Download presentation
Presentation is loading. Please wait.
Published byEileen Hodge Modified over 9 years ago
1
Please visit checkout to purchase the entire 13 Part 6,500+ Slide PowerPoint roadmap ($19.99) –http://sciencepowerpoint.com/index.htmlhttp://sciencepowerpoint.com/index.html 39 Page bundled homework package that chronologically follows the slideshow. 60 Pages of unit notes with visuals. 5 PowerPoint review games (125+ slide each) 108 videos Answer Keys, lab activity sheets, readings, rubrics, curriculum guide, crosswords and much more. Enjoy this free PowerPoint and thanks for visiting. Sincerely, Ryan Murphy M.Ed www.sciencepowerpoint@gmail.com
2
Part VII / XIII of the 6,500+ Slide Human Body Systems and Health Topics Unit from www.sciencepowerpoint.com Part I: Levels of Biological Organization Part II: The Skeletal System Part III: The Muscular System Part IV: Nutrients and Molecules of Life Part V: Healthy Living and Eating Part VI: The Digestive System Part VII: The Circulatory System Part VIII: The Respiratory System / Dangers of Smoking Part IX: The Excretory System Part X: The Nervous System Part XI: The Endocrine System Part XII: The Reproductive System Part XIII: The Immune System
4
Human Body Unit Part VII/XIII
5
Human Body Unit Part VII/XIII
6
RED SLIDE: These are notes that are very important and should be recorded in your science journal. Copyright © 2010 Ryan P. Murphy
7
-Nice neat notes that are legible and use indentations when appropriate. -Example of indent. -Skip a line between topics -Don’t skip pages -Make visuals clear and well drawn. Please label. Kidneys Ureters Urinary Bladder
8
RED SLIDE: These are notes that are very important and should be recorded in your science journal. BLACK SLIDE: Pay attention, follow directions, complete projects as described and answer required questions neatly. Copyright © 2010 Ryan P. Murphy
9
Keep an eye out for “The-Owl” and raise your hand as soon as you see him. –He will be hiding somewhere in the slideshow “Hoot, Hoot” “Good Luck!” Copyright © 2010 Ryan P. Murphy
10
New Area of Focus: The Circulatory System New Area of Focus: The Circulatory System Copyright © 2010 Ryan P. Murphy
20
Circulatory System: Delivers food and oxygen to the body and carries carbon dioxide and other waste products away. Circulatory System: Delivers food and oxygen to the body and carries carbon dioxide and other waste products away. Copyright © 2010 Ryan P. Murphy
21
Circulatory System: Delivers food and oxygen to the body and carries carbon dioxide and other waste products away. Circulatory System: Delivers food and oxygen to the body and carries carbon dioxide and other waste products away. “Also called the cardiovascular system.” Copyright © 2010 Ryan P. Murphy
22
Consists of the following Consists of the following - - - Copyright © 2010 Ryan P. Murphy
23
Consists of the following Consists of the following Heart Heart Copyright © 2010 Ryan P. Murphy
24
Consists of the following Consists of the following Heart Heart Copyright © 2010 Ryan P. Murphy
25
Consists of the following Consists of the following Heart Heart Blood Vessels Blood Vessels Copyright © 2010 Ryan P. Murphy
26
Consists of the following Consists of the following Heart Heart Blood Vessels Blood Vessels Copyright © 2010 Ryan P. Murphy
27
Consists of the following Consists of the following Heart Heart Blood Vessels Blood Vessels Blood Blood Copyright © 2010 Ryan P. Murphy
28
Consists of the following Consists of the following Heart Heart Blood Vessels Blood Vessels Blood Blood Copyright © 2010 Ryan P. Murphy
32
The network of blood vessels in your body is so large, Copyright © 2010 Ryan P. Murphy
33
The network of blood vessels in your body is so large, that if unraveled, Copyright © 2010 Ryan P. Murphy
34
The network of blood vessels in your body is so large, that if unraveled, Copyright © 2010 Ryan P. Murphy
35
The network of blood vessels in your body is so large, that if unraveled, it could encircle the earth twice. Copyright © 2010 Ryan P. Murphy
36
The network of blood vessels in your body is so large, that if unraveled, it could encircle the earth twice. Copyright © 2010 Ryan P. Murphy
37
The network of blood vessels in your body is so large, that if unraveled, it could encircle the earth twice. The Heart is the motor that pumps blood through your body. Copyright © 2010 Ryan P. Murphy
38
The network of blood vessels in your body is so large, that if unraveled, it could encircle the earth twice. Remember cardiac muscles! Copyright © 2010 Ryan P. Murphy
39
The network of blood vessels in your body is so large, that if unraveled, it could encircle the earth twice. The Heart is the motor that pumps blood through your body. Remember cardiac muscles! Copyright © 2010 Ryan P. Murphy
42
Your heart pumps about 2,000 gallons of blood through your body a day. Copyright © 2010 Ryan P. Murphy
43
Your heart beats… –35,000,000 times a year –350,000 times a year –35,000 times a year –3,500 times a year –350 times a year –35 times a year –3.5 times a year Copyright © 2010 Ryan P. Murphy
44
Your heart beats… –35,000,000 times a year –350,000 times a year –35,000 times a year –3,500 times a year –350 times a year –35 times a year –3.5 times a year Copyright © 2010 Ryan P. Murphy
45
In order to fully understand the circulatory system, we must understand cellular respiration. Copyright © 2010 Ryan P. Murphy
46
Cellular Respiration: Processes whereby certain organisms obtain energy from organic molecules. Cellular Respiration: Processes whereby certain organisms obtain energy from organic molecules. Copyright © 2010 Ryan P. Murphy
47
Cellular Respiration: Processes whereby certain organisms obtain energy from organic molecules. Cellular Respiration: Processes whereby certain organisms obtain energy from organic molecules. Copyright © 2010 Ryan P. Murphy
48
Nutrients
49
Oxygen
50
Your body requires nutrients and oxygen, so that your cells can use energy. Copyright © 2010 Ryan P. Murphy
51
Your body requires nutrients and oxygen, so that your cells can use energy. Copyright © 2010 Ryan P. Murphy
52
When you breath out, you are releasing water, carbon dioxide, and some heat. Copyright © 2010 Ryan P. Murphy
53
When you breath out, you are releasing water, carbon dioxide, and some heat. These are the by products of cellular respiration in the trillions of cells in your body. Copyright © 2010 Ryan P. Murphy
54
Below is a cell. The cellular organelle that performs cellular respiration is the mitochondria. Copyright © 2010 Ryan P. Murphy
55
Below is a cell. The cellular organelle that performs cellular respiration is the mitochondria. Copyright © 2010 Ryan P. Murphy
56
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
57
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
58
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
59
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy PHOTOSYNTHESIS
60
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy Energy from the sun,
61
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy Energy from the sun, Carbon Dioxide,
62
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy Energy from the sun, Carbon Dioxide, and Water,
63
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy Energy from the sun, Carbon Dioxide, and Water, release oxygen,
64
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy Energy from the sun, Carbon Dioxide, and Water, release oxygen, and sugar
65
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy Energy from the sun, Carbon Dioxide, and Water, release oxygen and sugar
66
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
67
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
68
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
69
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
70
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
71
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
72
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
73
Cellular Respiration Cellular Respiration C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released Energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
95
Activity! Memorizing the respiration equation using the white boards. C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
96
Answer! Which of the following equations is the correct one for the respiration equation? A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O.A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O. B) C 6 H 12 O 6 + O 2 = Released energy + C 6 H 12 O 6 + 6CO 2 + 6H 2 O.B) C 6 H 12 O 6 + O 2 = Released energy + C 6 H 12 O 6 + 6CO 2 + 6H 2 O. C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O.C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O. D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O.E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O. F) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.F) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O.G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O. H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O.H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O. I) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.I) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. J) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.J) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O.K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O. L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 =L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 = Copyright © 2010 Ryan P. Murphy
97
Answer! Which of the following equations is the correct one for the respiration equation? A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O.A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O. B) C 6 H 12 O 6 + O 2 = Released energy + C 6 H 12 O 6 + 6CO 2 + 6H 2 O.B) C 6 H 12 O 6 + O 2 = Released energy + C 6 H 12 O 6 + 6CO 2 + 6H 2 O. C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O.C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O. D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O.E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O. F) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.F) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O.G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O. H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O.H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O. I) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.I) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. J) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.J) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O.K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O. L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 =L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 = Copyright © 2010 Ryan P. Murphy
98
Try it again!Try it again! C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. Copyright © 2010 Ryan P. Murphy
99
Which of the following equations is the correct one for the respiration equation? A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O.A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O. B) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.B) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O.C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O. D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O.E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O. F) C 6 H 12 O 6 + 6CO 2 = Released energy + 6CO 2 + 6H 2 O.F) C 6 H 12 O 6 + 6CO 2 = Released energy + 6CO 2 + 6H 2 O. G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O.G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O. H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O.H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O. I) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O.I) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O. J) C 6 H 12 O 8 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.J) C 6 H 12 O 8 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O.K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O. L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 =L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 = Copyright © 2010 Ryan P. Murphy
100
Which of the following equations is the correct one for the respiration equation? A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O.A) C 6 H 12 O 6 + 6H 2 O = Released energy + 6CO 2 + 6H 2 O. B) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.B) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O.C) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O. D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.D) C12H 6 O 6 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O.E) C 6 H 12 O 6 + 6CO 2 = Released energy + 6O 2 + 6H 2 O. F) C 6 H 12 O 6 + 6CO 2 = Released energy + 6CO 2 + 6H 2 O.F) C 6 H 12 O 6 + 6CO 2 = Released energy + 6CO 2 + 6H 2 O. G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O.G) C 6 H 12 O 6 + 6O 2 = Released energy + 6CO 2 + 6 2 O. H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O.H) C 6 H 12 O 6 + 6O 2 = Light Energy + 6CO 2 + 6H 2 O. I) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O.I) C 6 H 12 O 6 + 6O 2 = Released energy + 6O 2 + 6H 2 O. J) C 6 H 12 O 8 + 6O 2 = Released energy + 6CO 2 + 6H 2 O.J) C 6 H 12 O 8 + 6O 2 = Released energy + 6CO 2 + 6H 2 O. K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O.K) C 6 H 12 O 6 + 16O 2 = Released energy + 6O 2 + 6H 2 O. L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 =L) Released energy + 6CO 2 + 6H 2 O C 6 H 12 O 6 + 6O 2 = Copyright © 2010 Ryan P. Murphy
101
Cellular RespirationCellular Respiration –- Copyright © 2010 Ryan P. Murphy
102
Burns sugars for energy.Burns sugars for energy. Copyright © 2010 Ryan P. Murphy
103
Oxygen is used. Copyright © 2010 Ryan P. Murphy
104
Energy is released. Copyright © 2010 Ryan P. Murphy
105
Occurs in most cells.Occurs in most cells. Copyright © 2010 Ryan P. Murphy
106
What type of cells in the human body are going to have a lot of mitochondria to do cellular respiration? Copyright © 2010 Ryan P. Murphy
107
What type of cells in the human body are going to have a lot of mitochondria to do cellular respiration? Copyright © 2010 Ryan P. Murphy
108
What type of cells in the human body are going to have a lot of mitochondria to do cellular respiration? Copyright © 2010 Ryan P. Murphy Mitochondria:
109
What type of cells in the human body are going to have a lot of mitochondria to do cellular respiration? Copyright © 2010 Ryan P. Murphy Mitochondria: A organelle in a cell that does cellular respiration.
110
What type of cells in the human body are going to have a lot of mitochondria to do cellular respiration? Copyright © 2010 Ryan P. Murphy Mitochondria: A organelle in a cell that does cellular respiration.
111
Answer! Muscle cells in the heart must always beat to keep you alive. It has a lot of mitochondria in its cells to burn sugar for energy. Copyright © 2010 Ryan P. Murphy
112
Carbon dioxide produced.Carbon dioxide produced. CO 2 O2 Copyright © 2010 Ryan P. Murphy
113
Carbon dioxide produced.Carbon dioxide produced. CO 2 O2 Copyright © 2010 Ryan P. Murphy
114
Carbon dioxide produced.Carbon dioxide produced. CO 2 O2O2 Copyright © 2010 Ryan P. Murphy
115
Carbon dioxide produced.Carbon dioxide produced. CO 2 O2O2 Copyright © 2010 Ryan P. Murphy
116
Carbon dioxide produced.Carbon dioxide produced. CO 2 O2O2 Copyright © 2010 Ryan P. Murphy
117
Water is produced.Water is produced. Copyright © 2010 Ryan P. Murphy
118
Occurs in dark and light.Occurs in dark and light. Copyright © 2010 Ryan P. Murphy
119
Cellular Respiration Video: Warning, this is a high school and post high school video. –My expectations are that you see how energy is produced by a series of chemical reactions. Copyright © 2010 Ryan P. Murphy
120
Please record this picture in your journal. Please record this picture in your journal. Copyright © 2010 Ryan P. Murphy
121
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –Plants uses carbon dioxide and produces oxygen (photosynthesis). –Animal uses oxygen and produces carbon dioxide (respiration). Copyright © 2010 Ryan P. Murphy
122
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –Plants uses carbon dioxide and produces oxygen (photosynthesis). –Animal uses oxygen and produces carbon dioxide (respiration). Copyright © 2010 Ryan P. Murphy
123
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –Plants uses carbon dioxide and produces oxygen (photosynthesis). –Animal uses oxygen and produces carbon dioxide (respiration). Copyright © 2010 Ryan P. Murphy
124
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –The plant uses carbon dioxide and produces oxygen during photosynthesis. –Animal uses oxygen and produces carbon dioxide (respiration). Copyright © 2010 Ryan P. Murphy Photosynthesis
125
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –The plant uses carbon dioxide and produces oxygen during photosynthesis. –Animal uses oxygen and produces carbon dioxide (respiration). Copyright © 2010 Ryan P. Murphy Photosynthesis
126
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –The plant uses carbon dioxide and produces oxygen during photosynthesis. –Animal uses oxygen and produces carbon dioxide (respiration). Copyright © 2010 Ryan P. Murphy Photosynthesis
127
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –The plant uses carbon dioxide and produces oxygen during photosynthesis. –Animals use oxygen and produce carbon dioxide during cellular respiration. Copyright © 2010 Ryan P. Murphy Photosynthesis
128
The carbon dioxide oxygen balance.The carbon dioxide oxygen balance. –The plant uses carbon dioxide and produces oxygen during photosynthesis. –Animals use oxygen and produces carbon dioxide during cellular respiration. Copyright © 2010 Ryan P. Murphy Photosynthesis Respiration
129
The function of the circulatory system. The function of the circulatory system. - - - -
130
To deliver food and oxygen to cells. To deliver food and oxygen to cells. - - -
131
The function of the circulatory system. The function of the circulatory system. To deliver food and oxygen to cells. To deliver food and oxygen to cells. To carry away waste. To carry away waste. - - CO2
132
The function of the circulatory system. The function of the circulatory system. To deliver food and oxygen to cells. To deliver food and oxygen to cells. To carry away waste. To carry away waste. To aid in disease prevention. To aid in disease prevention. -
133
The function of the circulatory system. The function of the circulatory system. To deliver food and oxygen to cells. To deliver food and oxygen to cells. To carry away waste. To carry away waste. To aid in disease prevention. To aid in disease prevention. To deliver chemical messages (hormones). To deliver chemical messages (hormones).
134
By delivering food and oxygen to cells and carrying waste products away, the circulatory system maintains a state of homeostasis in your body. Copyright © 2010 Ryan P. Murphy
135
By delivering food and oxygen to cells and carrying waste products away, the circulatory system maintains a state of homeostasis in your body. Copyright © 2010 Ryan P. Murphy
136
By delivering food and oxygen to cells and carrying waste products away, the circulatory system maintains a state of homeostasis in your body. Copyright © 2010 Ryan P. Murphy
137
Video Link! Khan Academy (Advanced) –The Circulatory System (15 min) –http://www.khanacademy.org/video/circulatory -system-and-the-heart?playlist=Biologyhttp://www.khanacademy.org/video/circulatory -system-and-the-heart?playlist=Biology Copyright © 2010 Ryan P. Murphy
138
The circulatory system Copyright © 2010 Ryan P. Murphy
139
The circulatory system –Powered by the heart. Copyright © 2010 Ryan P. Murphy
140
The circulatory system –Powered by the heart. –Blood carries food, oxygen, waste, chemical messages. Copyright © 2010 Ryan P. Murphy
141
The circulatory system –Powered by the heart. –Blood carries food, oxygen, waste, chemical messages. –Blood vessels provide the paths of travel and have unique structures. Copyright © 2010 Ryan P. Murphy
142
The circulatory system –Powered by the heart. –Blood carries food, oxygen, waste, chemical messages. –Blood vessels provide the paths of travel and have unique structures. Copyright © 2010 Ryan P. Murphy
143
The circulatory system –Powered by the heart. –Blood carries food, oxygen, waste, chemical messages. –Blood vessels provide the paths of travel and have unique structures. Copyright © 2010 Ryan P. Murphy
144
In the circulatory system, Copyright © 2010 Ryan P. Murphy
145
In the circulatory system, blood moves from the heart to the lungs Copyright © 2010 Ryan P. Murphy
146
In the circulatory system, blood moves from the heart to the lungs Copyright © 2010 Ryan P. Murphy
147
In the circulatory system, blood moves from the heart to the lungs and back to the heart. Copyright © 2010 Ryan P. Murphy
148
In the circulatory system, blood moves from the heart to the lungs and back to the heart. Blood then travels to all of the cells in the body Copyright © 2010 Ryan P. Murphy
149
In the circulatory system, blood moves from the heart to the lungs and back to the heart. Blood then travels to all of the cells in the body Copyright © 2010 Ryan P. Murphy
150
In the circulatory system, blood moves from the heart to the lungs and back to the heart. Blood then travels to all of the cells in the body and returns again to the heart. Copyright © 2010 Ryan P. Murphy
151
In the circulatory system, blood moves from the heart to the lungs and back to the heart. Blood then travels to all of the cells in the body and returns again to the heart. Copyright © 2010 Ryan P. Murphy
152
Activity! Teacher to minimize out of slideshow on the next slide, Students need to place the correct arrow in the correct order. Copyright © 2010 Ryan P. Murphy
153
First Second Third Last Copyright © 2010 Ryan P. Murphy
154
First Second Third Last Copyright © 2010 Ryan P. Murphy
155
First Second Third Last Copyright © 2010 Ryan P. Murphy
156
First Second Third Last Copyright © 2010 Ryan P. Murphy
157
First Second Third Last 1 Copyright © 2010 Ryan P. Murphy
158
First Second Third Last 1 2 Copyright © 2010 Ryan P. Murphy
159
First Second Third Last 1 2 3 Copyright © 2010 Ryan P. Murphy
160
First Second Third Last 1 2 3 4 Copyright © 2010 Ryan P. Murphy
161
Human Heart: Important organ that provides a continuous circulation of blood. Human Heart: Important organ that provides a continuous circulation of blood. Copyright © 2010 Ryan P. Murphy
162
Human Heart: Important organ that provides a continuous circulation of blood. Human Heart: Important organ that provides a continuous circulation of blood. Copyright © 2010 Ryan P. Murphy
163
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: Copyright © 2010 Ryan P. Murphy
164
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria Copyright © 2010 Ryan P. Murphy
165
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Copyright © 2010 Ryan P. Murphy
166
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Two Pumps, not one. Copyright © 2010 Ryan P. Murphy
167
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Two Pumps, not one. 1 Copyright © 2010 Ryan P. Murphy
168
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Two Pumps, not one. 2 Copyright © 2010 Ryan P. Murphy
169
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Two Pumps, not one. 1 Copyright © 2010 Ryan P. Murphy
170
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Two Pumps, not one. 2 Copyright © 2010 Ryan P. Murphy
171
Human Heart: Important organ that provides a continuous circulation of blood. –It is divided into four chambers: the two upper chambers are called the left and right atria and two lower chambers are called the right and left ventricles. Two Pumps, not one. 2 1 Copyright © 2010 Ryan P. Murphy
172
Bright Red Oxygen Rich Dark Red / Blue Needs Oxygen Copyright © 2010 Ryan P. Murphy
173
Bright Red Oxygen Rich Dark Red / Blue Needs Oxygen Copyright © 2010 Ryan P. Murphy
174
Bright Red Oxygen Rich Dark Red / Blue Needs Oxygen Copyright © 2010 Ryan P. Murphy
175
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. Copyright © 2010 Ryan P. Murphy
176
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. Copyright © 2010 Ryan P. Murphy
177
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. Copyright © 2010 Ryan P. Murphy
178
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. Copyright © 2010 Ryan P. Murphy
179
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. Copyright © 2010 Ryan P. Murphy
180
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. Copyright © 2010 Ryan P. Murphy
181
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. The blood heads back to the heart, Copyright © 2010 Ryan P. Murphy
182
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. The blood heads back to the heart, Copyright © 2010 Ryan P. Murphy
183
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. The blood heads back to the heart, Got oxygen from air in lungs Copyright © 2010 Ryan P. Murphy
184
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. The blood heads back to the heart, and then gets pumped to the body. Copyright © 2010 Ryan P. Murphy
185
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. The blood heads back to the heart, and then gets pumped to the body. Copyright © 2010 Ryan P. Murphy
186
As the body uses oxygen (cellular respiration) the blood becomes depleted in oxygen. It then travels to the heart, which pumps it to the lungs to get oxygen. The blood heads back to the heart, and then gets pumped to the body. Copyright © 2010 Ryan P. Murphy
188
Video Links (Optional) Circulation Song –New School http://www.youtube.com/watch?v=q0s- 1MC1hcE&feature=related http://www.youtube.com/watch?v=q0s- 1MC1hcE&feature=related –Old School http://www.youtube.com/watch?v=54kUQI3e6 Hk http://www.youtube.com/watch?v=54kUQI3e6 Hk Copyright © 2010 Ryan P. Murphy
189
Activity! (Optional) Teacher to minimize out of slideshow on the next slide, Students need to place the colored arrow in the correct place Copyright © 2010 Ryan P. Murphy
198
Activity! Circulatory Simulation. –Your teacher will set up a diagram of a heart on the floor of your classroom or other location. –Students will be the blood traveling through the heart and body. –Wacky noodles taped on the ground act as valves that students can push through but not go back. –Teacher will get a few students doing it correctly and then add in more blood cells (follow the leader). –Pick up red tokens at lungs, and blue tokens at body. A student volunteer will need to resupply the token piles –Best behavior is required for this simulation. Teacher may play some music and keep blood flowing until…? Copyright © 2010 Ryan P. Murphy
199
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
200
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
201
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
202
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
203
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
204
Lungs Body CO 2 Oxygen Wacky Noodles Copyright © 2010 Ryan P. Murphy
205
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
206
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
207
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
208
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
209
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
210
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
211
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
212
Lungs Body CO 2 Oxygen Copyright © 2010 Ryan P. Murphy
213
Questions to answer in journal. –Describe the journey of blood through the circulatory system. –What did the colored chips represent? How did they change through your journey? Copyright © 2010 Ryan P. Murphy
214
Questions to answer in journal. –Describe the journey of blood through the circulatory system. Copyright © 2010 Ryan P. Murphy
215
Questions to answer in journal. –Describe the journey of blood through the circulatory system. –Blood traveled from the body into the heart. The heart pumped the blood to the lungs, and then back to the heart. Copyright © 2010 Ryan P. Murphy
216
Questions to answer in journal. –Describe the journey of blood through the circulatory system. –Blood traveled from the body into the heart. The heart pumped the blood to the lungs, and then back to the heart. The heart then pumped blood to the body and back to the heart. Copyright © 2010 Ryan P. Murphy
217
Questions to answer in journal. –Describe the journey of blood through the circulatory system. –Blood traveled from the body into the heart. The heart pumped the blood to the lungs, and then back to the heart. The heart then pumped blood to the body and back to the heart. Copyright © 2010 Ryan P. Murphy
218
Questions to answer in journal. –What did the colored chips represent? How did they change through your journey? Copyright © 2010 Ryan P. Murphy
219
Questions to answer in journal. –What did the colored chips represent? How did they change through your journey? –The blood lost its oxygen (red chip) and became a blue chip (carbon dioxide) near the halfway point of its journey through the body. Copyright © 2010 Ryan P. Murphy
220
Questions to answer in journal. –What did the colored chips represent? How did they change through your journey? –The blood lost its oxygen (red chip) and became a blue chip (carbon dioxide) near the halfway point of its journey through the body. This low in oxygen, and high in carbon dioxide blood traveled through the heart. Copyright © 2010 Ryan P. Murphy
221
Questions to answer in journal. –What did the colored chips represent? How did they change through your journey? –The blood lost its oxygen (red chip) and became a blue chip (carbon dioxide) near the halfway point of its journey through the body. This low in oxygen, and high in carbon dioxide blood traveled through the heart. It was then pumped to the lungs where it lost its CO2 (blue) and picked up O2 (red) for the rest of its journey through the heart, and to the cells in the body. Copyright © 2010 Ryan P. Murphy
222
Questions to answer in journal. –What did the colored chips represent? How did they change through your journey? –The blood lost its oxygen (red chip) and became a blue chip (carbon dioxide) near the halfway point of its journey through the body. This low in oxygen, and high in carbon dioxide blood traveled through the heart. It was then pumped to the lungs where it lost its CO2 (blue) and picked up O2 (red) for the rest of its journey through the heart, and to the cells in the body. Copyright © 2010 Ryan P. Murphy
223
Picture of artificial heart that can be used to replace a faulty heart. Copyright © 2010 Ryan P. Murphy
224
Activity! Step by step drawing of a heart. –Please put in the middle of a whole page. Only make sketch the size of your fist so that labeling can occur in the margins. Copyright © 2010 Ryan P. Murphy
225
The actual heart is a bit more confusing so the sketch will simplify things.
226
Copyright © 2010 Ryan P. Murphy
238
Lightly shade blue and red Copyright © 2010 Ryan P. Murphy
242
Vena Cava Upper Copyright © 2010 Ryan P. Murphy
243
Vena Cava Upper Lower Vena Cava Copyright © 2010 Ryan P. Murphy
244
Vena Cava Upper Lower Vena Cava Copyright © 2010 Ryan P. Murphy
245
Vena Cava Upper Lower Vena Cava From Body Copyright © 2010 Ryan P. Murphy
246
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Copyright © 2010 Ryan P. Murphy
247
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Copyright © 2010 Ryan P. Murphy
248
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Copyright © 2010 Ryan P. Murphy
249
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Copyright © 2010 Ryan P. Murphy
250
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Copyright © 2010 Ryan P. Murphy
251
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle Copyright © 2010 Ryan P. Murphy
252
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle Septum Copyright © 2010 Ryan P. Murphy
253
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
254
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
255
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
256
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
257
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve Copyright © 2010 Ryan P. Murphy
258
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Copyright © 2010 Ryan P. Murphy
259
Lung Copyright © 2010 Ryan P. Murphy
260
From Heart Lung Copyright © 2010 Ryan P. Murphy
261
Vein From Heart Lung Copyright © 2010 Ryan P. Murphy
262
Vein From Heart Lung Low Oxygen, contains CO 2 Copyright © 2010 Ryan P. Murphy
263
Vein Capillaries From Heart Lung Low Oxygen, contains CO 2 Copyright © 2010 Ryan P. Murphy
264
Vein Capillaries From Heart Lung Low Oxygen, contains CO 2 Copyright © 2010 Ryan P. Murphy
265
Vein Capillaries From Heart Lung Low Oxygen, contains CO 2 Copyright © 2010 Ryan P. Murphy
266
Vein Capillaries From Heart Lung To Heart Low Oxygen, contains CO 2 Copyright © 2010 Ryan P. Murphy
267
Vein Capillaries Artery From Heart Lung To Heart Low Oxygen, contains CO 2 Copyright © 2010 Ryan P. Murphy
268
Vein Capillaries Artery From Heart Lung To Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from lungs Copyright © 2010 Ryan P. Murphy
269
Vein Capillaries Artery From Heart Lung To Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from lungs Copyright © 2010 Ryan P. Murphy
270
Vein Capillaries Artery From Heart Lung To Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from lungs Copyright © 2010 Ryan P. Murphy
271
Vein Capillaries Artery From Heart Lung To Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from lungs Copyright © 2010 Ryan P. Murphy
272
Vein Capillaries Artery From Heart Lung To Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from lungs Copyright © 2010 Ryan P. Murphy
273
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs From Lungs Copyright © 2010 Ryan P. Murphy
274
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein From Lungs Copyright © 2010 Ryan P. Murphy
275
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Copyright © 2010 Ryan P. Murphy
276
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Copyright © 2010 Ryan P. Murphy
277
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Copyright © 2010 Ryan P. Murphy
278
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Copyright © 2010 Ryan P. Murphy
279
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Or Bicupsid Copyright © 2010 Ryan P. Murphy
280
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle Copyright © 2010 Ryan P. Murphy
281
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
282
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
283
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Copyright © 2010 Ryan P. Murphy
284
Intermission Video! Quick portion of heart surgery to repair a clogged artery. –Caution! Video shows actual surgery. –http://www.youtube.com/watch?v=Zxqj1BcBpIghttp://www.youtube.com/watch?v=Zxqj1BcBpIg Copyright © 2010 Ryan P. Murphy
285
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Copyright © 2010 Ryan P. Murphy
286
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Aorta Copyright © 2010 Ryan P. Murphy
287
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Aorta To Body Copyright © 2010 Ryan P. Murphy
288
Lung Copyright © 2010 Ryan P. Murphy
289
Lung From Heart Copyright © 2010 Ryan P. Murphy
290
Artery Lung From Heart Copyright © 2010 Ryan P. Murphy
291
Artery Lung From Heart High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
292
Capillaries Artery Lung From Heart High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
293
Capillaries Artery Lung Body From Heart High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
294
Capillaries Artery Lung Body From Heart High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
295
Capillaries Artery To Heart Lung Body From Heart High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
296
Vein Capillaries Artery To Heart Lung Body From Heart High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
297
Vein Capillaries Artery To Heart Lung Body From Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
298
Vein Capillaries Artery To Heart Lung Body From Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
299
Vein Capillaries Artery To Heart Lung Body From Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
300
Vein Capillaries Artery To Heart Lung Body From Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
301
Vein Capillaries Artery To Heart Lung Body From Heart Low Oxygen, contains CO 2 High in Oxygen O 2 from heart Copyright © 2010 Ryan P. Murphy
302
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Aorta To Body Copyright © 2010 Ryan P. Murphy
303
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Aorta To Body Copyright © 2010 Ryan P. Murphy
304
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Aorta To Body Copyright © 2010 Ryan P. Murphy
305
Vena Cava Upper Lower Vena Cava From Body Right Atrium CO 2 Tricupsid Valve Right Ventricle (Pump) Pulmonary Valve To Lungs Pulmonary Vein Left Atrium O 2 Mitral Valve Left Ventricle (Pump) Aortic valve Aorta To Body Copyright © 2010 Ryan P. Murphy
306
Question? Which side of your heart needs to work harder? Why? Right Left Copyright © 2010 Ryan P. Murphy
307
Question? Which side of your heart needs to work harder? Why? Right Left Copyright © 2010 Ryan P. Murphy
308
The left side works about 6 times harder because it has to pump blood to your whole body while the right only has to pump to the nearby lungs. Right Left Copyright © 2010 Ryan P. Murphy
309
Activity! (Optional) Use your palm to feel for the left side of your heart. Notice the difference in pumping pressure. Copyright © 2010 Ryan P. Murphy
310
Animation Link! Human Heart –http://www.medtropolis.com/VBody.asphttp://www.medtropolis.com/VBody.asp Copyright © 2010 Ryan P. Murphy
311
Video! (Optional) Before Quiz. Pump the Blood with the cast from Happy Days –http://www.youtube.com/watch?v=upctPUa6R hA&feature=relatedhttp://www.youtube.com/watch?v=upctPUa6R hA&feature=related Copyright © 2010 Ryan P. Murphy
312
Video! (Optional) Overview of Cardiac Cycle. –http://www.youtube.com/watch?v=yGlFBzaTu oI&feature=relatedhttp://www.youtube.com/watch?v=yGlFBzaTu oI&feature=related Copyright © 2010 Ryan P. Murphy
313
“Do you think we’ll have to do one of those things.”
314
“You bet.”
315
“Sorry,” “End of Sample.” “Hundreds of more slides available with full version.”
317
Please visit checkout to purchase the entire 13 Part 6,500+ Slide PowerPoint roadmap ($19.99) –http://sciencepowerpoint.com/index.htmlhttp://sciencepowerpoint.com/index.html 39 Page bundled homework package that chronologically follows the slideshow. 60 Pages of unit notes with visuals. 5 PowerPoint review games (125+ slide each) 108 videos Answer Keys, lab activity sheets, readings, rubrics, curriculum guide, crosswords and much more. Enjoy this free PowerPoint and thanks for visiting. Sincerely, Ryan Murphy M.Ed www.sciencepowerpoint@gmail.com
318
Part VII / XIII of the 6,500+ Slide Human Body Systems and Health Topics Unit from www.sciencepowerpoint.com Part I: Levels of Biological Organization Part II: The Skeletal System Part III: The Muscular System Part IV: Nutrients and Molecules of Life Part V: Healthy Living and Eating Part VI: The Digestive System Part VII: The Circulatory System Part VIII: The Respiratory System / Dangers of Smoking Part IX: The Excretory System Part X: The Nervous System Part XI: The Endocrine System Part XII: The Reproductive System Part XIII: The Immune System
319
More Units Available at… Earth Science: The Soil Science and Glaciers Unit, The Geology Topics Unit, The Astronomy Topics Unit, The Weather and Climate Unit, and The River Unit, The Water Molecule Unit. Physical Science: The Laws of Motion and Machines Unit, The Atoms and Periodic Table Unit, The Energy and the Environment Unit, and The Introduction to Science / Metric Unit. Life Science: The Diseases and Cells Unit, The DNA and Genetics Unit, The Life Topics Unit, The Plant Unit, The Taxonomy and Classification Unit, Ecology: Feeding Levels Unit, Ecology: Interactions Unit, Ecology: Abiotic Factors, The Evolution and Natural Selection Unit and Human Body Systems and Health Topics Unit. Copyright © 2010 Ryan P. Murphy
Similar presentations
© 2024 SlidePlayer.com. Inc.
All rights reserved.