Math 7A, Lesson 12, 5/19/2013

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We cover the topics in Statistics II, averages.

While we commonly use the term “average” to mean the “arithmetic mean” in statistical sense, there are other kinds of averages in statistics.

We call the data scores, and the frequency is a term used to indicate the number of times a particular score occurs. We can use a frequency table to represent data, and use a histogram to represent the table.

Apart from the arithmetic mean or just mean, which is the sum of all scores divided by number of scores, we also have:

* Mode. which is the score that occurs most often in a distribution;

* Median, which is the middle score in the list (if the list has even number of scores, the median is the average of the middle two scores).

Homework:

Page 137: #1 – #12

 

Math 7A, Lesson 10, 5/12/2013

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Math contest results are out. We have several students who won:

Richard Chang: 1st place, 5th grade

Yuheng Dong: 2nd place, 6th grade

Aaron Zhang, 3rd place, 7th grade

Congratulations!

We cover reading and drawing of pie chart, line graphs, and pictograms. This is part of Statistics I.

Again, these are topics students feel intuitive and straight forward.

With the extra time, we go over some more of the math contest results.

Homework:

Page 130: #1, 2, 3, 6, 7, 9, 13, 14

 

Math 7A, Lesson 9, 5/5/2013

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Math contest results are almost out. We are waiting for one more class’ result to finalize the final winners. We know at least two of students in our class are winners.

We start the 2nd half of the spring semester with focus on statistics, the science about collection and representing data and how to read and draw different graphs.

We first introduce different ways to represent data: bar graph, pie chart, line graph, and pictogram graph. We talk about the pros and cons of each approach.

We then talk about how to read and draw bar charts.

With the extra time left, we talked about a few questions from math contest.

Homework:

P130. #3, 4, 10, 11, 12

 

 

Math 7A, math contest, 04/28/2013

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NCLS has its 2nd Math Competition today.

We group students based on their regular school grades. All students take an individual round test with 50 minutes. Then Grade 3 – 5 students take a spring round test for 40 minutes while higher graders take a theme round test.

We will have winners from each grade group, announced later.

 

 

Math 7A, Lesson 8, 4/7/2013

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Plan change.

School has decided to have a school wide math contest on 4/28/2013 and all Math class students will take part in this contest. As such, we have decided to use the contest in place of the midterm exam.

So, we didn’t have the exam today. Instead we finish the chapter on transformations.

Up to now the three kinds of transformations we have talked about, Reflection, Rotation, and Translation, all do not change the figure’s shape and size. They are called rigid transformation. Today we talk about enlargement where the shape remains but the size changes. And an enlargement transformation can increase (when the scale fact is bigger than 1) and reduce (when the scale factor is less than 1) the size. And there must be a center of enlargement.

Lastly, we talked about the combination of multiple transformations and how to identify each transformation involved and fully describe it.

Homework:

Page 122: #14, #15, #17, #18, #19, #20.

 

Math 7A, Lesson 7, 3/24/2013

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This is our midterm review day, as we will have the midterm exam next Sunday (4/7/2013).

Please go over your homework for this semester to prepare for the exam.

Homework:

Page 102, Test paper 4; page 126, test paper 5

 

Math 7A, Lesson 6, 3/17/2013

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We study transformations. A transformation, also known as a mapping, transforms a figure into another figure. Today we focus on refection, rotation, and translation.

Reflection, like a mirror, maps an image along a reflection line, into a mirrored image. Rotation rotates an image along a fixed point for certain degree into another image. And translation moves an image in certain direction (note, there is no turning).

In all three transformations above, they maintain the following: segments to equal segments; angles to equal angles, whole figures to equal whole figures.

We talk about how to calculate coordinates in a coordinate system for simple reflection, rotation, and translation.

Homework:

Page 114, 1, 2, 3, 4, 6a, 6b, 9, 10, 11, 12a

 

Math 7A Lesson 5 3/13/2013

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We cover the solution sof right-angled triangles with sin, cos, tan applications and how to apply them to solve simple real world problems.

Just want to point out for parents, our teaching about trigonometry is very basic, we are not going to go more than what we have taught so far.

Homework:

Page 108, #9, #11, #18, #19, #24, #26, #28, #31, #32, #33, #38

 

Math 7A, Lesson 4, 3/3/2013

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Pythagorean Theorem is the first topic we cover for this lesson. For a right-angled triangle with two sides a and b and a hypotenuse c, then we have c^2 = a^2 + b^2.

We show two ways of proving this, and we also show how to prove the reverse, that is, if a triangle with 3 sides as a, b, and c, and c^2 = a^2 + b^2, then it is a right-angled triangle with c as its hypotenuse.

With this theorem, not only can we solve some questions related to right-angle triangles, but also some real world scenarios.

We talk about indirect measure with Angle of elevation and Angle of depression. Furthermore, we study the trigonometrical ratios and give the definition of sine, cosine, and tangent and how to use a calculator to get the value of the ratio from an angle,. and from a value back to an angle.

Homework:

Page 107, #1, #2, #3, #5, #6, #8. #10. #12, #34, #36, #37.

 

Math 7A, Lesson 3, 2/17/2013

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We start with measurement for spheres. Two important formulae to remember:

Volume of a sphere with radius r is: 4/3 pi r^3

Surface area of a sphere with radius of r is: 4 pi r^2

We then talk about areas of similar figures and volumes of similar solids.

In general, if the ratio of the corresponding lengths of two similar figures is a / b, then the ratio of their areas is ( a / b )^2.

And if the ratio of the corresponding lengths of two similar solids is a / b, then:

  • the ratio of their volumes is ( a / b )^3;
  • the ratio of their total surface areas is ( a / b )^2.

Knowing the above formulae, as well as the ones we learned last time, allows us to make various calculations in terms of finding the area or volume of some real world objects.

Homework:

Page 97: 42, 43, 44, 46, 49, 52, 53, 56, 59, 61