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Chemistry Test 1

Total questions: 86

Worksheet time: 1hrs 12mins

Name
Class
Date
1.

physical property examples

a)

luster

b)

boiling/melting points

c)

density

d)

smell

e)

all of them

2.

a chemical compound always contains its component elements in a fixed ratio

(a)  

3.

formula to go from Fahrenheit to Celsius

(a)  

4.

gas->liquid

a)

sublimation

b)

condensation

c)

evaporation

d)

freezing

5.

sold->gas

a)

sublimation

b)

condensation

c)

evaporation

d)

freezing

6.

liquid->gas

a)

sublimation

b)

condensation

c)

evaporation

d)

freezing

7.

liquid->solid

a)

sublimation

b)

condensation

c)

evaporation

d)

freezing

8.

can be observed without changing the identity of a substance

a)

physical property

b)

chemical property

c)

chemical change

d)

physical change

9.

can only be observed without changing the identity

a)

physical property

b)

chemical property

c)

chemical change

d)

physical change

10.

mass can neither be created nor destroyed but it is transformed from one form to another

(a)  

11.

any non zero, zero at the end of the number to the right of a decimal point, zeroes between non zero numbers

(a)  

12.

zero at the end of a number with no decimal, zeros on the left of non zeros, zeros alone before the decimal

(a)  

13.

1 kilogram (kg)

a)

2.54 centimers (cm)

b)

100 centimeters (cm)

c)

1000 grams (g)

d)

1000 milliliters (mL) or 10^-6 microliters (ul)

14.

1 meter (m)

a)

2.54 centimeters (cm)

b)

100 centimeters (cm)

c)

1000 grams (g)

d)

1000 milliliters (mL) or 10^-6 microliters (ul)

15.

1 Liter (L)

a)

2.54 centimeters (cm)

b)

100 centimeters (cm)

c)

1000 grams (g)

d)

1000 milliliters (mL) or 10^-6 microliters (ul)

16.

1 inch (in)

a)

2.54 centimeters (cm)

b)

100 centimeters (cm)

c)

1000 grams (g)

d)

1000 milliliters (mL) or 10^-6 microliters (ul)

17.

Kelvin (K)

(a)  

18.

gas->solid

a)

melting

b)

deposition

c)

freezing

d)

sublimation

19.

solid->liquid

a)

melting

b)

deposition

c)

freezing

d)

sublimation

20.

formula to go from Celsius to Fahrenheit

(a)  

21.

reactivity, flammability, ability to rust, pH

a)

physical property

b)

chemical property

c)

chemical change

d)

physical change

22.

matter changes form but not chemical identity

(a)  

23.

a reaction occurs and new products are formed

(a)  

24.

melting ice, chopping wood, breaking glass

a)

physical property

b)

chemical property

c)

chemical change

d)

physical change

25.

burning wood, iron rusting, rotting banana

a)

physical property

b)

chemical property

c)

chemical change

d)

physical change

26.

time si unit

(a)  

27.

length si unit

(a)  

28.

mass si unit

(a)  

29.

electrical current si unit

(a)  

30.

thermodynamic temperature si unit

(a)  

31.

amount of substance si unit

(a)  

32.

liminosity si unit

(a)  

33.

all matter is made of invisible atoms, all atoms of the same element have the same mass & properties, compounds are combinations of two or more atoms

(a)  

34.

isotope

(a)  

35.

number of protons, what identifies of neutrons

(a)  

36.

numbe of protons + neutrons, will be different for the isotopes of each element

(a)  

37.

H

(a)  

38.

Li

(a)  

39.

Be

(a)  

40.

B

(a)  

41.

C

(a)  

42.

N

(a)  

43.

F

(a)  

44.

O

(a)  

45.

He

(a)  

46.

Ne

(a)  

47.

Na

(a)  

48.

Mg

(a)  

49.

Al

(a)  

50.

Silicon

(a)  

51.

phosphorus

(a)  

52.

S

(a)  

53.

Cl

(a)  

54.

Ar

(a)  

55.

B, Si, Ge, As, Sb, Te

(a)  

56.

right of metalloids

a)

metals

b)

non metals

c)

metalloids

d)

none

57.

hydrogen

(a)  

58.

left of metalloids

a)

metalloid

b)

nonmetals

c)

metals

d)

none

59.

speed of light = wavelength x frequency (c=upside down y weird v)

(a)  

60.

energy = planck's constant x frequency; e=h(weird v)

(a)  

61.

energy and frequency decrease

(a)  

62.

as frequency increases

(a)  

63.

go to the least decimal place

(a)  

64.

least number of sig figs

(a)  

65.

light is a beam of particles

(a)  

66.

light diffracts and therefore behaves like a wave

(a)  

67.

light has both particle and wave properties

(a)  

68.

allowed values of L when n=1

a)

0,1 (S,P)

b)

0 (S)

c)

0,1,2 (S,P,D)

d)

0,1,2,3 (S,P,D,F)

69.

allowed values of L when n=2

a)

0,1 (S,P)

b)

0 (S)

c)

0,1,2 (S,P,D)

d)

0,1,2,3 (S,P,D,F)

70.

allowed values of L when n=3

a)

0,1 (S,P)

b)

0 (S)

c)

0,1,2 (S,P,D)

d)

0,1,2,3 (S,P,D,F)

71.

allowed values of L when n=4

a)

0,1 (S,P)

b)

0 (S)

c)

0,1,2 (S,P,D)

d)

0,1,2,3 (S,P,D,F)

72.

allowed values of mL for S

a)

0,1,2; + or -

b)

0,1; + or -

c)

0

d)

0,1,2,3; + or -

73.

allowed values of mL for P

a)

0,1,2; + or -

b)

0,1; + or -

c)

0

d)

0,1,2,3; + or -

74.

allowed values of mL for D

a)

0,1,2; + or -

b)

0,1; + or -

c)

0

d)

0,1,2,3; + or -

75.

allowed values of mL for F

a)

0,1,2; + or -

b)

0,1; + or -

c)

0

d)

0,1,2,3; + or -

76.

how many allowed values of mL

a)

number of orbitals in subshell

b)

number of electrons present in subshell

c)

probability of finding an electron

77.

orbitals times 2

a)

number of orbitals in subshell

b)

number of electrons present in subshell

c)

probability of finding an electron

78.

what energy level its in

a)

number of orbitals in subshell

b)

number of electrons present in subshell

c)

probability of finding an electron

79.

orbitals in S subshell

(a)  

80.

orbitals in P subshell

(a)  

81.

orbitals in D subshell

(a)  

82.

orbitals in F subshell

(a)  

83.

S equals

(a)  

84.

P equals

(a)  

85.

D equals

(a)  

86.

F equals

(a)