Kimyoning asosiy tushuncha va qonunlari nisbiy atom va nisbiy molekulyar massa. Modda miqdori



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m=100+8,9=108,9 g.

Hosil bo'lgan H2SO4 massasi:

18:98=2:x; x=10,9 g H2SO4.

35 %-li oleum tayyorlash uchun 100 %-li 108,9 g H2SO4 da qancha massa SO3 yuttirish kerakligini topamiz:

65:35=108,9:x; x=58,64 g.

2 g suv va 108,9 g 100 %-li H2SO4 ni 35 %-li oleumga aylantirish uchun kerak bo‘lgan SO3 massasi:



mSO3=58,64+8,9=67,54 g.

100 g 60 %-li oleumda bizga kerak bo‘lganidan (35 %) 25 g ortiqcha SO3 bor. Bundan: 100:25=x:67,54; x=270,16 g.

Demak, 270 g 60 %-li oleum 100 g 98 %-li H2SO4 bilan aralashtirilsa, 370 g 35 %-li oleum hosil bo‘ladi. 370:270=100:x; x=72,9773 g 60 %-li oleum va 370:100=100:x; x=27,0327 g 98 %-li H2SO4 kerak ekan.

14.15. 88 % li 750 ml sirka kislota eritmasini tayyorlash uchun sirka angidrid va 25 % li sirka kislota eritmasidan qanday miqdorda (g) olish kerak?

Yyechish: Sirka kislotaning hosil bo‘lish reaksiya tenglamasi: (CH3CO)2O+H2O2CH3COOH.

Birinchi usul: Sirka angidriddan [M[(CH3CO)2O]=102] hosil bo'ladigan sirka kislota [M(CH3COOH)=60] ikkinchi eritmadagi suv hisobiga hosil bo‘lganligi uchun «sirka angidriddagi sirka kislota»ning massa ulushi: =120/102=1,1765 yoki 117,65 % bo‘ladi deb qabul qilish mumkin. Suyultirish qoidasi asosida masala quyidagicha echiladi:


91 15 75

430:86=

20 =5
5 71 355





Demak, 510 g sirka angidrid bilan 240 g 25 % -li sirka kislota aralashtirilsa, 88 % -li sirka kislota eritmasi hosil bo‘lar ekan.



Ikkinchi usul ikki noma'lumli tenglama tuzib yechish:

x+y=750

[(120/102)x+0,25y]/750=0,88

y=240; x=510.

14.16. Mis (II) atsetatning 20 % li eritmasidan 430 g tayyorlash uchun mis (II) atsetat kristallgidrati Cu(CH3COO)2H2O va 5 % li mis (II) atsetat eritmasidan qanday miqdorda (g) olinishi kerakligini hisoblang.

Yechish: M[Cu(CH3COO)2H2O]=200. M[Cu(CH3COO)2]=182. [Cu(CH3COO)2]=182/200=0,91.


64 12 200:12=

16
4 48 =16,67 800










14.17. 16 % li mis (II) sulfat eritmasini tayyorlash uchun 200 g mis kuporosi CuSO45H2O qanday massadagi (g) 4 % li mis (II) sulfat eritmasida eritilishi kerak?

Yechish: Masalani suyultirish qoidasi yordamida quyidagicha yechish mumkin. M[CuSO45H2O]=250. M[CuSO4]=160. (CuSO4)=160/250=0,64.


17,09 8,41

21

29,41 3,91










14.18. Suvsiz sulfat kislota tayyorlash uchun 98 % li 500 g sulfat kislota eritmasida qancha massa (g) sulfat angidrid eritilishi zarurligini hisoblash.

Yechish: SO3+H2OH2SO4.

1=[0,98500+(98/80)m]/[500+m]. m=44,5 g.



14.19. Suvsiz kaliy gidroksid tayyorlash uchun 16,8 g kaliy oksid 92 % li o‘yuvchi kaliyning qanday miqdorida (g) eritilishi zarur?

Yechish: K2O+H2O2KOH.

1=[(112/94)16,8+0,92m]/[16,8+m]. m=40.



lovalar

1-ilova

Kvant sonlar va atomlardagi elektronlarning holati



Bosh kvant son, n

Orbital kvant son, l

Magnit kvant son, ml

Spin kvant son, ms

Elektron kvant holati

Orbitallar soni

Elektron holatlar soni

Elektron-larning umumiy soni

1

0

0

+1/2, 1/2

1s

1

2

2

2

0

1


0

+1, 0, 1



+1/2, 1/2

+1/2, 1/2



2s

2p



1

3


2

6


8

3

0

1


0

+1, 0, 1



+1/2, 1/2

3s

3p



1

3


2

6


18




2

+2, +1, 0, 1, 2

+1/2, 1/2

+1/2, 1/2



3d

5

10




4

0

1

2



3

0

+1, 0, 1

+2, +1, 0, 1, 2

+3,+2, +1, 0, 1, 2, 3



+1/2, 1/2

+1/2, 1/2

+1/2, 1/2

+1/2, 1/2



4s

4p



4d

4f

1

3

5



7

2

6

10



14

32

5

0

1

2



3

4


0

+1, 0, 1

+2, +1, 0, 1, 2

+3,+2, +1, 0, 1, 2, 3

+4,+3,+2, +1, 0, 1, 2, 3, 4


+1/2, 1/2

+1/2, 1/2

+1/2, 1/2

+1/2, 1/2

+1/2, 1/2


5s

5p



5d

5f

5g

1

3

5



7

9


2

6

10



14

18


50


2-Ilova

Muhim kislota va asoslarning suvdagi dissotsiatsiya konstantalari

(25 oC)

Kislotalar

Nomi

Formulasi

Bos-qich

Ka

pKa

Azid

HN3




1,910-5

4,72

-Alanin

CH3CH(NH2)COOH




1,3510-10

9,87

-Alanin

NH2CH2CH2COOH




4,410-11

10,36

Aminosirka

NH2CH2COOH




1,710-10

9,78

Arsenat

H3AsO4

K1

K2

K3


6,010-3

1,0510-7

2,9510-12


2,22

6,98


11,53

Arsenit

H3AsO3




5,110-10

9,29

Benzoat

C6H5COOH




6,610-5

4,18

Borat

H3BO3

K1

5,810-10

9,24

Bromid

HBr




1109

-9

Chumoli

HCOOH




1,810-4

3,75

Dixromat

H2Cr2O7

K2

2,310-2

1,64

Ditionat

H2S2O6

K1

K2



6,310-1

4,010-4



0,20

3,40


Dixlorsirka

Cl2CHCOOH




5,010-2

1,30

Fenol

C6H5OH




1,310-10

9,90

O-Fosfat

H3PO4

K1

K2

K3


7,610-3

6,210-8

4,410-13


2,12

7,21


12,36

Fosfit

H3PO3

K1

K2



1,610-2

2,010-7



1,80

6,70


Fumar

HOOCCH=CHCOOH

K1

K2



9,310-4

3,610-5



3,03

4,44


Gipobromit

HbrO




2,510-9

8,60

Gipoyodit

HJO




2,310-11

10,64

Gipoxlorit

HClO




5,010-8

7,30

Glutanat

HOOC(CH2)3COOH

K1

K2



4,610-5

3,910-6



4,34

5,41


Glyukonat

HOCH2(CHOH)4COOH




1,410-4

3,86

Kahrabo

HOOCCH2CH2COOH

K1

K2



6,510-5

3,310-6



4,19

5,48


m-Krezol

CH3C6H4OH




9,810-11

10,01

o-Krezol

CH3C6H4OH




6,310-11

10,20

p-Krezol

CH3C6H4OH




6,710-11

10,17

Malein

HOOCCH=CHCOOH

K1

K2



1,210-2

5,910-7



1,92

6,23


Malon

HOOCCH2COOH

K1

K2



1,410-3

2,210-6



2,85

5,66


Manganat

H2MnO4

K1

~10-1

~1







K2

7,110-11

10,15

izo-Moy

(CH3)2CHCOOH




1,410-5

4,86

n-Moy

CH3(CH2) 2COOH




1,510-5

4,82

Molibdat

H2MoO4

K1

K2



1,610-2

3,910-5



1,80

4,10


Nitrat

HNO3




43,6

-1,64

Nitrit

HNO2




5,110-4

3,29

Oksalat

H2C2O4

K1

K2



5,610-2

5,410-5



1,25

4,27


Peryodat

HJO4




2,810-2

1,55

Permanganat

HMnO4




2102

-2,3

Pikrin

HOC6H2(NO2)3




5,010-3

2,30

Plavik

HF




6,810-4

3,17

Propion

CH3CH2COOH




1,3510-5

4,87

Rodanid

HNCS




1,410-1

0,85

Salitsilat

HOC6H4COOH




1,110-3

2,97

Selenat

H2SeO4

K2

8,910-3

2,05

Selenit

H2SeO3

K1

K2



2,410-3

4,810-9



2,62

8,32


Selenid

H2Se

K1

K2



1,310-4

1,010-11



3,89

11,00


Sianat

HCNO




3,510-4

3,46

Sianid

HCN




6,210-10

9,21

Silikat

H4SiO4

K1

K2

K3


1,310-10

1,610-12

2,010-14


9,90

11,80


13,70

Sirka

CH3COOH




1,7410-5

4,76

Sulfat

H2SO4

K2

1,210-2

1,94

Sulfit

H2SO3

K1

K2



1,710-2

6,210-8



1,76

7,20


Sulfid

H2S

K1

K2



8,910-8

1,310-13



7,05

12,90


Sut

CH3CH(OH)COOH




1,410-4

3,86

Tartrat (vino)

HOOCCH(OH)CH(OH)COOH

K1

K2



9,110-4

4,310-5



3,04

4,37


Trixlorsirka

CCl3COOH




2,010-1

0,70

Izo-Valerian

(CH3)2CHCH2COOH




1,710-5

4,78

N-Valerian

CH3(CH2) 3COOH




1,410-5

4,86

Xlorid

HCl




1107

-7

Xlorit

HClO2




1,110-2

1,97

Xlorsirka

CH2ClCOOH




1,410-3

2,86

Xromat

H2CrO4

K1

K2



1,810-1

3,210-7



0,74

6,50


Yodat

HJO3




1,610-1

0,79

Yodid

HJ




11011

-11

Asoslar

Ammiak

NH3




1,7610-5

4,76

Anilin

C6H5NH2




4,210-10

9,38

Bariy gidroksid

Ba(OH)2

K2

2,310-1

0,64

Dimetilamin

(CH3)2NH




1,110-3

2,97

Difenilamin

(C6H5)2NH




7,110-14

13,15

Dietilamin

(C2H5)2NH




9,610-4

3,02

Etilamin

C2H5NH2




4,710-4

3,33

Gidrazin

H2NNH2




9,810-7

6,01

Gidroksilamin

NH2OH




9,610-9

8,02

Kalsiy

gidroksid



Ca(OH)2

K2

4,010-2

1,40

Litiy gidroksid

LiOH




6,810-1

0,17

Metilamin

CH3NH2




5,2510-3

2,28

Natriy gidroksid

NaOH




5,9

-0,77

Piridin

C5H5N




1,510-9

8,82

Trimetilamin

(CH3)3N




8,110-5

4,09


3-ilova


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