100% satisfaction guarantee Immediately available after payment Both online and in PDF No strings attached 4.6 TrustPilot
logo-home
Summary

Summary IB biology topic 1

Rating
-
Sold
-
Pages
38
Uploaded on
04-06-2024
Written in
2023/2024

usable for both SL and HL












Whoops! We can’t load your doc right now. Try again or contact support.

Document information

Uploaded on
June 4, 2024
Number of pages
38
Written in
2023/2024
Type
Summary

Content preview

I introduction of cells




① cell size




S
1 m = 1000 mm

1um
=
10 m
1 mm = 1000 um (micrometre

1 nm
=
10 im
1 um = 1000 nm (nanometre



② cell theory

function ideas
cell unit structure and in
living things contains basic
·
: of

·

building block of structure in living things
· smallest unit of life

·
derived from other cells by cell division




·
origin of cell theory (by biologist's experiment)


1) Robert Hook (1662) :




first to use term ' cells' from

his observasion a cock




Leeuwenhoek (1680)
2) Anthonie van




invented microscope with
magnification

, 3) Robert Brown (1831)


observed and named the cell nucleus




4) Matthias Schleiden (1838) & Theodor Schwann (1839)




·
established cell as the natural unit of form and function in living things


· cells are
organism ,
and entire animals and
plants are
aggregated


5) Rudolf Virchow (1856)




established the idea cells arise




cells
only by division of
existing


6) Louis Pastear (1862)



established that life does not




spontaneously generate


③ examining cells




·

magnification : number of times larger an
image is than specimen


· resolution :
ability to separate small objects which are very close together

image size
~

I
=> I AM
=




A M

S
actual size magnification

, What is the
magnification of this picture ?
eg
.


Size of specimen


1) measure image =
95 mm > 95
, 000 um




2) measure scale bar =
19 mm + 19
,
000 um
w
↳ actual (
represent = 0 . 1 mm = 100 um




3) length of cell
=
100 um 95000m
19000 um
C =
actual size)


= 500 Um


Magnification

4) I =
AM


M =
=

9 5000 m
=


500 Um




=
X 190




·
graticule : use to calibrate on
stage microscope

, eg1)
Tomm




>
magnification
-





14 mu




70 -
mm

① 5 um =
Actual size 25 um
mm
=

14




② I =
AM


M = =
mm + 1000 =
280




2)
small driv = 0 1
.
mm = 100 um




·
100 um =
40 graticule
stage


0 1 mm
.
Y micrometer

: 1 graticule




2 5
.
Mm = 1 graticule


↓ eye-piece
4 graticule 2 51m 5 Um
·
= = 3 = 7
graticule
.
.
£13.07
Get access to the full document:

100% satisfaction guarantee
Immediately available after payment
Both online and in PDF
No strings attached

Get to know the seller
Seller avatar
thunyanannithakorn

Get to know the seller

Seller avatar
thunyanannithakorn
View profile
Follow You need to be logged in order to follow users or courses
Sold
0
Member since
1 year
Number of followers
0
Documents
5
Last sold
-

0.0

0 reviews

5
0
4
0
3
0
2
0
1
0

Recently viewed by you

Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their exams and reviewed by others who've used these revision notes.

Didn't get what you expected? Choose another document

No problem! You can straightaway pick a different document that better suits what you're after.

Pay as you like, start learning straight away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and smashed it. It really can be that simple.”

Alisha Student

Frequently asked questions