-ffi=z

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Wavelength, Frequency, Speed & Energy Worksheet c=Av v=c/A. A=c/v ... The longer the wavelength, the Shorlgr the frequency, is an inverse. 9. On the EMĀ ...
Wavelength, Frequency, Speed & Energy Worksheet c=Av

A=c/v

v=c/A

E=hv

E=hc/1"

c = speed of light (3.0 x 108 m/s) I = wavelength v = frequency E = energy h = Planck's constant (6.6262 x 1O-3a J.s)

-ffi=z i.o-;;+;,fi.''-ri'i)-=J

1.CalculatetheAgiventhevofraQiationis5.10x1O1as-1-

2

"'?:'6lfolElioHffiY',xii$

i'ffi

o' " :T

(a'5 tr'ro

n

@

3.

The more I shave my face, the shorter my beard is an example of a inversely proportional or directlv proportional relationshiO? inVersely

4.

The more I lift weights, the strongel.I become, is an example of an inverselv proportional or directlv proportional relationshin. drrcctly

5.

The longer the wavelength, relationship

the Shorlgr

the frequency, is an inverse

6. Which color has the longest wavelengthZ ccd 7. Which color has the shortest wavelengthZ_+:yjOlst8. On the EM Spectrum, which type of wave has the longest wavelength? rodio ht^vrr r05( 9. On the EM Spectrum, which type of wave has the shortest wavelength? $0mn0,

10. What is the energy of x- radiation with a 1 x 10-6m wavelength?

-.,'

;-=q"

ffi

! = 3*r,'1s-'

11.What js the energy (Joules) of Violet

lFl' #ff-:Si-l

1l,to'\-')

lig[t with a freque-lrcy = 7.50 x 1014 s-1-.

E:_l!.bzb v to-B{ J.s) (r. 5o*td\ s'')

(higher / tower) the energy. This is an 12.The higher the frffincy, the hiq\et example of a/an d\rtcl --A*.r*loiiec[) relationship.

13.The higher the wavelength, the example of a/an inVcrst

loUq"

(higher / lower) the energy. This is an (inverse/direct) relationship.

14. Which color has

the most energyz Il0tct

15. Which color has

the least energy?

FRd

16. On

the

EM Spectrum, which

type of wave has the most energy?

17, On

the

EM Spectrum, which

type of wave has the least energy?

Electron Configuration & Orbital Filling Diagram WS Usinq the Lonq Method. qive the Electron Confiouration: 1.

Masnesium (Ms):

2.

Potassium

3.

Lithium (Li):

4.

Nickel (Ni):

5.

is2 2s2 2p':

6.

1s2

7.

[Ar]4s'z3d'o4pu:

8.

[Kr] 5s2

(x):

ls?z

lSz

nton

2s2 2p6:

2p63sz

lNd

+o': r| lf rium

Orbital Fillinq Diaqrams

1s 2s

2p

ru ru

ffi

9.

11.

1s

2s

istheerement corbon

2p

(c)

3p

3d

Eru mrnEF[rrum 12C \g H Etr 13

Ni(short;jL*u,

LA"lg

lt 4t t4u h

t t t t

4

$3d

ldentifv the followinq elements: 12.

1sz 2s2 2p4

13.

1s2 2s2 2po gs2 3p5

14.

1s2 2s2 2p6 Bs2 3p5 4s2 3de

15.

[Ne] 3s2 3p3

16.

[Ar]4s2 3d1o4p6

17.

[Kr] 5s2 4d6

Determine the Electron Confiquration using the short Method:

., Z'l 1' tNel 5S Jp 19. strontium tKr I 5Sz 18. sulfur

20. bromine

tfl't t{s'3J'o {P 5

21. zirconium tKr I 5S" 22. motybdenum 1K.

1

tld'

5S'tldq

erement

chroniu^

(C)

Electron Configuration Review 1. 2. 3. 4.

is Suherico.l

The s orbital

The p orbitar is dtrrnb

shaped, appears in

hll

shaped, appears in

5.

,, Clo*rl,qT6r,l[]shaped, appears in The f orbital shaped, appears in X 't The Aufbau Principle states that

6.

Hunds Rule states that

7.

Pauli exclusion principal states that

8.

ln the electron cloud

9.

vatence etectrons

rhe d orbita,

model,

ur"

g0

Ou{tr

2 e(a number) shape/s, and can rrotd 6 e(a number) shape/s, and can hotd l0 e-

I 3 5 7

( a number) shape/s, and can

( a number) shape/s, and can

hors

hou /Y

percentage of electrons are predicted tJ Oe located in the cloud/orbital.

sAell

e- and core etectrons

are

inner

Sl,e

lJ

10. 1s2 2s2 2p63s23p6 4s2 3d104p65s'4d'o 5p3 is:

"-

11. What element has its outermost electron is 7s1?

12. Ftuorine - Long e-

1e-

config: lS"2S' ZPS

short e- confis:

tHe]2i

Orbital filling diagram 13.

silicon - Long e- config: tS'ZSt

rtlel

Short e- contig:

f,Ne

,

S

Orbital f illing diagram 14. Gotd - Lons

'71

e

e-confis: ls"ZfZpL3s"3p6qsz 3J'"qrt" shorr e-conrig: Sal

Stle

[yil6f4{'*

5r"rld'"5ro6.'qf

n5.{q

ls"2d+=b3!:.3p: tls"3d '"qp6 j'"sot' oa a*a-, shorr e- config:[KrJ5s'q

15. Xe - Long e-

conris:

Zr ?4

16.

U

17.

oxygen tong e-config,

short e-config:

ls"ZstZ

18. Ba short e-config:

Xel6s'

19. Pb long e-config:

"t-Ll-6

,'3J

','

20. Label the adjacent pictures as

highest longest highest highest

Vrt3\f & lowest frequency aript: & shoftest wavelength *-P"'"[ ll I I I & lowest I ll \/ I & lowest hiltristr>

energy amplitude

Shdrtcs+

MA lo*xsh

eruplihrd