Chapter # - Chapter Title

Slides:



Advertisements
Similar presentations
Energy in Living Systems
Advertisements

Chapter 5 Photosynthesis and Cellular Respiration
PHOTOSYNTHESIS and RESPIRATION
Energy Flow Through Living Things: Photosynthesis & Cellular Respiration Chapter 8&9.
Photosynthesis and Cellular Respiration
Ch. 8 & 9 – Photosynthesis and Cellular Respiration.
Section 1: Energy and Living Things
How is energy being obtained by the organisms in this picture?
Photosynthesis and Cellular Respiration
Photosynthesis and Respiration
Chap 8- Photosynthesis Energy- the ability to do work
Chapter 8 Photosynthesis. Autotrophs vs. Heterotrophs Autotrophs are organisms that can make their own food ◦ Use light energy from the sun to produce.
Photosynthesis and Cellular Respiration $100 $200 $300 $400 $500 $100$100$100 $200 $300 $400 $500 Energy and Life The Reactions of Photosynthesis Leaf.
Photosynthesis and Respiration Quiz Bowl Write the complete chemical reaction for cellular respiration.
Chapter 4: Cells and Energy
Chapter 4: Cells and Energy
Photosynthesis and Cellular Respiration
Photosynthesis and Cellular Respiration
REVIEW CHAPTERS 6 & 7 Photosynthesis And Cellular Respiration.
Photosynthesis Cellular Respiration
Chapter 5 Photosynthesis & Cellular Respiration.
Chapter Objectives  You will learn what ATP is  You will explain how ATP provides energy for the cell  You will describe how chloroplasts trap the.
PHOTOSYNTHESIS and CELLULAR RESPIRATION.
Photosynthesis and Respiration
Review Questions.  Organisms that make their own food are called _____________.
Chapter 9 Photosynthesis and Cellular Respiration
Photosynthesis Chapter 4. Where does all of our energy come from?
Hayley, Tom, Jocelyn, Dylan, Jaclyn
Chapter 5 Photosynthesis and Cellular Respiration.
Photosynthesis & Cellular Respiration. Section 9-1: Energy in Living Systems 1.photosynthesis -the process by which plants, algae, and some bacteria use.
PHOTOSYNTHESIS.
Cell energy Ch.9. All living organisms must be able to produce energy, store the energy for future use and use energy.
Bioenergetics: Photosynthesis and Cellular Respiration
Chapter 6: Photosynthesis & Chapter 7: Cellular Respiration.
Photosynthesis & Cellular Respiration
Chapter 8 Photosynthesis. 8-1 Energy and Life I. Autotrophs -make food using sunlight II. Heterotrophs - obtains energy from food they consume III. Energy.
Photosynthesis and Cellular Respiration Chapters 6 and 7.
CHAPTER 9 - CELLULAR RESPIRATION. CELLULAR RESPIRATION Process that releases energy by breaking down food molecules in the presence of oxygen 6 O 2 +
Chapter 5 Notes: Cellular Respiration and Photosynthesis.
Cellular Respiration, Photosynthesis, & Plants
Making Energy. Book Ch 9 Key Terms: Pg 197, 202, 208 Ch9 Reading:
Cellular Energy.
Chapter 9 Energy in a Cell. 9.1 Energy for Organisms All organisms require energy All organisms require energy –The energy source for everything on earth.
➢ What did you eat this morning? ➢ Why do you eat food? ➢ How does your food get its energy ? ➢ What is the process called in which organisms make their.
 What did you eat this morning?  Why do you eat food?  How does your food get its food?  What is the process called in which organisms make their own.
Ms. Hughes Bio I.  Living things also need energy in order to stay in good repair or maintain homeostasis.  Homeostasis is the process of maitnaining.
EOC Photosynthesis and Cellular Respiration Photosynthesis.
Photosynthesis and Cellular Respiration Chapter 9.
ATP, Photosynthesis & Cellular Respiration
Cell Energy: Photosynthesis & Respiration
PHOTOSYNTHESIS or Autotrophic Nutrition
Cell Energy: Photosynthesis & Respiration
Photosynthesis Chapter 8.
PHOTOSYNTHESIS AND RESPIRATION
Photosynthesis Chapter 8.
Photosynthesis and Cellular Respiration
PHOTOSYNTHESIS and RESPIRATION
Introduction to PHOTOSYNTHESIS.
Photosynthesis Ms. Hughes Bio I.
Ch 9 Cellular Respiration
Photosynthesis and Cellular Respiration
Photosynthesis and Cellular Respiration
Cell Energy: Photosynthesis & Respiration
Photosynthesis + Cellular Respiration
9.1 Energy in Living Systems
Cell Energy & Photosynthesis
Cell Energy & Photosynthesis
ATP Photosynthesis Cellular Respiration.
Cell Energy & Photosynthesis
Energy Basics MISC. $100 $200 $300 $400 $500 Cellular Respiration
Presentation transcript:

Chapter # - Chapter Title Mostly Cellular Respiration Mostly Photo 1 Mostly Photo 2 Mostly Photo 3 Energy $100 $100 $100 $100 $100 $200 $200 $200 $200 $200 $300 $300 $300 $300 $300 $400 $400 $400 $400 $400 $500 $500 $500 $500 $500 FINAL ROUND

Most of the energy used by life on Earth comes from Topic 1: $100 Question Most of the energy used by life on Earth comes from a. the sun. c. the moon. b. the rotation of the Earth. d. None of the above ANSWER BACK TO GAME

Most of the energy used by life on Earth comes from Topic 1: $100 Answer Most of the energy used by life on Earth comes from a. the sun. c. the moon. b. the rotation of the Earth. d. None of the above BACK TO GAME

Energy flows from the sun through the living world when Topic 1: $200 Question Energy flows from the sun through the living world when a. plants capture sunlight and produce carbohydrates. b. animals eat plants. c. animals eat other animals that have eaten plants. d. All of the above ANSWER BACK TO GAME

Energy flows from the sun through the living world when Topic 1: $200 Answer Energy flows from the sun through the living world when a. plants capture sunlight and produce carbohydrates. b. animals eat plants. c. animals eat other animals that have eaten plants. d. All of the above BACK TO GAME

Heterotrophs are organisms that Topic 1: $300 Question Heterotrophs are organisms that a. produce food from inorganic molecules or sunlight. b. can survive without energy. c. must consume other organisms to get energy. d. None of the above ANSWER BACK TO GAME

Heterotrophs are organisms that Topic 1: $300 Answer Heterotrophs are organisms that a. produce food from inorganic molecules or sunlight. b. can survive without energy. c. must consume other organisms to get energy. d. None of the above BACK TO GAME

Many autotrophs obtain the energy they need for metabolism through Topic 1: $400 Question Many autotrophs obtain the energy they need for metabolism through a. fermentation. c. cellular respiration. b. photosynthesis. d. eating food. ANSWER BACK TO GAME

Many autotrophs obtain the energy they need for metabolism through Topic 1: $400 Answer Many autotrophs obtain the energy they need for metabolism through a. fermentation. c. cellular respiration. b. photosynthesis. d. eating food. BACK TO GAME

ATP is called a cell’s “energy currency” because Topic 1: $500 Question ATP is called a cell’s “energy currency” because a. ATP catalyzes all metabolic reactions. b. ATP allows one organelle to be exchanged for another between cells. c. glucose is made of ATP. d. most of the energy that drives metabolism is supplied by ATP. ANSWER BACK TO GAME

ATP is called a cell’s “energy currency” because Topic 1: $500 Answer ATP is called a cell’s “energy currency” because a. ATP catalyzes all metabolic reactions. b. ATP allows one organelle to be exchanged for another between cells. c. glucose is made of ATP. d. most of the energy that drives metabolism is supplied by ATP. BACK TO GAME

Light energy is converted to chemical energy through the process of Topic 2: $100 Question Light energy is converted to chemical energy through the process of a. cellular respiration. c.photosynthesis. b. fermentation. d. glycolysis. ANSWER BACK TO GAME

Light energy is converted to chemical energy through the process of Topic 2: $100 Answer Light energy is converted to chemical energy through the process of a. cellular respiration. c.photosynthesis. b. fermentation. d. glycolysis. BACK TO GAME

The major atmospheric by-product of photosynthesis is Topic 2: $200 Question The major atmospheric by-product of photosynthesis is a. nitrogen. c. water. b. carbon dioxide. d. oxygen. ANSWER BACK TO GAME

The major atmospheric by-product of photosynthesis is Topic 2: $200 Answer The major atmospheric by-product of photosynthesis is a. nitrogen. c. water. b. carbon dioxide. d. oxygen. BACK TO GAME

a. they become a photon of light. b. they form a glucose bond. Topic 2: $300 Question When electrons of a chlorophyll molecule are raised to a higher energy level, a. they become a photon of light. b. they form a glucose bond. c. they enter an electron transport chain. d. carotenoids are converted to chlorophyll. ANSWER BACK TO GAME

a. they become a photon of light. b. they form a glucose bond. Topic 2: $300 Answer When electrons of a chlorophyll molecule are raised to a higher energy level, a. they become a photon of light. b. they form a glucose bond. c. they enter an electron transport chain. d. carotenoids are converted to chlorophyll. BACK TO GAME

Chlorophyll is green because a. it absorbs green wavelengths of light. Topic 2: $400 Question Chlorophyll is green because a. it absorbs green wavelengths of light. b. it absorbs blue and yellow wavelengths, which make green. c. it reflects green wavelengths of light. d. of an optical illusion caused by transmitted light. ANSWER BACK TO GAME

Chlorophyll is green because a. it absorbs green wavelengths of light. Topic 2: $400 Answer Chlorophyll is green because a. it absorbs green wavelengths of light. b. it absorbs blue and yellow wavelengths, which make green. c. it reflects green wavelengths of light. d. of an optical illusion caused by transmitted light. BACK TO GAME

photosynthesis : oxygen :: a. oxygen : carbon dioxide Topic 2: $500 Question photosynthesis : oxygen :: a. oxygen : carbon dioxide cellular respiration : carbon dioxide c. cellular respiration : oxygen d. cellular respiration : enzymes ANSWER BACK TO GAME

photosynthesis : oxygen :: a. oxygen : carbon dioxide Topic 2: $500 Answer photosynthesis : oxygen :: a. oxygen : carbon dioxide b. cellular respiration : carbon dioxide c. cellular respiration : oxygen d. cellular respiration : enzymes BACK TO GAME

The source of oxygen produced during photosynthesis is Topic 3: $100 Question The source of oxygen produced during photosynthesis is a. carbon dioxide. c. the air. b. water. d. glucose. ANSWER BACK TO GAME

The source of oxygen produced during photosynthesis is Topic 3: $100 Answer The source of oxygen produced during photosynthesis is a. carbon dioxide. c. the air. b. water. d. glucose. BACK TO GAME

a. moving hydrogen nuclei out of the thylakoid. Topic 3: $200 Question Proton pumps found in the thylakoid membranes are directly responsible for a. moving hydrogen nuclei out of the thylakoid. b. providing the energy to produce ATP molecules. c. producing NADP+. d. generating glucose molecules. ANSWER BACK TO GAME

a. moving hydrogen nuclei out of the thylakoid. Topic 3: $200 Answer Proton pumps found in the thylakoid membranes are directly responsible for a. moving hydrogen nuclei out of the thylakoid. b. providing the energy to produce ATP molecules. c. producing NADP+. d. generating glucose molecules. BACK TO GAME

NADPH is important in photosynthesis because it Topic 3: $300 Question NADPH is important in photosynthesis because it a. becomes oxidized to form NADP. b. is needed to form chlorophyll. c. provides additional oxygen atoms. d. carries high-energy electrons needed to produce organic molecules. ANSWER BACK TO GAME

NADPH is important in photosynthesis because it Topic 3: $300 Answer NADPH is important in photosynthesis because it a. becomes oxidized to form NADP. b. is needed to form chlorophyll. c. provides additional oxygen atoms. d. carries high-energy electrons needed to produce organic molecules. BACK TO GAME

b. the Krebs cycle. d. carbon dioxide. Topic 3: $400 Question The energy used in the Calvin cycle for the production of carbohydrate molecules comes from a. ATP only. c. ATP and NADH. b. the Krebs cycle. d. carbon dioxide. ANSWER BACK TO GAME

b. the Krebs cycle. d. carbon dioxide. Topic 3: $400 Answer The energy used in the Calvin cycle for the production of carbohydrate molecules comes from a. ATP only. c. ATP and NADH. b. the Krebs cycle. d. carbon dioxide. BACK TO GAME

During the third stage of photosynthesis, sugars are produced from Topic 3: $500 Question During the third stage of photosynthesis, sugars are produced from a. ADP. b. glucose. c. carbon atoms from carbon dioxide in the air and hydrogen atoms from glucose. d. carbon atoms from carbon dioxide in the air and hydrogen atoms from NADPH. ANSWER BACK TO GAME

During the third stage of photosynthesis, sugars are produced from Topic 3: $500 Answer During the third stage of photosynthesis, sugars are produced from a. ADP. b. glucose. c. carbon atoms from carbon dioxide in the air and hydrogen atoms from glucose. d. carbon atoms from carbon dioxide in the air and hydrogen atoms from NADPH. BACK TO GAME

As light intensity increases, the rate of photosynthesis Topic 4: $100 Question As light intensity increases, the rate of photosynthesis a. increases indefinitely. b. decreases indefinitely. c. increases until the light saturation point is reached. d. decreases until the light saturation point is reached. ANSWER BACK TO GAME

As light intensity increases, the rate of photosynthesis Topic 4: $100 Answer As light intensity increases, the rate of photosynthesis a. increases indefinitely. b. decreases indefinitely. c. increases until the light saturation point is reached. d. decreases until the light saturation point is reached. BACK TO GAME

Low temperatures may cause photosynthesis to occur Topic 4: $200 Question Low temperatures may cause photosynthesis to occur a. more quickly. c. at a constant rate. b. more slowly. d. None of the above ANSWER BACK TO GAME

Low temperatures may cause photosynthesis to occur Topic 4: $200 Answer Low temperatures may cause photosynthesis to occur a. more quickly. c. at a constant rate. b. more slowly. d. None of the above BACK TO GAME

Chemical energy stored in food molecules is released through Topic 4: $300 Question Chemical energy stored in food molecules is released through a. fermentation. c. cellular respiration. b. photosynthesis. d. None of the above ANSWER BACK TO GAME

Chemical energy stored in food molecules is released through Topic 4: $300 Answer Chemical energy stored in food molecules is released through a. fermentation. c. cellular respiration. b. photosynthesis. d. None of the above BACK TO GAME

Cellular respiration takes place in the two stages of: Topic 4: $400 Question Cellular respiration takes place in the two stages of: a. glycolysis and fermentation. b. electron transport chain, then fermentation. c. glycolysis, then aerobic respiration. d. None of the above ANSWER BACK TO GAME

Cellular respiration takes place in the two stages of: Topic 4: $400 Answer Cellular respiration takes place in the two stages of: a. glycolysis and fermentation. b. electron transport chain, then fermentation. c. glycolysis, then aerobic respiration. d. None of the above BACK TO GAME

Which of the following is not part of cellular respiration? Topic 4: $500 Question Which of the following is not part of cellular respiration? a. electron transport c. Krebs cycle b. glycolysis d. Calvin cycle ANSWER BACK TO GAME

Which of the following is not part of cellular respiration? Topic 4: $500 Answer Which of the following is not part of cellular respiration? a. electron transport c. Krebs cycle b. glycolysis d. Calvin cycle BACK TO GAME

Topic 5: $100 Question An important example of an electron acceptor that functions in glycolysis is a. ATP. c. NAD+. b. oxygen. d. water. ANSWER BACK TO GAME

Topic 5: $100 Answer An important example of an electron acceptor that functions in glycolysis is a. ATP. c. NAD+. b. oxygen. d. water. BACK TO GAME

The final electron acceptor in aerobic respiration is Topic 5: $200 Question The final electron acceptor in aerobic respiration is a. water. c. NADPH. b. ATP. d. oxygen. ANSWER BACK TO GAME

The final electron acceptor in aerobic respiration is Topic 5: $200 Answer The final electron acceptor in aerobic respiration is a. water. c. NADPH. b. ATP. d. oxygen. BACK TO GAME

Water is an end product in a. lactic acid fermentation. Topic 5: $300 Question Water is an end product in a. lactic acid fermentation. b. alcoholic fermentation. c. the Krebs cycle. d. the electron transport chain. ANSWER BACK TO GAME

Water is an end product in a. lactic acid fermentation. Topic 5: $300 Answer Water is an end product in a. lactic acid fermentation. b. alcoholic fermentation. c. the Krebs cycle. d. the electron transport chain. BACK TO GAME

a. respiration. c. fermentation. b. oxidation. d. All of the above Topic 5: $400 Question The name of the process that takes place when organic compounds are broken down in the absence of oxygen is a. respiration. c. fermentation. b. oxidation. d. All of the above ANSWER BACK TO GAME

a. respiration. c. fermentation. b. oxidation. d. All of the above Topic 5: $400 Answer The name of the process that takes place when organic compounds are broken down in the absence of oxygen is a. respiration. c. fermentation. b. oxidation. d. All of the above BACK TO GAME

Fermentation enables glycolysis to continue under Topic 5: $500 Question Fermentation enables glycolysis to continue under a. anaerobic conditions. b. aerobic conditions. c. photosynthetic conditions. d. None of the above ANSWER BACK TO GAME

Fermentation enables glycolysis to continue under Topic 5: $500 Answer Fermentation enables glycolysis to continue under a. anaerobic conditions. b. aerobic conditions. c. photosynthetic conditions. d. None of the above BACK TO GAME

Cells produce ATP most efficiently in the presence of FINAL ROUND Question Cells produce ATP most efficiently in the presence of a. water. c. oxygen. b. carbon dioxide. d. glucose. When a phosphate group is removed from an ATP molecule, a. a substantial amount of energy is released. b. an enzyme is formed. c. energy is stored. d. activation energy is increased. ANSWER BACK TO GAME

Cells produce ATP most efficiently in the presence of FINAL ROUND Answer Cells produce ATP most efficiently in the presence of a. water. c. oxygen. b. carbon dioxide. d. glucose. When a phosphate group is removed from an ATP molecule, a. a substantial amount of energy is released. b. an enzyme is formed. c. energy is stored. d. activation energy is increased. BACK TO GAME