SlideShare a Scribd company logo
1 of 23
Download to read offline
Equation of Lines
(Linear Function)
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
                      m  slope
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
                      m  slope
                      b  y intercept
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
                      m  slope
                      b  y intercept

                              OR
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
                      m  slope
                      b  y intercept

                              OR
                  Ax  By  C  0
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
                      m  slope
                      b  y intercept

                              OR
                  Ax  By  C  0 (general form)
Equation of Lines
              (Linear Function)
All straight lines can be written in the form;
                            y  mx  b
                      m  slope
                      b  y intercept

                             OR
                Ax  By  C  0 (general form)
              Note: A, B, C are integers or surds
Equation of Lines
               (Linear Function)
 All straight lines can be written in the form;
                              y  mx  b
                       m  slope
                       b  y intercept

                               OR
                  Ax  By  C  0 (general form)
                Note: A, B, C are integers or surds
e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing
     through (0,6) in general form.
Equation of Lines
               (Linear Function)
 All straight lines can be written in the form;
                              y  mx  b
                       m  slope
                       b  y intercept

                               OR
                  Ax  By  C  0 (general form)
                Note: A, B, C are integers or surds
e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing
     through (0,6) in general form.
                 1
  required m  
                  5
Equation of Lines
               (Linear Function)
 All straight lines can be written in the form;
                              y  mx  b
                       m  slope
                       b  y intercept

                               OR
                  Ax  By  C  0 (general form)
                Note: A, B, C are integers or surds
e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing
     through (0,6) in general form.              1
                                           y   x6
                 1                               5
  required m  
                  5
Equation of Lines
               (Linear Function)
 All straight lines can be written in the form;
                              y  mx  b
                       m  slope
                       b  y intercept

                               OR
                  Ax  By  C  0 (general form)
                Note: A, B, C are integers or surds
e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing
     through (0,6) in general form.              1
                                           y   x6
                 1                                5
  required m                            5 y   x  30
                  5
Equation of Lines
               (Linear Function)
 All straight lines can be written in the form;
                              y  mx  b
                       m  slope
                       b  y intercept

                               OR
                  Ax  By  C  0 (general form)
                Note: A, B, C are integers or surds
e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing
     through (0,6) in general form.               1
                                            y   x6
                 1                                5
  required m                            5 y   x  30
                  5
                                          x  5 y  30  0
Note: lines parallel to the x axis (y = c)
Note: lines parallel to the x axis (y = c)
                  y




                                 x
Note: lines parallel to the x axis (y = c)
                  y


                                3, 2 
                                 x
Note: lines parallel to the x axis (y = c)
                  y


                                3, 2 
                                 x

                              y2
Note: lines parallel to the x axis (y = c)
                  y


                                 3, 2 
                                  x

                              y2


  lines parallel to the y axis (x = k)
Note: lines parallel to the x axis (y = c)
                  y


                                 3, 2 
                                  x

                              y2


  lines parallel to the y axis (x = k)
                  y




                                  x
Note: lines parallel to the x axis (y = c)
                  y


                                 3, 2 
                                  x

                              y2


  lines parallel to the y axis (x = k)
                  y


                                 3, 2 
                                  x
Note: lines parallel to the x axis (y = c)
                  y


                                 3, 2 
                                  x

                              y2


  lines parallel to the y axis (x = k)
                  y


                                 3, 2 
                                  x

                                      x3
Note: lines parallel to the x axis (y = c)
                  y


                                 3, 2 
                                  x

                              y2
                                             Exercise 5C; 1b, 3cf, 4a,
                                                5d, 6df, 8df, 10b,
                                                     11c, 12
  lines parallel to the y axis (x = k)
                  y


                                 3, 2 
                                  x

                                      x3

More Related Content

What's hot

Linear equations
Linear equationsLinear equations
Linear equationscathyguyer
 
Tracing of cartesian curve
Tracing of cartesian curveTracing of cartesian curve
Tracing of cartesian curveKaushal Patel
 
Coons bicubic surface
Coons bicubic surfaceCoons bicubic surface
Coons bicubic surfaceramac123
 
Data structure computer graphs
Data structure computer graphsData structure computer graphs
Data structure computer graphsKumar
 
1.15.08 Differentials
1.15.08   Differentials1.15.08   Differentials
1.15.08 Differentialschrismac47
 
Straight Lines ( Especially For XI )
Straight Lines ( Especially For XI ) Straight Lines ( Especially For XI )
Straight Lines ( Especially For XI ) Atit Gaonkar
 
Engg. mathematics iii
Engg. mathematics iiiEngg. mathematics iii
Engg. mathematics iiimanoj302009
 
Graph in data structure
Graph in data structureGraph in data structure
Graph in data structureAbrish06
 
Graphs In Data Structure
Graphs In Data StructureGraphs In Data Structure
Graphs In Data StructureAnuj Modi
 
Graph data structure
Graph data structureGraph data structure
Graph data structureTech_MX
 
11X1 T11 01 graphing quadratics
11X1 T11 01 graphing quadratics11X1 T11 01 graphing quadratics
11X1 T11 01 graphing quadraticsNigel Simmons
 
11X1 T10 01 graphing quadratics (2010)
11X1 T10 01 graphing quadratics (2010)11X1 T10 01 graphing quadratics (2010)
11X1 T10 01 graphing quadratics (2010)Nigel Simmons
 

What's hot (14)

Linear equations
Linear equationsLinear equations
Linear equations
 
Tracing of cartesian curve
Tracing of cartesian curveTracing of cartesian curve
Tracing of cartesian curve
 
Coons bicubic surface
Coons bicubic surfaceCoons bicubic surface
Coons bicubic surface
 
Data structure computer graphs
Data structure computer graphsData structure computer graphs
Data structure computer graphs
 
1.15.08 Differentials
1.15.08   Differentials1.15.08   Differentials
1.15.08 Differentials
 
Straight Lines ( Especially For XI )
Straight Lines ( Especially For XI ) Straight Lines ( Especially For XI )
Straight Lines ( Especially For XI )
 
Data structure
Data structureData structure
Data structure
 
Graph
GraphGraph
Graph
 
Engg. mathematics iii
Engg. mathematics iiiEngg. mathematics iii
Engg. mathematics iii
 
Graph in data structure
Graph in data structureGraph in data structure
Graph in data structure
 
Graphs In Data Structure
Graphs In Data StructureGraphs In Data Structure
Graphs In Data Structure
 
Graph data structure
Graph data structureGraph data structure
Graph data structure
 
11X1 T11 01 graphing quadratics
11X1 T11 01 graphing quadratics11X1 T11 01 graphing quadratics
11X1 T11 01 graphing quadratics
 
11X1 T10 01 graphing quadratics (2010)
11X1 T10 01 graphing quadratics (2010)11X1 T10 01 graphing quadratics (2010)
11X1 T10 01 graphing quadratics (2010)
 

Viewers also liked

11 x1 t05 06 line through pt of intersection (2013)
11 x1 t05 06 line through pt of intersection (2013)11 x1 t05 06 line through pt of intersection (2013)
11 x1 t05 06 line through pt of intersection (2013)Nigel Simmons
 
X2 t02 03 roots & coefficients (2013)
X2 t02 03 roots & coefficients (2013)X2 t02 03 roots & coefficients (2013)
X2 t02 03 roots & coefficients (2013)Nigel Simmons
 
11 x1 t05 04 point slope formula (2013)
11 x1 t05 04 point slope formula (2013)11 x1 t05 04 point slope formula (2013)
11 x1 t05 04 point slope formula (2013)Nigel Simmons
 
X2 t08 04 inequality techniques (2012)
X2 t08 04 inequality techniques (2012)X2 t08 04 inequality techniques (2012)
X2 t08 04 inequality techniques (2012)Nigel Simmons
 
11 x1 t13 05 tangent theorems 1 (2012)
11 x1 t13 05 tangent theorems 1 (2012)11 x1 t13 05 tangent theorems 1 (2012)
11 x1 t13 05 tangent theorems 1 (2012)Nigel Simmons
 
11 x1 t05 05 perpendicular distance (2013)
11 x1 t05 05 perpendicular distance (2013)11 x1 t05 05 perpendicular distance (2013)
11 x1 t05 05 perpendicular distance (2013)Nigel Simmons
 
X2 t08 03 inequalities & graphs (2012)
X2 t08 03 inequalities & graphs (2012)X2 t08 03 inequalities & graphs (2012)
X2 t08 03 inequalities & graphs (2012)Nigel Simmons
 
11 x1 t05 02 gradient (2013)
11 x1 t05 02 gradient (2013)11 x1 t05 02 gradient (2013)
11 x1 t05 02 gradient (2013)Nigel Simmons
 
11 x1 t13 06 tangent theorems 2 (2012)
11 x1 t13 06 tangent theorems 2 (2012)11 x1 t13 06 tangent theorems 2 (2012)
11 x1 t13 06 tangent theorems 2 (2012)Nigel Simmons
 
12 x1 t01 03 integrating derivative on function (2013)
12 x1 t01 03 integrating derivative on function (2013)12 x1 t01 03 integrating derivative on function (2013)
12 x1 t01 03 integrating derivative on function (2013)Nigel Simmons
 
11 x1 t13 07 products of intercepts (2012)
11 x1 t13 07 products of intercepts (2012)11 x1 t13 07 products of intercepts (2012)
11 x1 t13 07 products of intercepts (2012)Nigel Simmons
 
11X1 T07 01 definitions & chord theorems
11X1 T07 01 definitions & chord theorems11X1 T07 01 definitions & chord theorems
11X1 T07 01 definitions & chord theoremsNigel Simmons
 
12 x1 t01 01 log laws (2013)
12 x1 t01 01 log laws (2013)12 x1 t01 01 log laws (2013)
12 x1 t01 01 log laws (2013)Nigel Simmons
 
X2 t02 04 forming polynomials (2013)
X2 t02 04 forming polynomials (2013)X2 t02 04 forming polynomials (2013)
X2 t02 04 forming polynomials (2013)Nigel Simmons
 
12 x1 t01 02 differentiating logs (2013)
12 x1 t01 02 differentiating logs (2013)12 x1 t01 02 differentiating logs (2013)
12 x1 t01 02 differentiating logs (2013)Nigel Simmons
 
Goodbye slideshare UPDATE
Goodbye slideshare UPDATEGoodbye slideshare UPDATE
Goodbye slideshare UPDATENigel Simmons
 

Viewers also liked (16)

11 x1 t05 06 line through pt of intersection (2013)
11 x1 t05 06 line through pt of intersection (2013)11 x1 t05 06 line through pt of intersection (2013)
11 x1 t05 06 line through pt of intersection (2013)
 
X2 t02 03 roots & coefficients (2013)
X2 t02 03 roots & coefficients (2013)X2 t02 03 roots & coefficients (2013)
X2 t02 03 roots & coefficients (2013)
 
11 x1 t05 04 point slope formula (2013)
11 x1 t05 04 point slope formula (2013)11 x1 t05 04 point slope formula (2013)
11 x1 t05 04 point slope formula (2013)
 
X2 t08 04 inequality techniques (2012)
X2 t08 04 inequality techniques (2012)X2 t08 04 inequality techniques (2012)
X2 t08 04 inequality techniques (2012)
 
11 x1 t13 05 tangent theorems 1 (2012)
11 x1 t13 05 tangent theorems 1 (2012)11 x1 t13 05 tangent theorems 1 (2012)
11 x1 t13 05 tangent theorems 1 (2012)
 
11 x1 t05 05 perpendicular distance (2013)
11 x1 t05 05 perpendicular distance (2013)11 x1 t05 05 perpendicular distance (2013)
11 x1 t05 05 perpendicular distance (2013)
 
X2 t08 03 inequalities & graphs (2012)
X2 t08 03 inequalities & graphs (2012)X2 t08 03 inequalities & graphs (2012)
X2 t08 03 inequalities & graphs (2012)
 
11 x1 t05 02 gradient (2013)
11 x1 t05 02 gradient (2013)11 x1 t05 02 gradient (2013)
11 x1 t05 02 gradient (2013)
 
11 x1 t13 06 tangent theorems 2 (2012)
11 x1 t13 06 tangent theorems 2 (2012)11 x1 t13 06 tangent theorems 2 (2012)
11 x1 t13 06 tangent theorems 2 (2012)
 
12 x1 t01 03 integrating derivative on function (2013)
12 x1 t01 03 integrating derivative on function (2013)12 x1 t01 03 integrating derivative on function (2013)
12 x1 t01 03 integrating derivative on function (2013)
 
11 x1 t13 07 products of intercepts (2012)
11 x1 t13 07 products of intercepts (2012)11 x1 t13 07 products of intercepts (2012)
11 x1 t13 07 products of intercepts (2012)
 
11X1 T07 01 definitions & chord theorems
11X1 T07 01 definitions & chord theorems11X1 T07 01 definitions & chord theorems
11X1 T07 01 definitions & chord theorems
 
12 x1 t01 01 log laws (2013)
12 x1 t01 01 log laws (2013)12 x1 t01 01 log laws (2013)
12 x1 t01 01 log laws (2013)
 
X2 t02 04 forming polynomials (2013)
X2 t02 04 forming polynomials (2013)X2 t02 04 forming polynomials (2013)
X2 t02 04 forming polynomials (2013)
 
12 x1 t01 02 differentiating logs (2013)
12 x1 t01 02 differentiating logs (2013)12 x1 t01 02 differentiating logs (2013)
12 x1 t01 02 differentiating logs (2013)
 
Goodbye slideshare UPDATE
Goodbye slideshare UPDATEGoodbye slideshare UPDATE
Goodbye slideshare UPDATE
 

Similar to 11 x1 t05 03 equation of lines (2013)

11 X1 T05 03 Equation Of Lines
11 X1 T05 03 Equation Of Lines11 X1 T05 03 Equation Of Lines
11 X1 T05 03 Equation Of LinesNigel Simmons
 
2.5 Equations of Lines
2.5 Equations of Lines2.5 Equations of Lines
2.5 Equations of Linessmiller5
 
Copy_of_slopeofaline (1).ppt
Copy_of_slopeofaline (1).pptCopy_of_slopeofaline (1).ppt
Copy_of_slopeofaline (1).pptLeianMartin1
 
Copy_of_slopeofaline.ppt
Copy_of_slopeofaline.pptCopy_of_slopeofaline.ppt
Copy_of_slopeofaline.pptchinnurulz
 
The gradient of a straight line
The gradient of a straight lineThe gradient of a straight line
The gradient of a straight lineAwais Khan
 
Bba i-bm-u-4-coordinate geometry
Bba i-bm-u-4-coordinate geometryBba i-bm-u-4-coordinate geometry
Bba i-bm-u-4-coordinate geometryRai University
 
Lesson 6 straight line
Lesson 6    straight lineLesson 6    straight line
Lesson 6 straight lineJean Leano
 
Graphquadraticfcns2
Graphquadraticfcns2Graphquadraticfcns2
Graphquadraticfcns2loptruonga2
 
11X1 t10 01 graphing quadratics (2011)
11X1 t10 01 graphing quadratics (2011)11X1 t10 01 graphing quadratics (2011)
11X1 t10 01 graphing quadratics (2011)Nigel Simmons
 
11 x1 t10 01 graphing quadratics (2012)
11 x1 t10 01 graphing quadratics (2012)11 x1 t10 01 graphing quadratics (2012)
11 x1 t10 01 graphing quadratics (2012)Nigel Simmons
 
WRITING AND GRAPHING LINEAR EQUATIONS 1.pptx
WRITING AND GRAPHING LINEAR EQUATIONS 1.pptxWRITING AND GRAPHING LINEAR EQUATIONS 1.pptx
WRITING AND GRAPHING LINEAR EQUATIONS 1.pptxKristenHathcock
 
1.4.4 Parallel and Perpendicular Line Equations
1.4.4 Parallel and Perpendicular Line Equations1.4.4 Parallel and Perpendicular Line Equations
1.4.4 Parallel and Perpendicular Line Equationssmiller5
 
March 19
March 19March 19
March 19khyps13
 
X2 t07 01 features calculus (2013)
X2 t07 01 features calculus (2013)X2 t07 01 features calculus (2013)
X2 t07 01 features calculus (2013)Nigel Simmons
 

Similar to 11 x1 t05 03 equation of lines (2013) (20)

11 X1 T05 03 Equation Of Lines
11 X1 T05 03 Equation Of Lines11 X1 T05 03 Equation Of Lines
11 X1 T05 03 Equation Of Lines
 
2.5 Equations of Lines
2.5 Equations of Lines2.5 Equations of Lines
2.5 Equations of Lines
 
identities1.2
identities1.2identities1.2
identities1.2
 
Copy_of_slopeofaline (1).ppt
Copy_of_slopeofaline (1).pptCopy_of_slopeofaline (1).ppt
Copy_of_slopeofaline (1).ppt
 
Copy_of_slopeofaline.ppt
Copy_of_slopeofaline.pptCopy_of_slopeofaline.ppt
Copy_of_slopeofaline.ppt
 
Copy_of_slopeofaline.ppt
Copy_of_slopeofaline.pptCopy_of_slopeofaline.ppt
Copy_of_slopeofaline.ppt
 
Copy_of_slopeofaline.ppt
Copy_of_slopeofaline.pptCopy_of_slopeofaline.ppt
Copy_of_slopeofaline.ppt
 
The gradient of a straight line
The gradient of a straight lineThe gradient of a straight line
The gradient of a straight line
 
Chapter 1 straight line
Chapter 1 straight lineChapter 1 straight line
Chapter 1 straight line
 
Bba i-bm-u-4-coordinate geometry
Bba i-bm-u-4-coordinate geometryBba i-bm-u-4-coordinate geometry
Bba i-bm-u-4-coordinate geometry
 
Lesson 6 straight line
Lesson 6    straight lineLesson 6    straight line
Lesson 6 straight line
 
Graphquadraticfcns2
Graphquadraticfcns2Graphquadraticfcns2
Graphquadraticfcns2
 
Functions
FunctionsFunctions
Functions
 
11X1 t10 01 graphing quadratics (2011)
11X1 t10 01 graphing quadratics (2011)11X1 t10 01 graphing quadratics (2011)
11X1 t10 01 graphing quadratics (2011)
 
11 x1 t10 01 graphing quadratics (2012)
11 x1 t10 01 graphing quadratics (2012)11 x1 t10 01 graphing quadratics (2012)
11 x1 t10 01 graphing quadratics (2012)
 
WRITING AND GRAPHING LINEAR EQUATIONS 1.pptx
WRITING AND GRAPHING LINEAR EQUATIONS 1.pptxWRITING AND GRAPHING LINEAR EQUATIONS 1.pptx
WRITING AND GRAPHING LINEAR EQUATIONS 1.pptx
 
1.4.4 Parallel and Perpendicular Line Equations
1.4.4 Parallel and Perpendicular Line Equations1.4.4 Parallel and Perpendicular Line Equations
1.4.4 Parallel and Perpendicular Line Equations
 
Gradient
GradientGradient
Gradient
 
March 19
March 19March 19
March 19
 
X2 t07 01 features calculus (2013)
X2 t07 01 features calculus (2013)X2 t07 01 features calculus (2013)
X2 t07 01 features calculus (2013)
 

More from Nigel Simmons

12 x1 t02 02 integrating exponentials (2014)
12 x1 t02 02 integrating exponentials (2014)12 x1 t02 02 integrating exponentials (2014)
12 x1 t02 02 integrating exponentials (2014)Nigel Simmons
 
11 x1 t01 03 factorising (2014)
11 x1 t01 03 factorising (2014)11 x1 t01 03 factorising (2014)
11 x1 t01 03 factorising (2014)Nigel Simmons
 
11 x1 t01 02 binomial products (2014)
11 x1 t01 02 binomial products (2014)11 x1 t01 02 binomial products (2014)
11 x1 t01 02 binomial products (2014)Nigel Simmons
 
12 x1 t02 01 differentiating exponentials (2014)
12 x1 t02 01 differentiating exponentials (2014)12 x1 t02 01 differentiating exponentials (2014)
12 x1 t02 01 differentiating exponentials (2014)Nigel Simmons
 
11 x1 t01 01 algebra & indices (2014)
11 x1 t01 01 algebra & indices (2014)11 x1 t01 01 algebra & indices (2014)
11 x1 t01 01 algebra & indices (2014)Nigel Simmons
 
X2 t02 02 multiple roots (2013)
X2 t02 02 multiple roots (2013)X2 t02 02 multiple roots (2013)
X2 t02 02 multiple roots (2013)Nigel Simmons
 
X2 t02 01 factorising complex expressions (2013)
X2 t02 01 factorising complex expressions (2013)X2 t02 01 factorising complex expressions (2013)
X2 t02 01 factorising complex expressions (2013)Nigel Simmons
 
11 x1 t16 07 approximations (2013)
11 x1 t16 07 approximations (2013)11 x1 t16 07 approximations (2013)
11 x1 t16 07 approximations (2013)Nigel Simmons
 
11 x1 t16 06 derivative times function (2013)
11 x1 t16 06 derivative times function (2013)11 x1 t16 06 derivative times function (2013)
11 x1 t16 06 derivative times function (2013)Nigel Simmons
 
11 x1 t16 05 volumes (2013)
11 x1 t16 05 volumes (2013)11 x1 t16 05 volumes (2013)
11 x1 t16 05 volumes (2013)Nigel Simmons
 
11 x1 t16 04 areas (2013)
11 x1 t16 04 areas (2013)11 x1 t16 04 areas (2013)
11 x1 t16 04 areas (2013)Nigel Simmons
 
11 x1 t16 03 indefinite integral (2013)
11 x1 t16 03 indefinite integral (2013)11 x1 t16 03 indefinite integral (2013)
11 x1 t16 03 indefinite integral (2013)Nigel Simmons
 
11 x1 t16 02 definite integral (2013)
11 x1 t16 02 definite integral (2013)11 x1 t16 02 definite integral (2013)
11 x1 t16 02 definite integral (2013)Nigel Simmons
 
11 x1 t16 01 area under curve (2013)
11 x1 t16 01 area under curve (2013)11 x1 t16 01 area under curve (2013)
11 x1 t16 01 area under curve (2013)Nigel Simmons
 
X2 t01 11 nth roots of unity (2012)
X2 t01 11 nth roots of unity (2012)X2 t01 11 nth roots of unity (2012)
X2 t01 11 nth roots of unity (2012)Nigel Simmons
 
X2 t01 10 complex & trig (2013)
X2 t01 10 complex & trig (2013)X2 t01 10 complex & trig (2013)
X2 t01 10 complex & trig (2013)Nigel Simmons
 
X2 t01 09 de moivres theorem
X2 t01 09 de moivres theoremX2 t01 09 de moivres theorem
X2 t01 09 de moivres theoremNigel Simmons
 
X2 t01 08 locus & complex nos 2 (2013)
X2 t01 08  locus & complex nos 2 (2013)X2 t01 08  locus & complex nos 2 (2013)
X2 t01 08 locus & complex nos 2 (2013)Nigel Simmons
 
X2 t01 07 locus & complex nos 1 (2013)
X2 t01 07 locus & complex nos 1 (2013)X2 t01 07 locus & complex nos 1 (2013)
X2 t01 07 locus & complex nos 1 (2013)Nigel Simmons
 

More from Nigel Simmons (20)

Goodbye slideshare
Goodbye slideshareGoodbye slideshare
Goodbye slideshare
 
12 x1 t02 02 integrating exponentials (2014)
12 x1 t02 02 integrating exponentials (2014)12 x1 t02 02 integrating exponentials (2014)
12 x1 t02 02 integrating exponentials (2014)
 
11 x1 t01 03 factorising (2014)
11 x1 t01 03 factorising (2014)11 x1 t01 03 factorising (2014)
11 x1 t01 03 factorising (2014)
 
11 x1 t01 02 binomial products (2014)
11 x1 t01 02 binomial products (2014)11 x1 t01 02 binomial products (2014)
11 x1 t01 02 binomial products (2014)
 
12 x1 t02 01 differentiating exponentials (2014)
12 x1 t02 01 differentiating exponentials (2014)12 x1 t02 01 differentiating exponentials (2014)
12 x1 t02 01 differentiating exponentials (2014)
 
11 x1 t01 01 algebra & indices (2014)
11 x1 t01 01 algebra & indices (2014)11 x1 t01 01 algebra & indices (2014)
11 x1 t01 01 algebra & indices (2014)
 
X2 t02 02 multiple roots (2013)
X2 t02 02 multiple roots (2013)X2 t02 02 multiple roots (2013)
X2 t02 02 multiple roots (2013)
 
X2 t02 01 factorising complex expressions (2013)
X2 t02 01 factorising complex expressions (2013)X2 t02 01 factorising complex expressions (2013)
X2 t02 01 factorising complex expressions (2013)
 
11 x1 t16 07 approximations (2013)
11 x1 t16 07 approximations (2013)11 x1 t16 07 approximations (2013)
11 x1 t16 07 approximations (2013)
 
11 x1 t16 06 derivative times function (2013)
11 x1 t16 06 derivative times function (2013)11 x1 t16 06 derivative times function (2013)
11 x1 t16 06 derivative times function (2013)
 
11 x1 t16 05 volumes (2013)
11 x1 t16 05 volumes (2013)11 x1 t16 05 volumes (2013)
11 x1 t16 05 volumes (2013)
 
11 x1 t16 04 areas (2013)
11 x1 t16 04 areas (2013)11 x1 t16 04 areas (2013)
11 x1 t16 04 areas (2013)
 
11 x1 t16 03 indefinite integral (2013)
11 x1 t16 03 indefinite integral (2013)11 x1 t16 03 indefinite integral (2013)
11 x1 t16 03 indefinite integral (2013)
 
11 x1 t16 02 definite integral (2013)
11 x1 t16 02 definite integral (2013)11 x1 t16 02 definite integral (2013)
11 x1 t16 02 definite integral (2013)
 
11 x1 t16 01 area under curve (2013)
11 x1 t16 01 area under curve (2013)11 x1 t16 01 area under curve (2013)
11 x1 t16 01 area under curve (2013)
 
X2 t01 11 nth roots of unity (2012)
X2 t01 11 nth roots of unity (2012)X2 t01 11 nth roots of unity (2012)
X2 t01 11 nth roots of unity (2012)
 
X2 t01 10 complex & trig (2013)
X2 t01 10 complex & trig (2013)X2 t01 10 complex & trig (2013)
X2 t01 10 complex & trig (2013)
 
X2 t01 09 de moivres theorem
X2 t01 09 de moivres theoremX2 t01 09 de moivres theorem
X2 t01 09 de moivres theorem
 
X2 t01 08 locus & complex nos 2 (2013)
X2 t01 08  locus & complex nos 2 (2013)X2 t01 08  locus & complex nos 2 (2013)
X2 t01 08 locus & complex nos 2 (2013)
 
X2 t01 07 locus & complex nos 1 (2013)
X2 t01 07 locus & complex nos 1 (2013)X2 t01 07 locus & complex nos 1 (2013)
X2 t01 07 locus & complex nos 1 (2013)
 

Recently uploaded

Multi Domain Alias In the Odoo 17 ERP Module
Multi Domain Alias In the Odoo 17 ERP ModuleMulti Domain Alias In the Odoo 17 ERP Module
Multi Domain Alias In the Odoo 17 ERP ModuleCeline George
 
ESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnv
ESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnvESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnv
ESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnvRicaMaeCastro1
 
Using Grammatical Signals Suitable to Patterns of Idea Development
Using Grammatical Signals Suitable to Patterns of Idea DevelopmentUsing Grammatical Signals Suitable to Patterns of Idea Development
Using Grammatical Signals Suitable to Patterns of Idea Developmentchesterberbo7
 
Grade Three -ELLNA-REVIEWER-ENGLISH.pptx
Grade Three -ELLNA-REVIEWER-ENGLISH.pptxGrade Three -ELLNA-REVIEWER-ENGLISH.pptx
Grade Three -ELLNA-REVIEWER-ENGLISH.pptxkarenfajardo43
 
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdfGrade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdfJemuel Francisco
 
Scientific Writing :Research Discourse
Scientific  Writing :Research  DiscourseScientific  Writing :Research  Discourse
Scientific Writing :Research DiscourseAnita GoswamiGiri
 
Q-Factor HISPOL Quiz-6th April 2024, Quiz Club NITW
Q-Factor HISPOL Quiz-6th April 2024, Quiz Club NITWQ-Factor HISPOL Quiz-6th April 2024, Quiz Club NITW
Q-Factor HISPOL Quiz-6th April 2024, Quiz Club NITWQuiz Club NITW
 
ROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptxROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptxVanesaIglesias10
 
Decoding the Tweet _ Practical Criticism in the Age of Hashtag.pptx
Decoding the Tweet _ Practical Criticism in the Age of Hashtag.pptxDecoding the Tweet _ Practical Criticism in the Age of Hashtag.pptx
Decoding the Tweet _ Practical Criticism in the Age of Hashtag.pptxDhatriParmar
 
ICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdfICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdfVanessa Camilleri
 
Mental Health Awareness - a toolkit for supporting young minds
Mental Health Awareness - a toolkit for supporting young mindsMental Health Awareness - a toolkit for supporting young minds
Mental Health Awareness - a toolkit for supporting young mindsPooky Knightsmith
 
4.16.24 21st Century Movements for Black Lives.pptx
4.16.24 21st Century Movements for Black Lives.pptx4.16.24 21st Century Movements for Black Lives.pptx
4.16.24 21st Century Movements for Black Lives.pptxmary850239
 
Concurrency Control in Database Management system
Concurrency Control in Database Management systemConcurrency Control in Database Management system
Concurrency Control in Database Management systemChristalin Nelson
 
BIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptx
BIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptxBIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptx
BIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptxSayali Powar
 
Active Learning Strategies (in short ALS).pdf
Active Learning Strategies (in short ALS).pdfActive Learning Strategies (in short ALS).pdf
Active Learning Strategies (in short ALS).pdfPatidar M
 
Q-Factor General Quiz-7th April 2024, Quiz Club NITW
Q-Factor General Quiz-7th April 2024, Quiz Club NITWQ-Factor General Quiz-7th April 2024, Quiz Club NITW
Q-Factor General Quiz-7th April 2024, Quiz Club NITWQuiz Club NITW
 
Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4JOYLYNSAMANIEGO
 
Textual Evidence in Reading and Writing of SHS
Textual Evidence in Reading and Writing of SHSTextual Evidence in Reading and Writing of SHS
Textual Evidence in Reading and Writing of SHSMae Pangan
 

Recently uploaded (20)

Multi Domain Alias In the Odoo 17 ERP Module
Multi Domain Alias In the Odoo 17 ERP ModuleMulti Domain Alias In the Odoo 17 ERP Module
Multi Domain Alias In the Odoo 17 ERP Module
 
Mattingly "AI & Prompt Design: Large Language Models"
Mattingly "AI & Prompt Design: Large Language Models"Mattingly "AI & Prompt Design: Large Language Models"
Mattingly "AI & Prompt Design: Large Language Models"
 
ESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnv
ESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnvESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnv
ESP 4-EDITED.pdfmmcncncncmcmmnmnmncnmncmnnjvnnv
 
Using Grammatical Signals Suitable to Patterns of Idea Development
Using Grammatical Signals Suitable to Patterns of Idea DevelopmentUsing Grammatical Signals Suitable to Patterns of Idea Development
Using Grammatical Signals Suitable to Patterns of Idea Development
 
Grade Three -ELLNA-REVIEWER-ENGLISH.pptx
Grade Three -ELLNA-REVIEWER-ENGLISH.pptxGrade Three -ELLNA-REVIEWER-ENGLISH.pptx
Grade Three -ELLNA-REVIEWER-ENGLISH.pptx
 
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdfGrade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
Grade 9 Quarter 4 Dll Grade 9 Quarter 4 DLL.pdf
 
Scientific Writing :Research Discourse
Scientific  Writing :Research  DiscourseScientific  Writing :Research  Discourse
Scientific Writing :Research Discourse
 
Q-Factor HISPOL Quiz-6th April 2024, Quiz Club NITW
Q-Factor HISPOL Quiz-6th April 2024, Quiz Club NITWQ-Factor HISPOL Quiz-6th April 2024, Quiz Club NITW
Q-Factor HISPOL Quiz-6th April 2024, Quiz Club NITW
 
ROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptxROLES IN A STAGE PRODUCTION in arts.pptx
ROLES IN A STAGE PRODUCTION in arts.pptx
 
Decoding the Tweet _ Practical Criticism in the Age of Hashtag.pptx
Decoding the Tweet _ Practical Criticism in the Age of Hashtag.pptxDecoding the Tweet _ Practical Criticism in the Age of Hashtag.pptx
Decoding the Tweet _ Practical Criticism in the Age of Hashtag.pptx
 
ICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdfICS2208 Lecture6 Notes for SL spaces.pdf
ICS2208 Lecture6 Notes for SL spaces.pdf
 
Mental Health Awareness - a toolkit for supporting young minds
Mental Health Awareness - a toolkit for supporting young mindsMental Health Awareness - a toolkit for supporting young minds
Mental Health Awareness - a toolkit for supporting young minds
 
INCLUSIVE EDUCATION PRACTICES FOR TEACHERS AND TRAINERS.pptx
INCLUSIVE EDUCATION PRACTICES FOR TEACHERS AND TRAINERS.pptxINCLUSIVE EDUCATION PRACTICES FOR TEACHERS AND TRAINERS.pptx
INCLUSIVE EDUCATION PRACTICES FOR TEACHERS AND TRAINERS.pptx
 
4.16.24 21st Century Movements for Black Lives.pptx
4.16.24 21st Century Movements for Black Lives.pptx4.16.24 21st Century Movements for Black Lives.pptx
4.16.24 21st Century Movements for Black Lives.pptx
 
Concurrency Control in Database Management system
Concurrency Control in Database Management systemConcurrency Control in Database Management system
Concurrency Control in Database Management system
 
BIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptx
BIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptxBIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptx
BIOCHEMISTRY-CARBOHYDRATE METABOLISM CHAPTER 2.pptx
 
Active Learning Strategies (in short ALS).pdf
Active Learning Strategies (in short ALS).pdfActive Learning Strategies (in short ALS).pdf
Active Learning Strategies (in short ALS).pdf
 
Q-Factor General Quiz-7th April 2024, Quiz Club NITW
Q-Factor General Quiz-7th April 2024, Quiz Club NITWQ-Factor General Quiz-7th April 2024, Quiz Club NITW
Q-Factor General Quiz-7th April 2024, Quiz Club NITW
 
Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4Daily Lesson Plan in Mathematics Quarter 4
Daily Lesson Plan in Mathematics Quarter 4
 
Textual Evidence in Reading and Writing of SHS
Textual Evidence in Reading and Writing of SHSTextual Evidence in Reading and Writing of SHS
Textual Evidence in Reading and Writing of SHS
 

11 x1 t05 03 equation of lines (2013)

  • 2. Equation of Lines (Linear Function) All straight lines can be written in the form;
  • 3. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b
  • 4. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope
  • 5. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept
  • 6. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR
  • 7. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0
  • 8. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form)
  • 9. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form) Note: A, B, C are integers or surds
  • 10. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form) Note: A, B, C are integers or surds e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing through (0,6) in general form.
  • 11. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form) Note: A, B, C are integers or surds e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing through (0,6) in general form. 1 required m   5
  • 12. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form) Note: A, B, C are integers or surds e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing through (0,6) in general form. 1 y   x6 1 5 required m   5
  • 13. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form) Note: A, B, C are integers or surds e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing through (0,6) in general form. 1 y   x6 1 5 required m   5 y   x  30 5
  • 14. Equation of Lines (Linear Function) All straight lines can be written in the form; y  mx  b m  slope b  y intercept OR Ax  By  C  0 (general form) Note: A, B, C are integers or surds e.g. Find the equation of the line perpendicular to y = 5x – 2 , passing through (0,6) in general form. 1 y   x6 1 5 required m   5 y   x  30 5 x  5 y  30  0
  • 15. Note: lines parallel to the x axis (y = c)
  • 16. Note: lines parallel to the x axis (y = c) y x
  • 17. Note: lines parallel to the x axis (y = c) y  3, 2  x
  • 18. Note: lines parallel to the x axis (y = c) y  3, 2  x y2
  • 19. Note: lines parallel to the x axis (y = c) y  3, 2  x y2 lines parallel to the y axis (x = k)
  • 20. Note: lines parallel to the x axis (y = c) y  3, 2  x y2 lines parallel to the y axis (x = k) y x
  • 21. Note: lines parallel to the x axis (y = c) y  3, 2  x y2 lines parallel to the y axis (x = k) y  3, 2  x
  • 22. Note: lines parallel to the x axis (y = c) y  3, 2  x y2 lines parallel to the y axis (x = k) y  3, 2  x x3
  • 23. Note: lines parallel to the x axis (y = c) y  3, 2  x y2 Exercise 5C; 1b, 3cf, 4a, 5d, 6df, 8df, 10b, 11c, 12 lines parallel to the y axis (x = k) y  3, 2  x x3