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Hello Creativity!: Here Is Where Your Presentation Begins

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Hello

creativity!
Here is where your presentation begins
Whoa!
It could be the part of the presentation where you can introduce yourself,
write your email…
“This is a quote. Words full of wisdom that someone
important said and can make the reader get
inspired.”
—SOMEONE FAMOUS
About us
It could be the part of the
presentation where you can
introduce yourself, write your
email…
Strategy
This is the subtitle that makes it comprehensible
Table of
contents
01 introduction
Here you could describe the topic of the
section
02 Presentation
Here you could describe the topic of the
section
03 Conclusion
Here you could describe the topic of the
section
01
This is a great
headline
And this is the subtitle that makes it
comprehensible
The sliDe title goes here!

Do you know what helps you make your point clear?


Lists like this one:

● Because they’re simple


● You can organize your ideas clearly
● And because you’ll never forget to buy milk!

And the most important thing: the audience won’t miss the point of your
presentation
Maybe you need to divide
the content

Mercury Venus
Mercury is the closest planet to the Sun Venus has a beautiful name and is the
and the smallest one in the Solar System second planet from the Sun. It’s terribly
—it’s only a bit larger than our Moon. hot—even hotter than Mercury—and its
The planet’s name has nothing to do atmosphere is extremely poisonous. It’s
with the liquid metal since it was named the second-brightest natural object in
after the Roman messenger god, the night sky after the Moon
Mercury
You could use three columns, why not?

Mars Jupiter Saturn


Despite being red, Mars is a It’s the biggest planet in our Yes, this is the ringed one. It’s
cold place, not hot. It’s full of Solar System and the fourth- a gas giant, composed mostly
iron oxide dust, which gives brightest object in the sky of hydrogen and helium
the planet its reddish cast
02
A picture always reinforces the
concept
Images reveal large amounts of data quickly, so
remember: use an image instead of long texts.
Your audience will appreciate that
A picture is worth a
thousand words
Awesome words
03
Section 03
This is the subtitle that makes it
comprehensible
Reinforce the concept using
infographics!
JUPITER MERCURY
It’s a gas giant and the Mercury is the closest planet to the
biggest planet in our Sun and is only a bit larger than our
Solar System Moon

VENUS MARS
Venus has a beautiful name, Despite being red, Mars is a
but it’s terribly hot, even cold place, not hot. It’s full
hotter than Mercury of iron oxide dust
Infographics make your
idea understandable …

MERCURY JUPITER
Is the closest planet to It’s a gas giant and the
the Sun and is only a bit larger biggest planet in our Solar
than our Moon System

VENUS MARS
Venus has a beautiful name, Despite being red, Mars is
but it’s terribly hot, even a cold place. It’s full of
hotter than Mercury iron oxide dust
… and the same goes for tables

MASS DIAMETER SURFACE GRAVITY


(earths) (earths) (earths)

º
MERCURY 0,06 0,38 0,38

MARS 0,11 0,53 0,38

SATURN 95,2 9,4 1,16


If you want to modify this graph, click
on it, follow the link, change the data
and replace it
This is a map

JUPITER MERCURY
It’s a gas giant and the Mercury is the closest planet to the
biggest planet in our Sun and is only a bit larger than our
Solar System Moon

VENUS MARS
Venus has a beautiful name, Despite being red, Mars is a
but it’s terribly hot, even cold place, not hot. It’s full
hotter than Mercury of iron oxide dust
A timeline always works fine

DAY 1
DAY 3
Mercury is the closest planet to the
The Sun is the star at the center Sun
of the Solar System

DAY 2 DAY 4

Despite being red, Mars is a cold Jupiter is the biggest planet in


place, not hot our System
How about the percentageS?

MARS JUPITER
Despite being red,
Mars is a cold place, 25% 50% It’s a gas giant and the
biggest planet in our
not hot Solar System

VENUS MERCURY
Venus has a beautiful Mercury is the smallest
name, but it’s terribly 75% 85% planet in our Solar
hot System
4,498,300,000
Big numbers catch your audience’s attention
333,000.000
earths is the Sun’s mass

24H 37M 23S


is Jupiter’s rotation period

386,000 km
is the distance between the Earth and the Moon
Sometimes, reviewing concepts
is a good idea

MARS VENUS
Despite being red, Venus has a beautiful
Mars is a cold name, but it’s terribly
place. It’s full of hot, even hotter than
iron oxide dust Mercury

SATURN JUPITER
Saturn is, composed It’s a gas giant and
mostly of hydrogen the biggest planet in
and helium our Solar System
Our services

$35 $60 $85


You can explain your You can explain your You can explain your
product or your service product or your service product or your service

Characteristic Characteristic Characteristic


Characteristic Characteristic Characteristic

basic medium pro


Desktop
Software
You can replace the image on the
screen with your own work. Just
delete this one, add yours and send
it to the back
Tablet
APP
You can replace the image on the
screen with your own work. Just
delete this one, add yours and send
it to the back
Mobile
web
You can replace the image on the
screen with your own work. Just
delete this one, add yours and send
it to the back
Our team

JOHN DOE HELENA JAMES PATTERSON


You can replace the image JAMES
You can replace the image You can replace the image
on the screen with your on the screen with your on the screen with your
own own own
Thanks!
Does anyone have any questions?

addyouremail@freepik.com
+91 620 421 838
yourcompany.com
Credits
This is where you give credit to the ones who are part of this project.
Did you like the resources on this template? Get them for free at our other websites.

◂ Presentation template by Slidesgo


◂ Icons by Flaticon
◂ Images & infographics by Freepik
◂ Author introduction slide photo created by Freepik
◂ Text & Image slide photo created by Freepik.com
◂ Big image slide photo created by Freepik.com
CONTOH SOAL :

Seorang peneliti bidang kedokteran melakukan percobaan untuk meneliti hubungan di antara
aktifitas metabolik di antara kelinci-kelinci percobaan dan daya tahan terhadap kuman
tuberculosis (tbc). Peneliti menetapkan 4 perlakuan sebagai berikut:
P1 = kontrol (tidak divaksinasi)
P2 = diinfeksi (ditularkan) kuman tbc selama aktifitas metabolik rendah.
P3 = diinfeksi (ditularkan) kuman tbc selama aktifitas metabolik tinggi.
P4 = diinfeksi (ditularkan) kuman tbc selama aktifitas metabolik normal, tetapi terlebih
dahulu diirradiasi dengan 400 rontgens.

Perlakuan P1 dan P2 diulang sebanyak 7 kali (n1 = n2 = 7), perlakuan P3 diulang 5 kali (n3
= 5), dan P4 diulang sebanyak 2 kali (n4 = 2). Peubah respon yang diamati ada 2 yaitu:
Y1 = banyaknya basil yang hidup per tubercle formed (mm).
Y2 = banyaknya basil yang hidup per tubercle size (mm).
Data hasil pengamatan seperti pada tabel di bawah ini. Banyaknya Basil yang Hidup per Tubercle Formed (Y1)
dan Tubercle Size (Y2) dalam mm.

Ulangan P1 P2 P3 P4
Y1 Y2 Y1 Y2 Y1 Y2 Y1 Y2
1 24.0 3.5 7.4 3.5 16.4 3.2 25.1 2.7
2 13.3 3.5 13.2 3.0 24.0 2.5 5.9 2.3
3 12.2 4.0 8.5 3.0 53.0 1.5    
4 14.0 4.0 10.1 3.0 32.7 2.6    
5 22.2 3.6 9.3 2.0 42.8 2.0    
6 16.1 4.3 8.5 2.5        
7 27.9 5.2 4.3 1.5        
Total 129.7 28.1 61.3 18.5 168.9 11.8 31.0 5.0
Rata-rata 18.5286 4.0143 8.7571 2.6428 33.7800 23.600 15.5000 2.5000

 Hipotesis :
terdapat hubungan di antara aktifitas metabolik di antara kelinci-kelinci percobaan dan daya
tahan terhadap kuman tuberculosis (tbc)
tidak terdapat hubungan diantara aktifitas metabolik diantara kelinci-kelinci percobaan dan daya tahan terhadap
kuman tuberculosis (tbc)
 
Langkah-langkah teknis perhitungan:
Perhitungan Faktor Koreksi (FK) untuk untuk respon dan

FK untuk respon

FK untuk respon

FK untuk respon dan


 Perhitungan Jumlah Kuadrat Total Terkoreksi (JKT) dan Jumlah Hasil Kali Total Terkoreksi
(JHKT) untuk respon dan
JKT untuk respon

JKT untuk respon

 
JHKT untuk respon dan
 Perhitungan Jumlah Kuadrat Perlakuan Terkoreksi (JKP) dan Jumlah Hasil Kali Perlakuan
Terkoreksi (JHKP) untuk respon dan

JKP untuk respon

JKP untuk respon

JHKP untuk repson dan


 Perhitungan Jumlah Kuadrat Galat (JKG) dan Jumlah Hasil Kali Galat (JHKG) untuk
respon dan

JKG untuk respon

JKG untuk respon

JHKG untuk respon dan


Hasil perhitungan yang diperoleh sebelumnya dapat dirangkum dalam suatu tabel analisis
ragam peubah ganda satu arah (One-way Manova) seperti berikut:

Tabel Analisis Ragam Peubah Ganda Satu Arah (One-way Manova)

Sumber Derajat Bebas (db) JK dan JHK


Keragaman
Perlakuan (P) 3
 
Galat (G) 17
Galat (G) 17  
Total (T) 20
 
Total (T) 20
 Statistik uji Lambda-Wilks (-Wilks), sebagai berikut:

Dimana;
determinan dari matriks galat (G)
determinan dari matriks total (T)
Selanjutnya besaran  yang dihitung dari rumus di atas dibandingkan
dengan tabel distribusi dengan kaidah keputusan sebagai berikut:

Di mana:
banyak peubah respon yang diamati.
derajat perlakuan
derajat bebas galat
 Berdasarkan tabel di atas diperoleh:

Nilai tabel diperoleh

Karena

maka sesuai dengan kaidah keputusan di atas maka ditolak.


 Dalam kasus di atas, hal ini berarti sesuai dengan kriteria transformasi untuk
sehingga transformasi dari dapat dilakukan sebagai berikut:

Selanjutnya besaran ini dibandingkan dengan nilai dari tabel dengan derajat bebas .
Jika kita menetapkan , maka . Karena besaran maka kita menolak ada taraf
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