C C P A P B P B C C =+=+, 所求概率为2242112464()1(|)()5P B C P B A P A C C C ===+. 3.袋中有5只白球6只黑球,从袋中一次取出3个球,发现都是同一颜色,求这颜色是黑色的概率.解 设A =‘发现是同一颜色’,B =‘全是白色’,C =‘全是黑色’,则 A B C =+, 所求概率为336113333611511/()()2(|)()()//3C C P AC P C P C A P A P B C C C C C ====++ 4.从52张朴克牌中任意抽取5张,求在至少有3张黑桃的条件下,5张都是黑桃的概率.解 设A =‘至少有3张黑桃’,i B =‘5张中恰有i 张黑桃’,3,4,5i =, 则345A B B B =++, 所求概率为555345()()(|)()()P AB P B P B A P A P B B B ==++51332415133********1686C C C C C C ==++. 5.设()0.5,()0.6,(|)0.8P A P B P B A ===求()P A B 与()P B A -.解 ()()()() 1.1()(|) 1.10P AB P A P B P A B P A P B A =+-=-=-= ()()()0.60.40.2P B A P B P AB -=-=-=.6.甲袋中有3个白球2个黑球,乙袋中有4个白球4个黑球,今从甲袋中任取2球放入乙袋,再从乙袋中任取一球,求该球是白球的概率。
1. 试分别给出随机变量的可能取值为可列、有限的实例.解 用X 表示一个电话交换台每小时收到呼唤的次数,X 的全部可能取值为可列的 0,1,2,3,…,;用Y 表示某人掷一枚骰子出现的点数,Y 的全部可能取值为有限个 1,2,3,4,5,6 ;2. 试给出随机变量的可能取值至少充满一个实数区间的实例.解 用X 表示某灯泡厂生产的灯泡寿命(以小时记),X 的全部可能取值为区间 (0,+∞)3. 设随机变量X 的分布函数()F x 为()F x = 2 1, >20, 2A x xx ⎧-⎪⎨⎪≤⎩ 确定常数A 的值,计算(04)P X ≤≤.解 由(20)(2),F F +=可得10, =44AA -= (04)(04)(4)(0)0.75P X P X F F ≤≤=<≤=-=.4.试讨论:A 、B 取何值时函数()arctan3xF x A B =+ 是分布函数. 解 由分布函数的性质,有()()0,1F F -∞=+∞=,可得0,211,,21,2A B A B A B πππ⎧⎛⎫+-= ⎪⎪⎪⎝⎭⇒==⎨⎛⎫⎪+= ⎪⎪⎝⎭⎩于是()11arctan ,.23xF x x π=+-∞<<+∞1.设10个零件中有3个不合格. 现任取一个使用,若取到不合格品,则丢弃重新抽取一个,试求取到合格品之前取出的不合格品数X 的概率分布.解 由题意知,X 的取值可以是0,1,2,3.而X 取各个值的概率为{}{}70,103771,10930P X P X ====⨯= {}{}32772,1098120321713.10987120P X P X ==⨯⨯===⨯⨯⨯= 因此X 的概率分布为012 377711030120120X ⎡⎤⎢⎥⎢⎥⎣⎦2.从分别标有号码1 ,2 ,… ,7的七张卡片中任意取两张, 求余下的卡片中最大号码的概率分布.解 设X 为余下的卡片的最大号码 ,则X 的可能取值为5、6、7,且1{5}21P X ==5{6}21P X ==15{7}21P X ==即所求分布为567 1515212121X ⎡⎤⎢⎥⎢⎥⎣⎦ 3.某人有n 把外形相似的钥匙,其中只有1把能打开房门,但他不知道是哪一把,只好逐把试开.求此人直至将门打开所需的试开次数的概率分布.解 设此人将门打开所需的试开次数为X ,则X 的取值为1,2,3,...,k n =,事件{}{}1X k k k ==-前次未打开,第次才打开,且{}11P X n ==, {}11121n P X n n n-==⋅=-,… …,{}()121112111,2,....,n n n k P X k n n n k n k k n n ---+==⋅⋅⋅⋅--+-+== 故所需试开次数的分布为12~111X n nn ⎡⎤⎢⎥⎢⎥⎣⎦ ... n .... 4.随机变量X 只取1 、2 、3共三个值,并且取各个值的概率不相等且组成等差数列,求X 的概率分布.解 设{}{}{}1,2,3P X a P X b P X c ======,则由题意有1a b c c b b a ++=⎧⎨-=-⎩解之得2313a c b ⎧+=⎪⎪⎨⎪=⎪⎩设三个概率的公差为d ,则11,33a d c d =-=+,即X 的概率分布为 12 3111333X d d⎡⎤⎢⎥⎢⎥-+⎢⎥⎣⎦,103d << 5.设随机变量X 的全部可能取值为1 ,2 ,… ,n ,且()P X k = 与k 成正比,求X 的概率分布.解 由题意,得{}() 1,2,,k P X k p ck k n ====其中c 是大于0的待定系数.由11nkk p==∑,有12....1nk k cp c c n c ==+++=∑ 即()112n n c +=,解之得 ()21c n n =+.把()21c n n =+代入k p ,可得到X 的概率分布为{}()2,1,2,...,.1kP X k k n n n ===+6.一汽车沿街道行驶时须通过三个均设有红绿灯的路口.设各信号灯相互独立且红绿两种信号显示的时间相同,求汽车未遇红灯通过的路口数的概率分布.解 设汽车未遇红灯通过的路口数为X ,则X 的可能值为0,1,2,3.以()1,2,3i A i =表示事件“汽车在第i 个路口首次遇到红灯”,则123,,A A A 相互独立,且()()1,1,2,32i i P A P A i ===.对0,1,2,3k =,有{}()1102P X P A ==={}()()()1212211142P X P A A P A P A ===== {}()123311282P X P A A A ==== {}()123311382P X P A A A ==== 所以汽车未遇红灯通过的路口数的概率分布为012 311112488X ⎡⎤⎢⎥⎢⎥⎣⎦7.将一颗骰子连掷若干次,直至掷出的点数之和超过3为止.求掷骰子次数的概率分布.解 设掷骰子次数为X ,则X 可能取值为1,2,3,4,且31{1}62P X === 141515{2}6666612P X ==⨯+⨯+=;115111117{3}6666666216P X ==⨯⨯+⨯+⨯=; 1111{4}666216P X ==⨯⨯=所以掷骰子次数X 的概率分布为123 415171212216216X ⎡⎤⎢⎥⎢⎥⎣⎦ 8.设X 的概率分布为试求(1)X 的分布函数并作出其图形;(2) 计算{11}P X -≤≤ ,{0 1.5}P X ≤≤ ,{2}P X ≤ . 解(1)由公式 (){}()k kx xF X P X x p x ≤=≤=-∞<<+∞∑,得()0,00.2,010.5,120.6,231,3x x F X x x x <⎧⎪≤<⎪⎪=≤<⎨⎪≤<⎪≥⎪⎩(2) {}11(1)(10)0.500.5P X F F -≤≤=---=-= {}0 1.5(1.5)(00)0.500.5P X F F ≤≤=--=-={}2(2)0.6P X F ≤==9.设随机变量X 的分布函数为010.210()0.70212x x F x x x <-⎧⎪-≤<⎪=⎨≤<⎪⎪≥⎩,,,,试求(1) 求X 的概率分布;(2) 计算1322P X ⎧⎫-<≤⎨⎬⎩⎭,{1}P X ≤- ,{03}P X ≤< ,{1|0}P X X ≤≥解 (1)对于离散型随机变量,有{}()()0P X k F k F k ==--,因此,随机变量X 的概率分布为10 2 0.20.50.3X -⎡⎤⎢⎥⎣⎦ (2) 由分布函数计算概率,得13310.52222P X F F ⎧⎫⎛⎫⎛⎫-<≤=--=⎨⎬ ⎪ ⎪⎩⎭⎝⎭⎝⎭;{}()110.2P X F ≤-=-=;{}()0330(00)10.20.8P X F F ≤<=---=-=; {}{}{}{}{}1,0100010.50.625.00.8P X X P X X P X P X P X ≤≥≤≥=≥≤≤===≥10.已知随机变量X 服从0—1分布,并且{0}P X ≤=0.2,求X 的概率分布 . 解 X 只取0与1两个值,{0}P X =={0}P X ≤-{0}P X <=0.2,{1}1{0}0.8P X P X ==-==11.已知{}P X n == nP ,n =1,2,3,⋯,求P 的值 .解 因为1{}1,n P X n ∞===∑ 有 11=,1n n pp p∞==-∑解此方程,得0.5p =. 12.商店里有5名售货员独立地售货.已知每名售货员每小时中累计有15分钟要用台秤.(1) 求在同一时刻需用台秤的人数的概率分布;(2) 若商店里只有两台台秤,求因台秤太少而令顾客等候的概率.解 (1) 由题意知,每名售货员在某一时刻使用台秤的概率为150.2560p ==, 设在同一时刻需用台秤的人数为X , 则()~5,0.25X B , 所以{}550.250.75(0,1,2,3,4,5)kk k P X k C k -===(2) 因台秤太少而令顾客等候的概率为{}{}55553320.250.75k k k k k P X P X k C -==>===∑∑332445550.250.750.250.750.250.1035C C =++≈13.保险行业在全国举行羽毛球对抗赛,该行业形成一个羽毛球总队,该队是由各地区的部分队员形成.根据以往的比赛知,总队羽毛球队实力较甲地区羽毛球队强,但同一队中队员之间实力相同,当一个总队运功员与一个甲地区运动员比赛时,总队运动员获胜的概率为0.6,现在总队、甲队双方商量对抗赛的方式,提出三种方案:(1)双方各出3人; (2)双方各出5人; (3)双方各出7人.3种方案中得胜人数多的一方为胜利.问:对甲队来说,哪种方案有利?解 设以上三种方案中第i 种方案甲队得胜人数为(1,2,3),i X i =则上述3种方案中,甲队胜利的概率为(1){}331322(0.4)(0.6)0.352k k k k P X C -=≥=≈∑(2){}552533(0.4)(0.6)0.317k k k k P X C -=≥=≈∑(3){}773744(0.4)(0.6)0.290kk k k P X C -=≥=≈∑因此第一种方案对甲队最为有利.这和我们的直觉是一致的。
习题2.11.设随机变量X 的分布律为P{X=k}=,k=1, 2,N,求常数a.aN 解:由分布律的性质=1得∑∞k =1p kP(X=1) + P(X=2) +…..+ P(X=N) =1N*=1,即a=1aN 2.设随机变量X 只能取-1,0,1,2这4个值,且取这4个值相应的概率依次为,,求常数c.12c 34c ,58c ,716c 解:12c +34c +58c +716c =1C=37163.将一枚骰子连掷两次,以X 表示两次所得的点数之和,以Y 表示两次出现的最小点数,分别求X,Y 的分布律.注: 可知X 为从2到12的所有整数值.可以知道每次投完都会出现一种组合情况,其概率皆为(1/6)*(1/6)=1/36,故P(X=2)=(1/6)*(1/6)=1/36(第一次和第二次都是1)P(X=3)=2*(1/36)=1/18(两种组合(1,2)(2,1))P(X=4)=3*(1/36)=1/12(三种组合(1,3)(3,1)(2,2))P(X=5)=4*(1/36)=1/9(四种组合(1,4)(4,1)(2,3)(3,2))P(X=6)=5*(1/36=5/36(五种组合(1,5)(5,1)(2,4)(4,2)(3,3))P(X=7)=6*(1/36)=1/6(这里就不写了,应该明白吧)P(X=8)=5*(1/36)=5/36P(X=9)=4*(1/36)=1/9P(X=10)=3*(1/36)=1/12P(X=11)=2*(1/36)=1/18P(X=12)=1*(1/36)=1/36以上是X 的分布律投两次最小的点数可以是1到6里任意一个整数,即Y 的取值了.P(Y=1)=(1/6)*1=1/6 一个要是1,另一个可以是任何值P(Y=2)=(1/6)*(5/6)=5/36 一个是2,另一个是大于等于2的5个值P(Y=3)=(1/6)*(4/6)=1/9 一个是3,另一个是大于等于3的4个值P(Y=4)=(1/6)*(3/6)=1/12一个是4,另一个是大于等于4的3个值P(Y=5)=(1/6)*(2/6)=1/18一个是5,另一个是大于等于5的2个值P(Y=6)=(1/6)*(1/6)=1/36一个是6,另一个只能是6以上是Y 的分布律了.4.设在15个同类型的零件中有2个是次品,从中任取3次,每次取一个,取后不放回.以X 表示取出的次品的个数,求X 的分布律.解:X=0,1,2X=0时,P=C 313C 315=2235X=1时,P=C 213∗C 12C 315=1235X=2时,P=C 013∗C 22C 315=1355.抛掷一枚质地不均匀的硬币,每次出现正面的概率为,连续抛掷8次,以X 表示出现正面的次数,求23X 的分布律.解:P{X=k}=, k=1, 2, 3, 8C k 8(23)k (13)8‒k 6.设离散型随机变量X 的分布律为X -123P141214解:求P {X ≤12}, P {23<X ≤52}, P {2≤X ≤3}, P {2≤X <3}P {X ≤12}=14P {23<X ≤52}=12P {2≤X ≤3}=12+14=34P {2≤X <3}=127.设事件A 在每一次试验中发生的概率分别为0.3.当A 发生不少于3次时,指示灯发出信号,求:(1)进行5次独立试验,求指示灯发出信号的概率;(2)进行7次独立试验,求指示灯发出信号的概率.解:设X 为事件A 发生的次数,(1)P {X ≥3}=P {X =3}+P {X =4}+P {X =5}=C 35(0.3)3(0.7)2+C 45(0.3)4(0.7)1+C 55(0.3)5(0.7)0=0.1323+0.02835+0.00243=0.163(2) P{X≥3}=1‒P{X=0}‒P{X=1}‒P{X=2}=1‒C07(0.3)0(0.7)7‒C17(0.3)1(0.7)6‒C27(0.3)2(0.7)5=1‒0.0824‒0.2471‒0.3177=0.3538.甲乙两人投篮,投中的概率分别为0.6,0.7.现各投3次,求两人投中次数相等的概率.解:设X表示各自投中的次数P{X=0}=C03(0.6)0(0.4)3∗C03(0.7)0(0.3)3=0.064∗0.027=0.002P{X=1}=C13(0.6)1(0.4)2∗C13(0.7)1(0.3)2=0.288∗0.189=0.054P{X=2}=C23(0.6)2(0.4)1∗C23(0.7)2(0.3)1=0.432∗0.441=0.191P{X=3}=C33(0.6)3(0.4)0∗C33(0.7)3(0.3)0=0.216∗0.343=0.074投中次数相等的概率= P{X=0}+P{X=1}+P{X=2}+P{X=3}=0.3219.有一繁忙的汽车站,每天有大量的汽车经过,设每辆汽车在一天的某段时间内出事故的概率为0.0001.在某天的该段时间内有1000辆汽车经过,问出事故的次数不小于2的概率是多少?(利用泊松分布定理计算)解:设X表示该段时间出事故的次数,则X~B(1000,0.0001),用泊松定理近似计算=1000*0.0001=0.1λP{X≥2}=1‒P{X=0}‒P{X=1}=1‒C01000(0.0001)0(0.9999)1000‒C11000(0.0001)1(0.9999)999=1‒e‒0.1‒0.1e‒0.1=1‒0.9048‒0.0905=0.004710.一电话交换台每分钟收到的呼唤次数服从参数为4的泊松分别,求:(1)每分钟恰有8次呼唤的概率;(2)每分钟的呼唤次数大于10的概率.解: (1) P{X=8}=P{X≥8}‒P{X≥9}=0.051134‒0.021363=0.029771(2) P{X>10}=P{X≥11}=0.002840习题2.21.求0-1分布的分布函数.解:F(x)={0, x<0q, 0≤x<11,x≥12.设离散型随机变量X的分布律为:3 OF 18X -123P0.250.50.25求X 的分布函数,以及概率,.P {1.5<X ≤2.5} P {X ≥0.5}解:當x <‒1時,F (x )=P {X ≤x }=0;當‒1≤x <2時,F (x )=P {X ≤x }=P {X =‒1}=0.25;當2≤x <3時,F (x )=P {X ≤x }=P {X =‒1}+P {X =2}=0.25+0.5=0.75;當x ≥3時,F (x )=P {X ≤x }=P {X =‒1}+P {X =2}+P {X =3}=0.25+0.5+0.25=1;则X 的分布函数F(x)为:F (x )={0, x <‒10.25, ‒1≤x <20.75, 2≤x <31, x ≥3P {1.5<X ≤2.5}=F (2.5)‒F (1.5)=0.75‒0.25=0.5 P {X ≥0.5}=1‒F (0.5)=1‒0.25=0.753.设F 1(x),F 2(x)分别为随机变量X 1和X 2的分布函数,且F(x)=a F 1(x)-bF 2(x)也是某一随机变量的分布函数,证明a-b=1.证: F (+∞)=aF (+∞)‒bF (+∞)=1,即a ‒b =14.如下4个函数,哪个是随机变量的分布函数:(1)F 1(x )={0, x <‒212, ‒2≤x <02, x ≥0(2)F 2(x )={0, x <0sinx, 0≤x <π1, x ≥π(3)F 3(x )={0, x <0sinx, 0≤x <π21, x ≥π2(4)F 4(x )={0, x <0x +13, 0<x <121, x ≥125.设随机变量X 的分布函数为F(x) =a+b arctanx ,‒∞<x <+∞,求(1)常数a,b;(2) P {‒1<X ≤1}解: (1)由分布函数的基本性质 得:F (‒∞)=0,F (+∞)=1{a +b ∗(‒π2)=0a +b ∗(π2)=1of backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, fullof humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happy5 OF 18解之a=, b=121π(2)P {‒1<X ≤1}=F (1)‒F (‒1)=a +b ∗π4‒(a +b ∗‒π4)=b ∗π2=12(将x=1带入F(x) =a+b arctanx )注: arctan 为反正切函数,值域(), arctan1=‒π2,π2 π46.设随机变量X 的分布函数为F (x )={0, x <1lnx, 1≤x <e1, x ≥e求P {X ≤2},P {0<X ≤3},P {2<X ≤2.5}解: 注: P {X ≤2}=F(2)=ln2 F(x)=P {X ≤x }P {0<X ≤3}=F (3)‒F (0)=1‒0=1;P {2<X ≤2.5}=F (2.5)‒F (2)=ln2.5‒ln2=ln2.52=ln1.25习题2.31.设随机变量X 的概率密度为:f (x )={acosx, |x |≤π20, 其他.求: (1)常数a; (2);(3)X 的分布函数F(x).P {0<X <π4}解:(1)由概率密度的性质∫+∞‒∞f (x )dx =1,∫π2‒π2acosxdx =a sinx |π2‒π2=asin π2‒asin (‒π2)=asin π2+asin π2=a +a =1A =12(2)P {0<X <π4}=(12)sin(π4)‒(12)sin (0)=12∗22+12∗0=24一些常用特殊角的三角函数值正弦余弦正切余切0010不存在π/61/2√3/2√3/3√3π/4√2/2√2/211of backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, full of humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happy(3)X 的概率分布为:F (x )={0, x <‒π212(1+sinx ), ‒π2≤x <π21, x ≥π2 2.设随机变量X 的概率密度为f (x )=ae ‒|x |, ‒∞<x <+∞,求: (1)常数a; (2); (3)X 的分布函数. P {0≤X ≤1}解:(1),即a=∫+∞‒∞f(x)dx =∫0‒∞ae x dx +∫+∞ae ‒x dx =a +a =112(2)P {0≤X ≤1}=F (1)‒F (0)=12(1‒e ‒1)(3)X 的分布函数F (x )={12e x, x ≤01‒12e ‒x, x >03.求下列分布函数所对应的概率密度:(1)F 1(x )=12+1πarctanx , ‒∞<x <+∞;解:(柯西分布)f 1(x )=1π(1+x 2)(2)F 2(x )={1‒e ‒x 22, x >00, x ≤0π/3√3/21/2√3√3/3π/210不存在0π-1不存在7 OF 18解:(指数分布) f 2(x )={x e ‒x 22, x >00, x ≤0(3)F 3(x )={0, x <0sinx , 0≤ x ≤π21, x >π2解: (均匀分布)f 3(x )={cosx , 0≤ x ≤π20, 其他4.设随机变量X 的概率密度为f (x )={x, 0≤x <12‒x, 1≤ x <20, 其他.求: (1); (2)P {X ≥12} P {12<X <32}.解:(1)P {X ≥12}=1‒F (12)=1‒1222=1‒18=78(2)(2)P {12<X <32}=F(32)‒F(12)=(2∗32‒1‒3222)‒(3222)=345.设K 在(0,5)上服从均匀分布,求方程(利用二次式的判别式)4x 2+4Kx +K +2=0有实根的概率.解: K~U(0,5)f (K )={15 , 0≤x ≤50, 其他方程式有实数根,则Δ≥0,即(4K)2‒4∗4∗(K +2)=16K 2‒16(K +2)≥02≤K ≤‒1故方程有实根的概率为:P {K ≤‒1}+P {K ≥2}=∫5215dx =0.66.设X ~ U(2,5),现在对X 进行3次独立观测,求至少有两次观测值大于3的概率.解:P {K >3}=1‒F (3)=1‒3‒25‒2=23至少有两次观测值大于3的概率为:C 23(23)2(13)1+C 33(23)3(13)0=20277.设修理某机器所用的时间X 服从参数为λ=0.5(小时)指数分布,求在机器出现故障时,在一小时内可以修好的概率.解: P {X ≤1}=F (1)=1‒e‒0.58.设顾客在某银行的窗口等待服务的时间X(以分计)服从参数为λ=的指数分布,某顾客在窗口等待159 OF 18服务,若超过10分钟,他就离开.他一个月要到银行5次,以Y 表示他未等到服务而离开窗口的次数.写出Y 的分布律,并求P {Y ≥1}.解:“未等到服务而离开的概率”为P {X ≥10}=1‒F (10)=1‒(1‒e‒15∗10)=e ‒2P {Y =k }=C k 5(e ‒2)k(1‒e ‒2)5‒k , (k =0,1,2,3,4,5)Y 的分布律:Y 012345P0.4840.3780.1180.0180.0010.00004P {Y ≥1}=1‒P {Y =0}=1‒0.484=0.5169.设X ~ N(3,),求:22(1);P {2<X ≤5}, P {‒4<X ≤10}, P {|X |>2}, P {X >3}(2).常数c,使P {X >c }=P {X ≤c }解: (1)P {2<X ≤5}=Φ(5‒32)‒Φ(2‒32)=Φ(1)‒[1‒Φ(12)]=0.8413‒(1‒0.6915)=0.5328P {‒4<X ≤10}=Φ(10‒32)‒Φ(‒4‒32)=Φ(3.5)‒[1‒Φ(3.5)]=0.9998‒0.0002=0.9996 P {|X |>2}= 1‒P {‒2≤X ≤2}=1‒[Φ(2‒32)‒Φ(‒2‒32)]=1‒(0.3085‒0.0062)=0.6977P {X >3}= P {X ≥3}=1‒Φ(3‒32)=1‒Φ(0)=1‒0.5=0.5(2)P {X >c }=P {X ≤c }P {X >c }=1‒P {X ≥c }P {X >c }+P {X ≥c }=1Φ(c ‒32)+Φ(c ‒32)=1Φ(c ‒32)=0.5经查表,即C=3c ‒32=010.设X ~ N(0,1),设x 满足P {|X |>x }<0.1.求x 的取值范围.解:P {|X |>x }<0.12[1‒Φ(x )]<0.1‒Φ(x )<‒1920Φ(x )≥1920Φ(x )≥0.95经查表当 1.65时x ≥Φ(x )≥0.95即 1.65时x ≥P {|X |>x }<0.111.X ~ N(10,),求:22(1)P {7<X ≤15};(2)常数d,使P {|X ‒10|<d }<0.9.解: (1)P {7<X ≤15}=Φ(15‒102)‒Φ(7‒102)=Φ(2.5)‒[1‒Φ(1.5)]=0.9938‒0.0668=0.927(2)P {|X ‒10|<d }=P {10‒d <X <10+d }<0.9=Φ(10+d ‒102)‒Φ(10‒d ‒102)<0.9=Φ(d2)<0.95经查表,即d=3.3d2=1.6512.某机器生产的螺栓长度X(单位:cm)服从正态分布N(10.05,),规定长度在范围10.050.12内 0.062±为合格,求一螺栓不合格的概率.解:螺栓合格的概率为:P {10.05‒0.12<X <10.05+0.12}=P {9.93<X <10.17}=Φ(10.17‒10.050.06)‒Φ(9.93‒10.050.06)=Φ(2)‒[1‒Φ(2)]=0.9772∗2‒1=0.9544螺栓不合格的概率为1-0.9544=0.045613.测量距离时产生的随机误差X(单位:m)服从正态分布N(20,).进行3次独立测量.求:402(1)至少有一次误差绝对值不超过30m 的概率;(2)只有一次误差绝对值不超过30m的概率.解:(1)绝对值不超过30m的概率为:P{‒30<X<30}=Φ(30‒2040)‒Φ(‒30‒2040)=Φ(0.25)‒[1‒Φ(1.25)]=0.4931至少有一次误差绝对值不超过30m的概率为:1−C 03(0.4931)0(1‒0.4931)3=1‒0.1302=0.8698(2)只有一次误差绝对值不超过30m的概率为:C13(0.4931)1(1‒0.4931)2=0.3801习题2.41.设X的分布律为X-2023P0.20.20.30.3求(1)的分布律.Y1=‒2X+1的分布律; (2)Y2=|X|解: (1)的可能取值为5,1,-3,-5.Y1由于P{Y1=5}=P{‒2X+1=5}=P{X=‒2}=0.2P{Y1=1}=P{‒2X+1=1}=P{X=‒2}=0.2P{Y1=‒3}=P{‒2X+1=‒3}=P{X=2}=0.3P{Y1=‒5}=P{‒2X+1=‒5}=P{X=3}=0.3从而的分布律为:Y1X-5-315Y10.30.30.20.2(2)的可能取值为0,2,3.Y2由于P{Y2=0}=P{|X|=0}=P{X=0}=0.2P{Y2=2}=P{|X|=0}=P{X=‒2}+P{X=2}=0.2+0.3=0.5P{Y2=3}=P{|X|=3}=P{X=3}=0.3从而的分布律为:Y2X023Y20.20.50.32.设X的分布律为X-1012P0.20.30.10.411 OF 18求Y=(X‒1)2的分布律.解:Y的可能取值为0,1,4.由于P{Y=0}=P{(X‒1)2=0}=P{X=1}=0.1P{Y=1}=P{(X‒1)2=1}=P{X=0}+P{X=2}=0.7P{Y=4}=P{(X‒1)2=4}=P{X=‒1}=0.2从而的分布律为:YX014Y0.10.70.23.X~U(0,1),求以下Y的概率密度:(1)Y=‒2lnX; (2)Y=3X+1; (3)Y=e x.解: (1) Y=g(x)=‒2lnX, 值域為(0,+∞),X=ℎ(y)=e‒Y2, ℎ'(y)=12e‒Y2 f Y(y)=f x(ℎ(y))| ℎ'(y)|=1∗12e‒Y2=12e‒Y2.即f Y(y)={12e‒Y2, y>0,0, y≤0(2) Y=g(x)=3X+1,值域為(‒∞,+∞), X=ℎ(y)=Y‒13, ℎ'(y)=13f Y(y)=f x(ℎ(y))| ℎ'(y)|=1∗13=13即f Y(y)={13, 1< y<4,0, 其他注: 由X~U(0,1),,当X=0时,Y=3*0+1=1; ,当X=1时,Y=3*1+1=4 Y=3X+1(3) Y=g(x)=e x, X=ℎ(y)=lny, ℎ'(y)=1yf Y(y)=f x(ℎ(y))| ℎ'(y)|=1∗1y=1y即f Y(y)={1y, 0< y<e,0, 其他注: ,当X=0时,; ,当X=1时,Y=e0=0 Y=e1=e4.设随机变量X的概率密度为f X(x)={32x2, ‒1<x<00, 其他.of backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, fullof humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happy13 OF 18求以下Y 的概率密度:(1)Y=3X; (2) Y=3-X; (3)Y =X 2.解: (1) Y=g(x)=3X,X =ℎ(y )=Y 3, ℎ'(y)=13f Y (y )=f x (ℎ(y ))| ℎ'(y)|=Y 26∗13=Y218即f Y (y )={Y 218, ‒3< y <0,0, 其他(2)Y=g(x) =3-X, X=h(y) =3-Y,-1ℎ'(y)=f Y (y )=f x (ℎ(y ))| ℎ'(y)|=32∗(3‒Y)2+1=3(3‒Y)22即f Y (y )={3(3‒Y)22, 3< y <4,0, 其他(3), X=h(y)=,Y =g(x)=X 2Y ℎ'(y)=12Y,即f Y (y )=f x (ℎ(y ))| ℎ'(y)|=3Y 22∗1 2Y=3Y4f Y (y )={3Y4, 0< y <1,0, 其他5.设X 服从参数为λ=1的指数分布,求以下Y 的概率密度:(1)Y=2X+1; (2)(3) Y =e x; Y =X 2.解: (1) Y=g(x)=2X+1,X =ℎ(y )=Y ‒12, ℎ'(y )=12X 的概率密度为:f X (x )={λe ‒λx, x >0,0, x ≤0f Y (y )=f x (ℎ(y ))| ℎ'(y)|=λe ‒λ∗Y ‒12∗12=12e ‒Y ‒12即f Y (y )={12e ‒Y ‒12, y >00, 其他(2)Y =g (x )=e x , X =ℎ(y )=lnY,ℎ'(y )= 1Y注意是绝对值 ℎ'(y)of backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, full of humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happyf Y (y )=f x (ℎ(y ))| ℎ'(y)|=e‒lnY∗1Y =1e lnY ∗1Y =1Y ∗1Y =1Y 2即f Y (y )={1Y2, y >10, 其他(3)Y =g (x )=X 2,X =ℎ(y )=Y , ℎ'(y )=12Y,,f Y (y )=f x (ℎ(y ))| ℎ'(y)|=e ‒Y∗12Y=12Ye ‒Y即f Y (y )={12Ye ‒Y, y >00, 其他6.X~N(0,1),求以下Y 的概率密度:(1) Y =|X |; (2)Y =2X 2+1解: (1) Y =g (x )=|X |, X =ℎ(y )=±Y, ℎ'(y )=1f X (x )=12πσe‒(x ‒μ)22σ2‒∞<x <+∞当X=+Y 时:f Y (y )=f x (ℎ(y ))| ℎ'(y)|=12πe‒y 22当X=-Y 时: f Y (y )=f x (ℎ(y ))| ℎ'(y)|=12πe ‒y 22故f Y (y )=12πe ‒y 22+12πe‒y 22=22πe ‒y 22=42πe‒y 22=2πe ‒y 22f Y (y )={2πe ‒y 22, y >00, y ≤0(2)Y =g (x )=2X 2+1, X =ℎ(y )=Y ‒12,ℎ'(y )=12Y ‒12永远大于0.e x 当x>0是,>1e xof backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, fullof humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happy15 OF 18f Y (y )=f x (ℎ(y ))| ℎ'(y)|=12πe‒(Y ‒12)22∗12Y ‒12=12π(y ‒1)e‒y ‒14即f Y (y )={12π(y ‒1)e ‒y ‒14, y >10, y ≤1自测题一,选择题1,设一批产品共有1000件,其中有50件次品,从中随机地,有放回地抽取500件产品,X 表示抽到次品的件数,则P{X=3}= C .A. B.C. D.C 350C 497950C 5001000A 350A 497950A 5001000C 3500(0.05)3(0.95)497 35002.设随机变量X~B(4,0.2),则P{X>3}= A .A. 0.0016B. 0.0272C. 0.4096D. 0.8192解:P{X>3}= P{X=4}= (二项分布)C 44(0.2)4(1‒0.2)03.设随机变量X 的分布函数为F(x),下列结论中不一定成立的是D .A. B. C. D. F(x) 为连续函数F (+∞)=1 F (‒∞)=00≤F (x )≤14.下列各函数中是随机变量分布函数的为 B .A. B.F 1(x )=11+x 2, ‒∞<x <+∞F 2(x )={0, x ≤0x 1+x , x >0C.D.F 3(x )=e ‒x, ‒∞<x <+∞F 4(x )=34+12πarctanx, ‒∞<x <+∞5.设随机变量X 的概率密度为 则常数a= A .f (x )={a x 2, x >100, x ≤10A. -10B.C.D. 10解: F(x) =‒15001500∫+∞‒∞a x2dx =‒ax =16.如果函数是某连续型随机变量X 的概率密度,则区间[a,b]可以是 C f (x )={x, a<x <b0, 其他A. [0, 1]B. [0, 2]C. D. [1, 2][0,2]不晓得为何课后答案为Dof backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, fullof humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happy7.设随机变量X 的取值范围是[-1,1],以下函数可以作为X 的概率密度的是 A A. B. {12, ‒1< x <10, 其他{2, ‒1< x <10, 其他C.D. {x, ‒1< x <10, 其他{x 2, ‒1< x <10, 其他8.设连续型随机变量X 的概率密度为 则= B .f (x )={x2, 0< x <20, 其他P{‒1≤ X ≤1}A. 0 B. 0.25 C. 0.5 D. 1解:P {‒1≤ X ≤1}=∫1‒1x2dx =x 24|1‒1=149.设随机变量X~U(2,4),则= A . (需在区间2,4内)P{3< x <4}A. B. P{2.25< x <3.25}P{1.5< x <2.5}C. D. P{3.5< x <4.5}P{4.5< x <5.5}10. 设随机变量X 的概率密度为 则X~ A .f (x )=122πe ‒(x ‒1)28A. N (-1, 2)B. N (-1, 4)C. N (-1, 8)D. N (-1, 16)11.已知随机变量X 的概率密度为fx(x),令Y=-2X,则Y 的概率密度fy(y)为 D .A.B.C.D. 2f X (‒2y)f X (‒y2)12f X(‒y2)12f X (y 2)二,填空题1.已知随机变量X 的分布律为X 12345P2a0.10.3a0.3则常数a= 0.1 .解:2a+0.1+0.3+a+0.3=12.设随机变量X 的分布律为X 123P162636记X 的分布函数为F(x)则F(2)=.解: 1216+263.抛硬币5次,记其中正面向上的次数为X,则=.P{ X ≤4}3132解:P { X ≤4}=1‒P { X =5}=1‒C 55(12)5(12)自己算的结果是12f X(‒y2)17 OF 184.设X 服从参数为λ(λ>0)的泊松分布,且,则λ= 2 .P { X =0}=12P { X =2}解:分别将.P { X =0},P { X =2}帶入P k =P { X =k }=λk k!e ‒λ5.设随机变量X 的分布函数为F (x )={0, x <a0.4, a ≤x <b1, x ≥b其中0<a<b,则= 0.4.P {a2<X <a +b 2}解:P { a 2<X <a +b 2}=F (a +b 2)‒F (a 2)=0.4‒0=0.46.设X 为连续型随机变量,c 是一个常数,则= 0.P { X =c }7. 设连续型随机变量X 的分布函数为F (x )={13e x, x <013(x +1), 0≤x <21, x ≥2则X 的概率密度为f(x),则当x<0是f(x)=.13e x 8. 设连续型随机变量X 的分布函数为其中概率密度为f(x),F (x )={1‒e ‒2x , x >00, x ≤0则f(1)= .2e ‒29. 设连续型随机变量X 的概率密度为其中a>0.要使,则常数a=f (x )={12a, ‒a < x <a 0, 其他P { X >1}=13 3 .解:P { X >1}=1‒P { X ≤1}=13,P { X ≤1}=23=12a10.设随机变量X~N(0,1),为其分布函数,则= 1 .Φ(x)Φ(x )+Φ(‒x)11.设X~N ,其分布函数为为标准正态分布函数,则F(x)与之间的关系是(μ,σ2)F (x ),Φ(x)Φ(x)=.F (x )Φ(x ‒μσ)12.设X~N(2,4),则= 0.5 .P { X ≤2}13.设X~N(5,9),已知标准正态分布函数值,为使,则Φ(0.5)=0.6915P { X <a }<0.6915常数a< 6.5. 解:, F (a )=Φ(a ‒μσ)=a ‒53a ‒53<0.514. 设X~N(0,1),则Y=2X+1的概率密度= .f Y (y )122πe‒(Y ‒1)28解:Y =g (x )=2X +1, X =ℎ(y )=Y ‒12,ℎ'(y )=12f Y (y )=f x (ℎ(y ))| ℎ'(y)|=12πe‒(Y ‒12)22∗12=122πe‒(Y ‒1)28三.袋中有2个白球3个红球,现从袋中随机地抽取2个球,以X 表示取到红球的数,求X 的分布律.解: X=0,1,2当X=0时,P { X =0}=C 03∗C 22C 25=110当X=1时,P { X =1}=C 13∗C 12C 25=610当X=2时,P { X =2}=C 23∗C 02C 25=310X 的分布律为:X 012P110610310四.设X 的概率密度为求: (1)X 的分布函数F(x);(2).f (x )={|x|, ‒1≤ x ≤10, 其他 P { X <0.5},P { X >‒0.5}解: (1)当x <-1时. F(x)=0;;当‒1≤x <0时,F(x)=∫x‒1‒x dx =‒x 22|x ‒1=12‒x 22当0≤x <1时,F (x )=1‒ 1∫xx dx =1‒x 22|1x =12+x 22当x ≥1时. F(x)=1F (X )={0, X <‒112‒x22, ‒1≤X <012+x22, 0≤X <11, X ≥1(2)P { X <0.5}=F (0.5)=12+0.522=58;P { X >‒0.5}=1‒F (‒0.5)=1‒(12‒0.522)=58五.已知某种类型电子组件的寿命X(单位:小时)服从指数分布,它的概率密度为f (x )={12000e ‒x 2000, x >00, x ≤0We will continue to improve the company's internal control system, and steady improvement in ability to manage and control, optimize business processes, to ensure smooth processes, responsibilities in place; to further strengthen internal controls, play a control post independent oversight role of evaluation complying with third-party responsibility; to actively make use of internal audit tools detect potential management, streamline, standardize related transactions, strengthening operations in accordance with law. Deepening the information management to ensure full communication "zero resistance". To constantly perfect ERP, and BFS++, and PI, and MIS, and SCM, information system based construction, full integration information system, achieved information resources shared; to expand Portal system application of breadth and depth, play information system on enterprise of Assistant role; to perfect daily run maintenance operation of records, promote problem reasons analysis and system handover; to strengthening BFS++, and ERP, and SCM, technology application of training, improve employees application information system of capacity and level. Humanistic care to ensure "zero." To strengthening Humanities care,continues to foster company wind clear, and gas are, and heart Shun of culture atmosphere; strengthening love helped trapped, care difficult employees; carried out style activities, rich employees life; strengthening health and labour protection, organization career health medical, control career against; continues to implementation psychological warning prevention system, training employees health of character, and stable of mood and enterprising of attitude, created friendly fraternity of Humanities environment. To strengthen risk management, ensure that the business of "zero risk". To strengthened business plans management, will business business plans cover to all level, ensure the business can control in control; to close concern financial, and coal electric linkage, and energy-saving scheduling, national policy trends, strengthening track, active should; to implementation State-owned assets method, further specification business financial management; to perfect risk tube control system, achieved risk recognition, and measure, and assessment, and report, and control feedback of closed ring management, improve risk prevention capacity. To further standardize trading, and strive to achieve "according to law, standardize and fair." Innovation of performance management, to ensure that potential employees "zero fly". To strengthen performance management, process control, enhance employee evaluation and levels of effective communication to improve performance management. To further quantify and refine employee standards ... Work, full play party, and branch, and members in "five type Enterprise" construction in the of core role, and fighting fortress role and pioneer model role; to continues to strengthening "four good" leadership construction, full play levels cadres in enterprise development in theof backbone backbone role; to full strengthening members youth work, full play youth employees in company development in the of force role; to improve independent Commission against corruption work level, strengthening on enterprise business key link of effectiveness monitored. , And maintain stability. To further strengthen publicity and education, improve the overall legal system. We must strengthen safety management, establish and improve the education, supervision, and evaluation as one of the traffic safety management mechanism. To conscientiously sum up the Olympic security controls, promoting integrated management to a higher level, higher standards, a higher level of development. Employees, today is lunar calendar on December 24, the ox Bell is about to ring, at this time of year, we clearly feel the pulse of the XX power generation company to flourish, to more clearly hear XX power generation companies mature and symmetry breathing. Recalling past one another across a railing, we are enthusiastic and full of confidence. Future development opportunities, we more exciting fight more spirited. Employees, let us together across 2013 full of challenges and opportunities, to create a green, low-cost operation, fullof humane care of a world-class power generation company and work hard! The occasion of the Spring Festival, my sincere wish that you and the families of the staff in the new year, good health, happy, happy19 OF 18一台仪器装有4个此种类型的电子组件,其中任意一个损坏时仪器便不能正常工作,假设4个电子组件损坏与否相互独立.试求: (1)一个此种类型电子组件能工作2000小时以上的概率;(2)一台仪器能正p 1常工作2000小时以上的概率.p 2解: (1)P 1=P {X ≥2000}=∫+∞200012000e‒x 2000dx=12000∗‒2000∗e‒x2000|+∞2000=‒e‒x 2000|+∞2000=0‒(‒e ‒1)=e ‒1(2)因4个电子组件损坏与否相互独立,故:P 2=P 14=(e ‒1)4=e ‒4当+∞带入‒x2000时变成负无穷大,e ‒∞=0。
第二次在线作业1.(2.5分)A、.B、.C、.D、.我的答案:A 2.(2.5分)A、.B、.C、.D、.我的答案:B 3.(2.5分)A、.B、.C、.D、.我的答案:D 4.(2.5分)A、.B、.C、.D、.我的答案:B 5.(2.5分)A、.B、.C、.D、.我的答案:B 6.(2.5分)A、.B、.C、.D、.我的答案:C 7.(2.5分)A、.B、.C、.D、.我的答案:D 8.(2.5分)A、.B、.C、.D、.我的答案:D 9.(2.5分)A、.B、.C、.D、.我的答案:D 10.(2.5分)A、.B、.C、.我的答案:A 11.(2.5分)A、.B、.C、.D、.我的答案:C 12.(2.5分)A、.B、.C、.D、.我的答案:D 13.(2.5分)A、.B、.C、.D、.我的答案:C 14.(2.5分)B、.C、.D、.我的答案:B 15.(2.5分)A、.B、.C、.D、.我的答案:A 16.(2.5分)A、.B、.C、.D、.我的答案:B 17.(2.5分)A、.B、.C、.D、.我的答案:D 18.(2.5分)A、.B、.C、.D、.我的答案:B 19.(2.5分)A、.B、.C、.D、.我的答案:A 20.(2.5分)A、.B、.C、.D、.我的答案:A 21.(2.5分)A、.B、.C、.D、.我的答案:D 22.(2.5分)A、.B、.C、.D、.我的答案:B 23.(2.5分)A、.B、.C、.D、.我的答案:D 24.(2.5分)A、.B、.C、.D、.我的答案:C 25.(2.5分)A、.B、.C、.D、.我的答案:A 26.(2.5分)A、.B、.C、.D、.我的答案:C 27.(2.5分)A、.B、.C、.D、.我的答案:C 28.(2.5分)A、.B、.C、.D、.我的答案:C 29.(2.5分)A、.B、.C、.D、.我的答案:A 30.(2.5分)A、.B、.C、.D、.我的答案:D 31.(2.5分)A、.B、.C、.D、.我的答案:C 32.(2.5分)A、.B、.C、.D、.我的答案:B 33.(2.5分)A、.B、.C、.D、.我的答案:C 34.(2.5分)A、.B、.C、.D、.我的答案:D 35.(2.5分)A、.B、.C、.D、.我的答案:D 36.(2.5分)A、.B、.C、.D、.我的答案:D 37.(2.5分)A、.B、.C、.D、.我的答案:D 38.(2.5分)A、.B、.C、.D、.我的答案:A 39.(2.5分)A、.B、.C、.D、.我的答案:B 40.(2.5分)A、.B、.C、.D、.我的答案:D。
概率论与数理统计第二章课后习题及参考答案1.离散型随机变量X 的分布函数为⎪⎪⎩⎪⎪⎨⎧≥<≤<≤--<=≤=.4,1,42,7.0,21,2.0,1,0)()(x x x x x X P x F 求X 的分布律.解:)0()()(000--==x F x F x X P ,∴2.002.0)01()1()1(=-=----=-=F F X P ,5.02.07.0)02()2()2(=-=--==F F X P ,3.07.01)04()4()4(=-=--==F F X P ,∴X 的分布律为2.设k a k X P 32()(==, ,2,1=k ,问a 取何值时才能成为随机变量X 的分布律.解:由规范性,a a a n n k k 2321]32(1[32lim)32(11=--=⋅=+∞→∞+=∑,∴21=a ,此时,k k X P 32(21)(⋅==, ,2,1=k .3.设离散型随机变量X 的分布律为求:(1)X 的分布函数;(2)21(>X P ;(3))31(≤≤-X P .解:(1)1-<x 时,0)()(=≤=x X P x F ,11<≤-x 时,2.0)1()()(=-==≤=X P x X P x F ,21<≤x 时,7.0)1()1()()(==+-==≤=X P X P x X P x F ,2≥x 时,1)2()1()1()()(==+=+-==≤=X P X P X P x X P x F ,∴X 的分布函数为⎪⎪⎩⎪⎪⎨⎧≥<≤<≤--<=.2,1,21,7.0,11,2.0,1,0)(x x x x x F .(2)方法1:8.0)2()1()21(==+==>X P X P X P .方法2:8.02.01)21(121(1)21(=-=-=≤-=>F X P X P .(3)方法1:1)2()1()1()31(==+=+-==≤≤-X P X P X P X P .方法2:101)01()3()31(=-=---=≤≤-F F X P .4.一制药厂分别独立地组织两组技术人员试制不同类型的新药.若每组成功的概率都是0.4,而当第一组成功时,每年的销售额可达40000元;当第二组成功时,每年的销售额可达60000元,若失败则分文全无.以X 记这两种新药的年销售额,求X 的分布律.解:设=i A {第i 组取得成功},2,1=i ,由题可知,1A ,2A 相互独立,且4.0)()(21==A P A P .两组技术人员试制不同类型的新药,共有四种可能的情况:21A A ,21A A ,21A A ,21A A ,相对应的X 的值为100000、40000、60000、0,则16.0)()()()100000(2121====A P A P A A P X P ,24.0)()()()40000(2121====A P A P A A P X P ,24.0)()()()60000(2121====A P A P A A P X P ,36.0)()()()0(2121====A P A P A A P X P ,∴X 的分布律为5.对某目标进行独立射击,每次射中的概率为p ,直到射中为止,求:(1)射击次数X 的分布律;(2)脱靶次数Y 的分布律.解:(1)由题设,X 所有可能的取值为1,2,…,k ,…,设=k A {射击时在第k 次命中目标},则k k A A A A k X 121}{-== ,于是1)1()(--==k p p k X P ,所以X 的分布律为1)1()(--==k p p k X P , ,2,1=k .(2)Y 的所有可能取值为0,1,2,…,k ,…,于是Y 的分布律为1)1()(--==k p p k Y P , ,2,1,0=k .6.抛掷一枚不均匀的硬币,正面出现的概率为p ,10<<p ,以X 表示直至两个面都出现时的试验次数,求X 的分布律.解:X 所有可能的取值为2,3,…,设=A {k 次试验中出现1-k 次正面,1次反面},=B {k 次试验中出现1-k 次反面,1次正面},由题知,B A k X ==}{,=AB ∅,则)1()(1p p A P k -=-,p p B P k 1)1()(--=,p p p p B P A P B A P k X P k k 11)1()1()()()()(---+-=+=== ,于是,X 的分布律为p p p p k X P k k 11)1()1()(---+-==, ,3,2=k .7.随机变量X 服从泊松分布,且)2()1(===X P X P ,求)4(=X P 及)1(>X P .X 100000060000400000P0.160.240.240.36解: )2()1(===X P X P ,∴2e e2λλλλ--=,∴2=λ或0=λ(舍去),∴224e 32e !42)4(--===X P .)1()0(1)1(1)1(=-=-=≤-=>X P X P X P X P 222e 31e 2e 1----=--=.8.设随机变量X 的分布函数为⎩⎨⎧<≥+-=-.0,0,0,e )1(1)(x x x x F x 求:(1)X 的概率密度;(2))2(≤X P .解:(1)⎩⎨⎧<≥='=-.0,0,0,e )()(x x x x F x f x ;(2)2e 31)2()2(--==≤F X P .9.设随机变量X 的概率密度为xx Ax f e e )(+=-,求:(1)常数A ;(2))3ln 210(<<X P ;(3)分布函数)(x F .解:(1)⎰⎰+∞∞--+∞∞-+==xAx x f xx d e e d )(1A A x A x x x 2|e arctan d e 21e 2π==+=∞+∞-∞+∞-⎰,∴π2=A .(2)61|e arctan 2d e e 12)3ln 210(3ln 2103ln 210==+=<<⎰-x xx x X P ππ.(3)x xx x xx t t f x F e arctan 2d e e 12d )()(ππ=+==⎰⎰∞--∞-.10.设连续型随机变量X 的分布函数为⎪⎪⎩⎪⎪⎨⎧>≤<-+-≤=.a x a x a a x B A a x x F ,1,,arctan ,,0)(其中0>a ,试求:(1)常数A ,B ;(2)概率密度)(x f .解:(1) 2arcsin (lim )0()(0)(π⋅-=+=+-=-=+-→B A a x B A a F a F a x ,1)(lim )0()(2==+==⋅++→x F a F a F B A a x π,∴21=A ,π1=B .(2)⎪⎩⎪⎨⎧≥<-='=.a x a x x a x F x f ,0,,1)()(22π.11.设随机变量X 的概率密度曲线如图所示,其中0>a .(1)写出密度函数的表达式,求出h ;(2)求分布函数)(x F ;(3)求)2(a X aP ≤<.解:(1)由题设知⎪⎩⎪⎨⎧≤≤-=其他.,0,0,)(a x x ah h x f 2d )(d )(10ahx x a h h x x f a=-==⎰⎰+∞∞-,∴ah 2=,从而⎪⎩⎪⎨⎧≤≤-=其他.,0,0,22)(2a x x a a x f .y hO a x(2)0<x 时,0d 0d )()(===⎰⎰∞-∞-xxt t t f x F ,a x <≤0时,220202d )22(d 0d )()(a x a x t t a a t t t f x F xx-=-+==⎰⎰⎰∞-∞-,a x ≥时,1)(=x F ,∴X 的分布函数为⎪⎪⎩⎪⎪⎨⎧≥<≤-<=.a x a x axa x x x F ,1,0,2,0,0)(22.(3)41411(1)2()()2(=--=-=≤<a F a F a X a P .12.设随机变量X 在]6,2[上服从均匀分布,现对X 进行三次独立观察,试求至少有两次观测值大于3的概率.解:由题意知⎪⎩⎪⎨⎧≤≤=其他.,0,62,41)(x x f ,记3}{>=X A ,则43d 41)3()(63==>=⎰x X P A P ,设Y 为对X 进行三次独立观测事件}3{>X 出现的次数,则Y ~43,3(B ,所求概率为)3()2()2(=+==≥Y P Y P Y P )(()(333223A P C A P A P C +=3227)43(41)43(333223=+⋅=C C .13.设随机变量X 的概率密度为⎩⎨⎧<<=其他.,0,10,3)(2x x x f 以Y 表示对X 的三次独立重复观察中事件}21{≤X 出现的次数,求:(1)}21{≤X 至少出现一次的概率;(2)}21{≤X 恰好出现两次的概率.解:由题意知Y ~),3(p B ,其中81d 321(2102==≤=⎰x x X P p ,(1)}21{≤X 至少出现一次的概率为512169)811(1)1(1)0(1)1(33=--=--==-=≥p Y P Y P .(2)}21{≤X 恰好出现两次的概率为51221811(81()1()2(223223=-=-==C p p C Y P .14.在区间],0[a 上任意投掷一个质点,以X 表示这个质点的坐标.设这个质点落在],0[a 中任意小区间内的概率与这个小区间的长度成正比例.试求X 的分布函数.解:0<x 时,事件}{x X ≤表示X 落在区间],0[a 之外,是不可能事件,此时0)()(=≤=x X P x F ;a x ≤≤0时,事件}{x X ≤发生的概率等于X 落在区间],0[x 内的概率,它与],0[x 的长度x 成正比,即x k x X P x F =≤=)()(,a x =时,1)(=≤x X P ,所以a k 1=,则此时axx F =)(;a x ≥时,事件}{x X ≤是必然事件,有1)(=x F ,综上,⎪⎪⎩⎪⎪⎨⎧≥<≤<=,a x a x a x x x F ,1,0,,0,0)(.15.设X ~),2(2σN ,又3.0)42(=<<X P ,求)0(>X P .解:)24222()42(σσσ-<-<-=<<X P X P 3.0)0(2(=Φ-Φ=σ,∴8.03.0)0()2(=+Φ=Φσ,∴8.0)2()2(1)0(1)0(=Φ=-Φ-=≤-=>σσX P X P .16.设X ~)4,10(N ,求a ,使得9.0)10(=<-a X P .解:)10()10(a X a P a X P <-<-=<-)22102(a X a P <-<-=)2()2(a a -Φ-Φ=9.01)2(2=-Φ=a,∴95.0)2(=Φa,查标准正态分布表知645.12=a,∴290.3=a .17.设X ~)9,60(N ,求分点1x ,2x ,使得X 分别落在),(1x -∞,),(21x x ,),(2∞x 的概率之比为3:4:5.解:由题知5:4:3)(:)(:)(2211=><<<x X P x X x P x X P ,又1)()()(2211=>+<<+<x X P x X x P x X P ,∴25.041)(1==<x X P ,33.031)(21==<<x X x P ,125)(2=>x X P ,则5833.0127)(1)(22==>-=≤x X P x X P .25.0)360()360360()(111=-Φ=-<-=<x x X P x X P ,查标准正态分布表知03601<-x ,∴03601>--x ,则75.0)360(1)360(11=-Φ-=--Φx x 查标准正态分布表,有7486.0)67.0(=Φ,7517.0)68.0(=Φ,75.02)68.0()67.0(=Φ+Φ,∴675.0268.067.03601=+=--x ,即975.571=x .5833.0360()360360()(222=-Φ=-≤-=≤x x X P x X P ,查标准正态分布表知5833.0)21.0(=Φ,∴21.03602=-x ,即63.602=x .18.某高校入学考试的数学成绩近似服从正态分布)100,65(N ,如果85分以上为“优秀”,问数学成绩为“优秀”的考生大致占总人数的百分之几?解:设X 为考生的数学成绩,则X ~)100,65(N ,于是)85(1)85(≤-=>X P X P )1065851065(1-≤--=X P 0228.09772.01)2(1=-=Φ-=,即数学成绩为“优秀”的考生大致占总人数的2.28%.19.设随机变量X 的分布律为求2X Y =的分布律.解:Y 所有可能的取值为0,1,4,9,则51)0()0(====X P Y P ,307)1()1()1(==+-===X P X P Y P ,51)2()4(=-===X P Y P ,3011)3()9(====X P Y P ,∴Y 的分布律为20.设随机变量X 在)1,0(上服从均匀分布,求:(1)X Y e =的概率密度;(2)X Y ln 2-=的概率密度.解:由题设可知⎩⎨⎧<<=其他.,0,10,1)(x x f ,(1)当0≤y 时,=≤}{y Y ∅,X 2-1-013P5161511513011X 0149P51307513011∴0)()(=≤=y Y P y F Y ,0)(=y f Y ;e 0<<y 时,)e ()()(y P y Y P y F X Y ≤=≤=)(ln )ln (y F y X P X =≤=,此时,yy f y y y F y F y f X XY X 1)(ln 1)(ln )(ln )()(=='⋅'='=;e ≥y 时,1)()(=≤=y Y P y F Y ,0)(=y f Y ;∴⎪⎩⎪⎨⎧<<=其他.,0,e 0,1)(y y y f Y .(2)当0≤y 时,=≤}{y Y ∅,∴0)()(=≤=y Y P y F Y ,0)(=y f Y ;当0>y 时,)e ()ln 2()()(2y Y X P y X P y Y P y F -≥=≤-=≤=)e (1)e (122y X y F X P ---=<-=,此时,222e 21)e ()e ()()(yy y X Y X F y F y f ---='⋅'-='=;∴⎪⎩⎪⎨⎧≤>=-.0,0,0,e 21)(2y y y f yY .21.设X ~)1,0(N ,求:(1)X Y e =的概率密度;(2)122+=X Y 的概率密度;(3)X Y =的概率密度.解:由题知22e 21)(x X xf -=π,+∞<<∞-x ,(1)0≤y 时,=≤=}e {y Y X ∅,∴0)()(=≤=y Y P y F Y ,0)(=y f Y ;0>y 时,)(ln )ln ()e ()()(y F y X P y P y Y P y F X X Y =≤=≤=≤=,此时,2)(ln 2e 21)(ln 1)(ln )(ln )()(y X XY X y f yy y F y F y f -=='⋅'='=π;综上,⎪⎩⎪⎨⎧≤>=-.0,0,0,e 21)(2)(ln 2y y y f y Y π.(2)1<y 时,=≤+=}12{2y X Y ∅,∴0)()(=≤=y Y P y F Y ;1≥y 时,21()12()()(22-≤=≤+=≤=y X P y X P y Y P y F Y )2121(-≤≤--=y X y P 当1=y 时,0)(=y F Y ,故1≤y 时,0)(=y F Y ,0)(=y f Y ;当1>y 时⎰⎰------==210221212d e22d e21)(22y x y y x Y x x y F ππ,此时,41e)1(21)()(---='=y Y Y y y F y f π,综上,⎪⎩⎪⎨⎧≤>-=--.1,0,1,e )1(21)(41y y y y f y Y π.(3)0<y 时,=≤=}{y X Y ∅,∴0)()()(=≤=≤=y X P y Y P y F Y ,0≥y 时,)()()()(y X y P y X P y Y P y F Y ≤≤-=≤=≤=)()(y F y F X X --=,0=y 时,0)(=y F Y ,∴0≤y 时,有0)(=y F Y ,0)(=y f Y ;0>y 时,22e 22)()()()()(y X X Y Y Y yf y f y F y F y f -=-+=-'+'=π,综上,⎪⎩⎪⎨⎧≤>=-.0,0,0,e 22)(22y y y f yY π.22.(1)设随机变量X 的概率密度为)(x f ,+∞<<∞-x ,求3X Y =的概率密度.(2)设随机变量X 的概率密度为⎩⎨⎧>=-其他.,00,e )(x x f x 求2X Y =的概率密度.解:(1)0=y 时,0)()(=≤=y Y P y F Y ,0)(=y f Y ;0≠y 时,)()()()()(333y F y X P y X P y Y P y F X Y =≤=≤=≤=,3233331())(()()(-⋅=''='=y y f y y F y F y f XY Y ;∴⎪⎩⎪⎨⎧=≠=-.0,0,0),(31)(332y y y f y y f Y .(2)由于02≥=X Y ,故当0<y 时,}{y Y ≤是不可能事件,有0)()(=≤=y Y P y F Y ;当0≥y 时,有)()(()()()(2y F y F y X y P y X P y Y P y F X X Y --=≤≤-=≤=≤=;因为当0=y 时,0)0()0()(=--=X X Y F F y F ,所以当0≤y 时,0)(=y F Y .将)(y F Y 关于y 求导数,即得Y 的概率密度为⎪⎩⎪⎨⎧≤>-+=.,;,000)](([21)(y y y f y f y y f X X Y ,⎪⎩⎪⎨⎧≤>+=-.0,0,0),e e (21y y yyy .23.设随机变量X 的概率密度为⎪⎩⎪⎨⎧<<=其他.,0,0,2)(2ππx xx f 求X Y sin =的概率密度.解:由于X 在),0(π内取值,所以X Y sin =的可能取值区间为)1,0(,在Y 的可能取值区间之外,0)(=y f Y ;当10<<y 时,使}{y Y ≤的x 取值范围是),arcsin []arcsin ,0(ππy y - ,于是}arcsin {}arcsin 0{}{ππ<≤-≤<=≤X y y X y Y .故)arcsin ()arcsin 0()()(ππ<≤-+≤<=≤=X y P y X P y Y P y F Y ⎰⎰-+=ππyX y X x x f x x f arcsin arcsin 0d )(d )(⎰⎰-+=ππππyy x xx xarcsin 2arcsin 02d 2d 2,上式两边对y 求导,得22222121)arcsin (21arcsin 2)(yyy yyy f Y -=--+-=ππππ;综上,⎪⎩⎪⎨⎧<<-=其他.,0,10,12)(2y y y f Y π.。