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Social sciences

Geography

Grade 8

Mapwork

Module 11

Direction and bearing

1. Why should we be able to read a map?

A map is a reduction of reality as it seen perpendicularly from above and drawn to a certain scale. The scale indicates the number of times by which reality is reduced.

A good map provides information with regard to location, direction, distance, relief, routes and more. The reader can therefore read the information with ease and draw precise conclusions from it.

The series of 1:50 000 topographic maps of South Africa will be used for our studies. This is a collection of maps that cover the whole of South Africa. Each map in the series has a number to indicate its exact location and what its coordinates are. (see section 2.2.3)

A topographic map does not present phenomena of the landscape only, but also pictures the topography (relief) of the landscape by means of contour lines (see section 2.5.3).

These maps are all drawn to a scale of 1:50 000. This means that each centimetre on the map in reality represents 50 000 centimetres of the landscape. The true size is therefore reduced 50 times (see section 2.4).

To be able to read the map, you have to know and understand the symbols that are used in mapping (see section 2.5).

2. The basic elements of a map

2.1 Direction and Bearing

To be useful, a map needs to indicate the direction in which North is located. If such an indication is missing, the map must be rotated to make it readable, i.e. to have words running from left to right. This will position the northern part of the map in the position that is furthest from the reader.

2.1.1 Direction

The position of different places on the map in respect of one another can be determined by

The direction of the compass

Activity 1:

Complete figure 2 by labelling the 16 main compass points.

[lo 1.1]

Always take careful note of the point FROM which and the point TO which you have to work.

Example:

What is the direction FROM A to B = ENE

What is the direction FROM B to C = S

What is the direction FROM C to D = W

What is the direction FROM C to A = NW

What is the direction FROM B to D = SW

What is the direction FROM D to A = NNW

What is the direction FROM A to D = SSE

2.1.2 Bearing

Bearing is a more accurate measurement that direction, because it is expressed as an ANGLE.

All bearings are taken to the right (clockwise) from NORTH by means of a protractor.

Take good note of the points FROM which and TO which you have to work to determine bearing.

The steps you have to take are:

Connect the relevant points by means of a pencilled line.

Draw the line to North through the point FROM which you have to take the measurement.

Position the protractor by placing 0º against the north line, with the centre on the point from which you have to measure.

Measure the angle from the north line to the connecting line (pencilled line of Step 1) to the right (clockwise).

Example 1:

What is the bearing from A to B?

Example 2:

What is the bearing from A to B?

Activity 2:

Study the map and calculate the direction and the bearing.

[lo 1.1]

What is the direction?
a) From A to B?
b) From C to B?
c) From C to D?
d) From D to E?
e) From E to B?
What is the bearing?
a) From A to B?
b) From C to B?
c) From C to D?
d) From D to E?
e) From E to B?

Assessment

Learning Outcomes(LOs)
LO 1
Geographical EnquiryThe learner will be able to use enquiry skills to investigate geographical and environmental concepts and processes.
Assessment Standards(ASs)
We know this when the learner:
  • identifies and selects a variety of
geographical and environmental sourcesthat are relevant to the research;
  • interprets information from maps and
atlases, as well as graphic and statisticalsources;
  • calculates distance from maps and
compares it to real distance;
  • identifies physical features and features
created by people and aerial photographsand maps.

Memorandum

ACTIVITY 1:

ACTIVITY 2:

The Direction

  1. SW
  2. WSW
  3. ENE
  4. SSW
  5. WNW

The bearing is

  1. 180 + 33 = ± 213º
  2. 180 69 = 249º
  3. ± 75º
  4. ± 23º
  5. ± 94º

Questions & Answers

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research.net
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Introduction about quantum dots in nanotechnology
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there is no specific books for beginners but there is book called principle of nanotechnology
NANO
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are you nano engineer ?
s.
fullerene is a bucky ball aka Carbon 60 molecule. It was name by the architect Fuller. He design the geodesic dome. it resembles a soccer ball.
Tarell
what is the actual application of fullerenes nowadays?
Damian
That is a great question Damian. best way to answer that question is to Google it. there are hundreds of applications for buck minister fullerenes, from medical to aerospace. you can also find plenty of research papers that will give you great detail on the potential applications of fullerenes.
Tarell
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Abhijith Reply
Mostly, they use nano carbon for electronics and for materials to be strengthened.
Virgil
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CYNTHIA
carbon nanotubes has various application in fuel cells membrane, current research on cancer drug,and in electronics MEMS and NEMS etc
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s. Reply
Yeah, it is a pain to say the least. You basically have to heat the substarte up to around 1000 degrees celcius then pass phosphene gas over top of it, which is explosive and toxic by the way, under very low pressure.
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s.
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for screen printed electrodes ?
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s. Reply
of graphene you mean?
Ebrahim
or in general
Ebrahim
in general
s.
Graphene has a hexagonal structure
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Source:  OpenStax, Geography grade 8. OpenStax CNX. Sep 11, 2009 Download for free at http://cnx.org/content/col11036/1.1
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