Lesson Overview 8.1 Energy and Life.

Slides:



Advertisements
Similar presentations
Energy and Life 8-1.
Advertisements

Biology I Flora. All living things depend on energy What is energy? Energy – ability to do work Energy is needed in different amounts at different times.
Photosynthesis I: Energy and Life
Chapter 8: Photosynthesis
Energy and Life: An overview of Photosynthesis
Lesson Overview 8.1 Energy and Life.
Ch 8 Photosynthesis.
Energy and Life Chapter 8.1.
Slide 1 of 20 Copyright Pearson Prentice Hall 8-1 Energy and Life.
Chapter 8: Photosynthesis 8.1 Energy and Life
RECIPROCAL TEACHING Helps you create your own meaning of content Helps with METACOGNITION Empowers you to become better learners and and enhance your peers.
8-1 Energy and Life. Autotrophs and Heterotrophs  Living things need energy to survive.  This energy comes from food. The energy in most food comes.
Energy and Life. Transformation of Energy  Energy is the ability to do work.  Thermodynamics is the study of the flow and transformation of energy in.
Lesson Overview Lesson Overview Energy and Life Lesson Overview 8.1 Energy and Life.
Lesson Overview Lesson Overview Energy and Life Lesson Overview 8.1 Energy and Life.
Photosynthesis CO 2 + H 2 O + Energy  C 6 H 12 O 6 + O 2.
Photosynthesis. Energy & Life Energy is the ability to do work. – It comes in many forms: light, heat, electricity. – Can be stored in chemical compounds,
Lesson Overview Lesson Overview Energy and Life Lesson Overview 8.1 Energy and Life Homeostasis is hard work. Organisms and the cells within them have.
Lesson Overview Lesson Overview Energy and Life THINK ABOUT IT Homeostasis is hard work. Organisms and the cells within them have to grow and develop,
Energy and Life. Warm up Date 11/11  Define these words  ATP  Heterotroph  Autotroph  photosynthesis.
Slide 1 of 20 Copyright Pearson Prentice Hall 8-1 Energy and Life.
Copyright Pearson Prentice Hall 8-1 Energy and Life.
Lesson Overview Lesson Overview Energy and Life Lesson Overview 8.1 Energy and Life.
Lesson 1: Energy and Life. 1. What is energy? The ability to do work.
Energy and Life 8-1. Autotrophs & Heterotrophs Energy is the ability to do work Nearly every activity, and every organism depends on energy Energy that.
 8.1 Energy and Life, Pages  8.2 Photosynthesis: An Overview, Pages  8.3 The Process of Photosynthesis, Pages
CHEMICAL ENERGY AND ATP
Copyright Pearson Prentice Hall
Photosynthesis.
Energy & Life -Describe the role of ATP in cellular activities.
Unit 4: ATP Ms. McCabe.
Chapter 8 Photosynthesis Part 1
Energy and Life video.
Energy and Life.
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Lesson Overview 8.1 Energy and Life.
Lesson Overview 8.1 Energy and Life.
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Energy and Life.
Bellwork: Wed. Oct. 26, 2016 Plants (auto_________) can carry out _______________ & _________________ because they have chloroplasts &________________________.
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Bellwork: Monday Oct. 19, 2015 Plants (auto_________) can carry out _______________ & _________________ because they have chloroplasts &________________________.
Chapter 8: Photosynthesis
Happy Tuesday! You need: Coming up in Biology…
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Lesson Overview 8.1 Energy and Life.
Lesson Overview 8.1 Energy and Life.
Lesson Overview 8.1 Energy and Life Objectives:
Copyright Pearson Prentice Hall
Chapter 8: Photosynthesis
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Lesson Overview 8.1 Energy and Life.
Photosynthesis (8.1 and 8.2).
Copyright Pearson Prentice Hall
Energy and Life Chapter 8.1.
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Copyright Pearson Prentice Hall
Chapter 8.1 Energy and Life.
Lesson Overview 8.1 Energy and Life.
Lesson Overview 8.1 Energy and Life.
Energy In Cells.
Chapter 8-1: Energy & Life
Presentation transcript:

Lesson Overview 8.1 Energy and Life

THINK ABOUT IT Homeostasis is hard work. Organisms and the cells within them have to grow and develop, move materials around, build new molecules, and respond to environmental changes. What powers so much activity, and where does that power come from?

Chemical Energy and ATP Why is ATP useful to cells?

Chemical Energy and ATP Why is ATP useful to cells? ATP can easily release and store energy by breaking and re-forming the bonds between its phosphate groups. This characteristic of ATP makes it exceptionally useful as a basic energy source for all cells.

Chemical Energy and ATP Energy is the ability to do work. Your cells are busy using energy to build new molecules, contract muscles, and carry out active transport. Without the ability to obtain and use energy, life would cease to exist.

Chemical Energy and ATP One of the most important compounds that cells use to store and release energy is adenosine triphosphate (ATP). ATP consists of adenine, a 5-carbon sugar called ribose, and three phosphate groups.

Storing Energy Adenosine diphosphate (ADP) looks almost like ATP, except that it has two phosphate groups instead of three. ADP contains some energy, but not as much as ATP. When a cell has energy available, it can store small amounts of it by adding phosphate groups to ADP, producing ATP. ADP is like a rechargeable battery that powers the machinery of the cell.

Releasing Energy Cells can release the energy stored in ATP by breaking the bonds between the second and third phosphate groups. Because a cell can add or subtract these phosphate groups, it has an efficient way of storing and releasing energy as needed.

Using Biochemical Energy One way cells use the energy provided by ATP is to carry out active transport. Many cell membranes contain sodium-potassium pumps. ATP provides the energy that keeps these pumps working, maintaining a balance of ions on both sides of the cell membrane.

Using Biochemical Energy ATP powers movement, providing the energy for motor proteins that contract muscle and power the movement of cilia and flagella.

Using Biochemical Energy Energy from ATP powers the synthesis of proteins and responses to chemical signals at the cell surface.

Using Biochemical Energy ATP is not a good molecule for storing large amounts of energy over the long term. It is more efficient for cells to keep only a small supply of ATP on hand. Cells can regenerate ATP from ADP as needed by using the energy in foods like glucose.

Heterotrophs and Autotrophs What happens during the process of photosynthesis?

Heterotrophs and Autotrophs What happens during the process of photosynthesis? In the process of photosynthesis, plants convert the energy of sunlight into chemical energy stored in the bonds of carbohydrates.

Heterotrophs and Autotrophs Organisms that obtain food by consuming other living things are known as heterotrophs. Some heterotrophs get their food by eating plants. Other heterotrophs, such as this cheetah, obtain food from plants indirectly by feeding on plant-eating animals. Still other heterotrophs, such as mushrooms, obtain food by decomposing other organisms.

Heterotrophs and Autotrophs Organisms that make their own food are called autotrophs. Plants, algae, and some bacteria are able to use light energy from the sun to produce food. The process by which autotrophs use the energy of sunlight to produce high-energy carbohydrates that can be used for food is known as photosynthesis.