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Larger sediments are dropped in steep areas. ||||| It spreads out into the body of water. | Are larger sediments dropped in steeper or less steep areas than smaller sediments in the same stream Steeper areas |
When a stream or river slows down, it starts dropping its sediments. ||||| Deposition also occurs when a stream or river empties into a large body of still water. | Are larger sediments dropped in steeper or less steep areas than smaller sediments in the same stream Steeper areas |
When a stream or river slows down, it starts dropping its sediments. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | Where do smaller sediments get dropped when a river or stream slows down As the slope becomes less steep |
When a stream or river slows down, it starts dropping its sediments. ||||| The deposits form an alluvial fan. | Where do smaller sediments get dropped when a river or stream slows down As the slope becomes less steep |
Smaller sediments are dropped as the slope becomes less steep. ||||| In this case, a delta forms. | Where do smaller sediments get dropped when a river or stream slows down As the slope becomes less steep |
When a stream or river slows down, it starts dropping its sediments. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | Where do smaller sediments get dropped when a river or stream slows down Areas that are not steep |
When a stream or river slows down, it starts dropping its sediments. ||||| The deposits form an alluvial fan. | Where do smaller sediments get dropped when a river or stream slows down Areas that are not steep |
Smaller sediments are dropped as the slope becomes less steep. ||||| In this case, a delta forms. | Where do smaller sediments get dropped when a river or stream slows down Areas that are not steep |
When a stream or river slows down, it starts dropping its sediments. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | Where do smaller sediments get dropped when a river or stream slows down Smaller sediments are dropped as the slope becomes less steep |
When a stream or river slows down, it starts dropping its sediments. ||||| The deposits form an alluvial fan. | Where do smaller sediments get dropped when a river or stream slows down Smaller sediments are dropped as the slope becomes less steep |
Smaller sediments are dropped as the slope becomes less steep. ||||| In this case, a delta forms. | Where do smaller sediments get dropped when a river or stream slows down Smaller sediments are dropped as the slope becomes less steep |
Larger sediments are dropped in steep areas. ||||| Some smaller sediments can still be carried by a slow moving stream or river. ||||| Smaller sediments are dropped as the slope becomes less steep. | Are smaller sediments dropped before or after larger sediments They are dropped after larger sediments |
Smaller sediments are dropped as the slope becomes less steep. ||||| A delta is shaped like a triangle. ||||| The deposits form an alluvial fan. | Are smaller sediments dropped before or after larger sediments They are dropped after larger sediments |
In this case, a delta forms. ||||| It spreads out into the body of water. ||||| The deposits form an alluvial fan. | Are smaller sediments dropped before or after larger sediments They are dropped after larger sediments |
Larger sediments are dropped in steep areas. ||||| Some smaller sediments can still be carried by a slow moving stream or river. ||||| Smaller sediments are dropped as the slope becomes less steep. | Are smaller sediments dropped before or after larger sediments After |
Smaller sediments are dropped as the slope becomes less steep. ||||| A delta is shaped like a triangle. ||||| The deposits form an alluvial fan. | Are smaller sediments dropped before or after larger sediments After |
In this case, a delta forms. ||||| It spreads out into the body of water. ||||| The deposits form an alluvial fan. | Are smaller sediments dropped before or after larger sediments After |
Deposition also occurs when a stream or river empties into a large body of still water. ||||| In this case, a delta forms. | When are deltas formed When a stream or river empties into a large body of still water |
In this case, a delta forms. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | When are deltas formed When a stream or river empties into a large body of still water |
Larger sediments are dropped in steep areas. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | When are deltas formed When a stream or river empties into a large body of still water |
Deposition also occurs when a stream or river empties into a large body of still water. ||||| In this case, a delta forms. | When are deltas formed Deposition also occurs when a stream or river empties into a large body of still water |
In this case, a delta forms. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | When are deltas formed Deposition also occurs when a stream or river empties into a large body of still water |
Larger sediments are dropped in steep areas. ||||| Some smaller sediments can still be carried by a slow moving stream or river. | When are deltas formed Deposition also occurs when a stream or river empties into a large body of still water |
Alluvial Fans In arid regions, a mountain stream may flow onto flatter land. ||||| The stream comes to a stop rapidly. | What might you find when a mountain stream flows onto flatter land and comes to a rapid stop in arid regions Alluvial Fans |
Alluvial Fans In arid regions, a mountain stream may flow onto flatter land. ||||| Smaller sediments are dropped as the slope becomes less steep. | What might you find when a mountain stream flows onto flatter land and comes to a rapid stop in arid regions Alluvial Fans |
It spreads out into the body of water. ||||| Larger sediments are dropped in steep areas. | What might you find when a mountain stream flows onto flatter land and comes to a rapid stop in arid regions Alluvial Fans |
Alluvial Fans In arid regions, a mountain stream may flow onto flatter land. ||||| The stream comes to a stop rapidly. ||||| The deposits form an alluvial fan. | What type of feature is formed when mountain streams in arid regions flow onto flatter land and the stream comes to a rapid stop Alluvial fan |
Alluvial Fans In arid regions, a mountain stream may flow onto flatter land. ||||| Some smaller sediments can still be carried by a slow moving stream or river. ||||| In this case, a delta forms. | What type of feature is formed when mountain streams in arid regions flow onto flatter land and the stream comes to a rapid stop Alluvial fan |
A delta is shaped like a triangle. ||||| It spreads out into the body of water. ||||| Deposition also occurs when a stream or river empties into a large body of still water. | What type of feature is formed when mountain streams in arid regions flow onto flatter land and the stream comes to a rapid stop Alluvial fan |
A delta is shaped like a triangle. ||||| It spreads out into the body of water. ||||| Deposition also occurs when a stream or river empties into a large body of still water. | What kind of shape does a river or stream emptying into the larger body of water sculpts the delta into A delta is shaped like a triangle |
A delta is shaped like a triangle. ||||| Some smaller sediments can still be carried by a slow moving stream or river. ||||| Larger sediments are dropped in steep areas. | What kind of shape does a river or stream emptying into the larger body of water sculpts the delta into A delta is shaped like a triangle |
Larger sediments are dropped in steep areas. ||||| The stream comes to a stop rapidly. ||||| In this case, a delta forms. | What kind of shape does a river or stream emptying into the larger body of water sculpts the delta into A delta is shaped like a triangle |
A delta is shaped like a triangle. ||||| It spreads out into the body of water. ||||| Deposition also occurs when a stream or river empties into a large body of still water. | What kind of shape does a river or stream emptying into the larger body of water sculpts the delta into A triangle |
A delta is shaped like a triangle. ||||| Some smaller sediments can still be carried by a slow moving stream or river. ||||| Larger sediments are dropped in steep areas. | What kind of shape does a river or stream emptying into the larger body of water sculpts the delta into A triangle |
Larger sediments are dropped in steep areas. ||||| The stream comes to a stop rapidly. ||||| In this case, a delta forms. | What kind of shape does a river or stream emptying into the larger body of water sculpts the delta into A triangle |
Think about when you have a lot of energy. ||||| You are able to do a lot of things. ||||| When you dont have a lot of energy, you may sit around and do very little. | What happens when someone has a lot of energy as compared to little energy The faster particles move |
When you dont have a lot of energy, you may sit around and do very little. ||||| Simply put, energy is the ability to a cause change. ||||| Energy is also the reason you are able to move around. | What happens when someone has a lot of energy as compared to little energy The faster particles move |
The energy of moving matter is called kinetic energy. ||||| Thanks to energy, your body moves. ||||| In fact, matter is always in motion. | What happens when someone has a lot of energy as compared to little energy The faster particles move |
Think about when you have a lot of energy. ||||| You are able to do a lot of things. ||||| When you dont have a lot of energy, you may sit around and do very little. | What happens when someone has a lot of energy as compared to little energy You are able to do a lot of things. When you don't have a lot of energy, you may sit around and do very little |
When you dont have a lot of energy, you may sit around and do very little. ||||| Simply put, energy is the ability to a cause change. ||||| Energy is also the reason you are able to move around. | What happens when someone has a lot of energy as compared to little energy You are able to do a lot of things. When you don't have a lot of energy, you may sit around and do very little |
The energy of moving matter is called kinetic energy. ||||| Thanks to energy, your body moves. ||||| In fact, matter is always in motion. | What happens when someone has a lot of energy as compared to little energy You are able to do a lot of things. When you don't have a lot of energy, you may sit around and do very little |
Think about when you have a lot of energy. ||||| You are able to do a lot of things. ||||| When you dont have a lot of energy, you may sit around and do very little. | What happens when someone has a lot of energy as compared to little energy You move around a lot as opposed to a little |
When you dont have a lot of energy, you may sit around and do very little. ||||| Simply put, energy is the ability to a cause change. ||||| Energy is also the reason you are able to move around. | What happens when someone has a lot of energy as compared to little energy You move around a lot as opposed to a little |
The energy of moving matter is called kinetic energy. ||||| Thanks to energy, your body moves. ||||| In fact, matter is always in motion. | What happens when someone has a lot of energy as compared to little energy You move around a lot as opposed to a little |
Energy causes a change in matter when you lift your arm. ||||| You use energy to take a step to move forward. ||||| The energy of moving matter is called kinetic energy. ||||| Energy is also the reason you are able to move around. | Lifting your arm, walking and moving around are all forms of what type of energy Kinetic energy |
Energy is also the reason you are able to move around. ||||| You see this every time you use the toaster. ||||| Thanks to energy, your body moves. ||||| In fact, matter is always in motion. | Lifting your arm, walking and moving around are all forms of what type of energy Kinetic energy |
Thanks to energy, your body moves. ||||| When you dont have a lot of energy, you may sit around and do very little. ||||| For example, electrical energy can be converted into heat energy. ||||| Simply put, energy is the ability to a cause change. | Lifting your arm, walking and moving around are all forms of what type of energy Kinetic energy |
It can even change from one form to another. ||||| For example, electrical energy can be converted into heat energy. ||||| You see this every time you use the toaster. | Using a toaster is an example of what Heat energy |
It can even change from one form to another. ||||| Think about when you have a lot of energy. ||||| You are able to do a lot of things. | Using a toaster is an example of what Heat energy |
A similar thing happens to particles of matter as energy is added. ||||| You use energy to take a step to move forward. ||||| In fact, matter is always in motion. | Using a toaster is an example of what Heat energy |
It can even change from one form to another. ||||| For example, electrical energy can be converted into heat energy. ||||| You see this every time you use the toaster. | Using a toaster is an example of what Converting energy or energy changing forms |
It can even change from one form to another. ||||| Think about when you have a lot of energy. ||||| You are able to do a lot of things. | Using a toaster is an example of what Converting energy or energy changing forms |
A similar thing happens to particles of matter as energy is added. ||||| You use energy to take a step to move forward. ||||| In fact, matter is always in motion. | Using a toaster is an example of what Converting energy or energy changing forms |
It can even change from one form to another. ||||| For example, electrical energy can be converted into heat energy. ||||| You see this every time you use the toaster. | Using a toaster is an example of what Electric energy is converted into heat energy, or conversion |
It can even change from one form to another. ||||| Think about when you have a lot of energy. ||||| You are able to do a lot of things. | Using a toaster is an example of what Electric energy is converted into heat energy, or conversion |
A similar thing happens to particles of matter as energy is added. ||||| You use energy to take a step to move forward. ||||| In fact, matter is always in motion. | Using a toaster is an example of what Electric energy is converted into heat energy, or conversion |
It can even change from one form to another. ||||| In fact, matter is always in motion. | True or false. Matter is able to change forms despite, usually, not being in motion False. Matter is always in motion |
It can even change from one form to another. ||||| Think about when you have a lot of energy. | True or false. Matter is able to change forms despite, usually, not being in motion False. Matter is always in motion |
The more energy there is, the faster the particles of matter move. ||||| You are able to do a lot of things. | True or false. Matter is able to change forms despite, usually, not being in motion False. Matter is always in motion |
It can even change from one form to another. ||||| In fact, matter is always in motion. | True or false. Matter is able to change forms despite, usually, not being in motion False |
It can even change from one form to another. ||||| Think about when you have a lot of energy. | True or false. Matter is able to change forms despite, usually, not being in motion False |
The more energy there is, the faster the particles of matter move. ||||| You are able to do a lot of things. | True or false. Matter is able to change forms despite, usually, not being in motion False |
When you dont have a lot of energy, you may sit around and do very little. ||||| A similar thing happens to particles of matter as energy is added. ||||| The more energy there is, the faster the particles of matter move. | What happens to particles with little energy as opposed to particles with a lot of energy The more energy the faster the particles move |
The more energy there is, the faster the particles of matter move. ||||| In fact, matter is always in motion. ||||| The energy of moving matter is called kinetic energy. | What happens to particles with little energy as opposed to particles with a lot of energy The more energy the faster the particles move |
Energy can be used to move matter. ||||| Energy can cause many types of change. ||||| The energy of moving matter is called kinetic energy. | What happens to particles with little energy as opposed to particles with a lot of energy The more energy the faster the particles move |
When you dont have a lot of energy, you may sit around and do very little. ||||| A similar thing happens to particles of matter as energy is added. ||||| The more energy there is, the faster the particles of matter move. | What happens to particles with little energy as opposed to particles with a lot of energy Particles with little energy move slow, while particles with a lot of energy move fast. The more energy there is, the faster the particles of matter move |
The more energy there is, the faster the particles of matter move. ||||| In fact, matter is always in motion. ||||| The energy of moving matter is called kinetic energy. | What happens to particles with little energy as opposed to particles with a lot of energy Particles with little energy move slow, while particles with a lot of energy move fast. The more energy there is, the faster the particles of matter move |
Energy can be used to move matter. ||||| Energy can cause many types of change. ||||| The energy of moving matter is called kinetic energy. | What happens to particles with little energy as opposed to particles with a lot of energy Particles with little energy move slow, while particles with a lot of energy move fast. The more energy there is, the faster the particles of matter move |
When you dont have a lot of energy, you may sit around and do very little. ||||| A similar thing happens to particles of matter as energy is added. ||||| The more energy there is, the faster the particles of matter move. | What happens to particles with little energy as opposed to particles with a lot of energy Particles do not move as much |
The more energy there is, the faster the particles of matter move. ||||| In fact, matter is always in motion. ||||| The energy of moving matter is called kinetic energy. | What happens to particles with little energy as opposed to particles with a lot of energy Particles do not move as much |
Energy can be used to move matter. ||||| Energy can cause many types of change. ||||| The energy of moving matter is called kinetic energy. | What happens to particles with little energy as opposed to particles with a lot of energy Particles do not move as much |
You use energy to take a step to move forward. ||||| The energy of moving matter is called kinetic energy. | When you use energy to take a step forward, what is it called Motion |
You use energy to take a step to move forward. ||||| For example, electrical energy can be converted into heat energy. | When you use energy to take a step forward, what is it called Motion |
Energy causes a change in matter when you lift your arm. ||||| You are able to do a lot of things. | When you use energy to take a step forward, what is it called Motion |
You use energy to take a step to move forward. ||||| The energy of moving matter is called kinetic energy. | When you use energy to take a step forward, what is it called Kinetic energy |
You use energy to take a step to move forward. ||||| For example, electrical energy can be converted into heat energy. | When you use energy to take a step forward, what is it called Kinetic energy |
Energy causes a change in matter when you lift your arm. ||||| You are able to do a lot of things. | When you use energy to take a step forward, what is it called Kinetic energy |
It is also warm by the fire, meaning it creates heat. ||||| The energy of the fire comes from the stored energy in the wood. | What form of stored energy fuels a fire Chemical energy |
The energy of the fire comes from the stored energy in the wood. ||||| Have you ever sat in front of a campfire? | What form of stored energy fuels a fire Chemical energy |
As it burns, the chemical energy is changed into light and heat. ||||| Gasoline contains chemical energy. | What form of stored energy fuels a fire Chemical energy |
The energy of the fire comes from the stored energy in the wood. ||||| Have you ever sat in front of a campfire? | When you sit in front of a campfire, where does the energy of the fire come from Stored energy in the wood |
Have you ever sat in front of a campfire? ||||| What are two things you notice? | When you sit in front of a campfire, where does the energy of the fire come from Stored energy in the wood |
When energy changes forms, energy is conserved. ||||| What are two things you notice? | When you sit in front of a campfire, where does the energy of the fire come from Stored energy in the wood |
The energy of the fire comes from the stored energy in the wood. ||||| Have you ever sat in front of a campfire? | When you sit in front of a campfire, where does the energy of the fire come from Energy stored in the wood |
Have you ever sat in front of a campfire? ||||| What are two things you notice? | When you sit in front of a campfire, where does the energy of the fire come from Energy stored in the wood |
When energy changes forms, energy is conserved. ||||| What are two things you notice? | When you sit in front of a campfire, where does the energy of the fire come from Energy stored in the wood |
The wood contains chemical energy. ||||| As it burns, the chemical energy is changed into light and heat. | The wood of a fire contains chemical energy that is transformed into what two other energies Light and heat |
The wood contains chemical energy. ||||| The fire creates light. | The wood of a fire contains chemical energy that is transformed into what two other energies Light and heat |
Frequently, one form of energy changes into two or more different forms. ||||| Have you ever sat in front of a campfire? | The wood of a fire contains chemical energy that is transformed into what two other energies Light and heat |
For example, the drummer transfers motion to sound energy. ||||| When the moving drumstick strikes the drum head, the drum starts to vibrate. | Drummers transform chemical energy into what Sound |
For example, the drummer transfers motion to sound energy. ||||| Energy often changes from one form to another. | Drummers transform chemical energy into what Sound |
The wood contains chemical energy. ||||| The motion of the vibrating drum head creates the sound you hear. | Drummers transform chemical energy into what Sound |
For example, the drummer transfers motion to sound energy. ||||| When the moving drumstick strikes the drum head, the drum starts to vibrate. | Drummers transform chemical energy into what Motion to sound energy |
For example, the drummer transfers motion to sound energy. ||||| Energy often changes from one form to another. | Drummers transform chemical energy into what Motion to sound energy |
The wood contains chemical energy. ||||| The motion of the vibrating drum head creates the sound you hear. | Drummers transform chemical energy into what Motion to sound energy |
For example, the drummer transfers motion to sound energy. ||||| When the moving drumstick strikes the drum head, the drum starts to vibrate. | Drummers transform chemical energy into what Sound energy |
For example, the drummer transfers motion to sound energy. ||||| Energy often changes from one form to another. | Drummers transform chemical energy into what Sound energy |
The wood contains chemical energy. ||||| The motion of the vibrating drum head creates the sound you hear. | Drummers transform chemical energy into what Sound energy |
The wood contains chemical energy. ||||| As it burns, the chemical energy is changed into light and heat. | What type of energy does wood contain Chemical energy |
As it burns, the chemical energy is changed into light and heat. ||||| When our cars burn gasoline in their engines, it is converted into motion and heat. | What type of energy does wood contain Chemical energy |
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