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Lightning is a form of static discharge. ||||| The negative charges repel electrons on the ground below.
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What are we seeing when we see lightning Discharge of electrons is what we see as lightining
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Eventually the electrons are discharged. ||||| This is what we see as lightning.
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What are we seeing when we see lightning Electrons getting discharged from clouds
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This is what we see as lightning. ||||| The positive charges are concentrated at the top.
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What are we seeing when we see lightning Electrons getting discharged from clouds
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Lightning is a form of static discharge. ||||| The negative charges repel electrons on the ground below.
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What are we seeing when we see lightning Electrons getting discharged from clouds
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Eventually the electrons are discharged. ||||| This is what we see as lightning.
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What are we seeing when we see lightning The discharge of electrons
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This is what we see as lightning. ||||| The positive charges are concentrated at the top.
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What are we seeing when we see lightning The discharge of electrons
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Lightning is a form of static discharge. ||||| The negative charges repel electrons on the ground below.
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What are we seeing when we see lightning The discharge of electrons
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You may wonder if there are other examples of static discharge. ||||| The answer is yes.
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Are there other examples of static discharge Lightning is a form of static discharge
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You may wonder if there are other examples of static discharge. ||||| The negative charges are concentrated at the base of the clouds.
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Are there other examples of static discharge Lightning is a form of static discharge
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You can watch an awesome slow-motion lightning strike below. ||||| This is what we see as lightning.
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Are there other examples of static discharge Lightning is a form of static discharge
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You may wonder if there are other examples of static discharge. ||||| The answer is yes.
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Are there other examples of static discharge Door knocker
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You may wonder if there are other examples of static discharge. ||||| The negative charges are concentrated at the base of the clouds.
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Are there other examples of static discharge Door knocker
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You can watch an awesome slow-motion lightning strike below. ||||| This is what we see as lightning.
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Are there other examples of static discharge Door knocker
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You may wonder if there are other examples of static discharge. ||||| The answer is yes.
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Are there other examples of static discharge Yes
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You may wonder if there are other examples of static discharge. ||||| The negative charges are concentrated at the base of the clouds.
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Are there other examples of static discharge Yes
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You can watch an awesome slow-motion lightning strike below. ||||| This is what we see as lightning.
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Are there other examples of static discharge Yes
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You may wonder if there are other examples of static discharge. ||||| The answer is yes.
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Are there other examples of static discharge Lighting
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You may wonder if there are other examples of static discharge. ||||| The negative charges are concentrated at the base of the clouds.
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Are there other examples of static discharge Lighting
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You can watch an awesome slow-motion lightning strike below. ||||| This is what we see as lightning.
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Are there other examples of static discharge Lighting
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Eventually the electrons are discharged. ||||| This is what we see as lightning.
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What do we see when electrons are discharged Lightning
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This is what we see as lightning. ||||| The negative charges are concentrated at the base of the clouds.
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What do we see when electrons are discharged Lightning
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The negative charges are concentrated at the base of the clouds. ||||| As it turns out, everything!
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What do we see when electrons are discharged Lightning
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Eventually the electrons are discharged. ||||| This is what we see as lightning.
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What do we see when electrons are discharged Flashes
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This is what we see as lightning. ||||| The negative charges are concentrated at the base of the clouds.
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What do we see when electrons are discharged Flashes
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The negative charges are concentrated at the base of the clouds. ||||| As it turns out, everything!
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What do we see when electrons are discharged Flashes
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Eventually the electrons are discharged. ||||| This is what we see as lightning.
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What do we see when electrons are discharged Lightening
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This is what we see as lightning. ||||| The negative charges are concentrated at the base of the clouds.
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What do we see when electrons are discharged Lightening
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The negative charges are concentrated at the base of the clouds. ||||| As it turns out, everything!
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What do we see when electrons are discharged Lightening
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The answer is yes. ||||| Lightning is a form of static discharge.
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Is lightning a form of static discharge Yes
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Lightning is a form of static discharge. ||||| Over time the differences increase.
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Is lightning a form of static discharge Yes
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You can see how it occurs in the following diagram and animation. ||||| As it turns out, everything!
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Is lightning a form of static discharge Yes
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The answer is yes. ||||| Lightning is a form of static discharge.
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Is lightning a form of static discharge Agree
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Lightning is a form of static discharge. ||||| Over time the differences increase.
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Is lightning a form of static discharge Agree
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You can see how it occurs in the following diagram and animation. ||||| As it turns out, everything!
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Is lightning a form of static discharge Agree
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Lightning is a form of static discharge. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle.
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What are two examples of static discharge Lightning, and what happens between you and a door knocker
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Lightning is a form of static discharge. ||||| Eventually the electrons are discharged.
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What are two examples of static discharge Lightning, and what happens between you and a door knocker
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The answer is yes. ||||| As it turns out, everything!
|
What are two examples of static discharge Lightning, and what happens between you and a door knocker
|
Lightning is a form of static discharge. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle.
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What are two examples of static discharge Door knocker
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Lightning is a form of static discharge. ||||| Eventually the electrons are discharged.
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What are two examples of static discharge Door knocker
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The answer is yes. ||||| As it turns out, everything!
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What are two examples of static discharge Door knocker
|
Lightning is a form of static discharge. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle.
|
What are two examples of static discharge Lighting
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Lightning is a form of static discharge. ||||| Eventually the electrons are discharged.
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What are two examples of static discharge Lighting
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The answer is yes. ||||| As it turns out, everything!
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What are two examples of static discharge Lighting
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| During a rainstorm, clouds develop regions of different charges.
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How do clouds develop different regions of charges Through the movement of molecules, water drops, and ice particles
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| The negative charges are concentrated at the base of the clouds.
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How do clouds develop different regions of charges Through the movement of molecules, water drops, and ice particles
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You may wonder if there are other examples of static discharge. ||||| The positive charges are concentrated at the top.
|
How do clouds develop different regions of charges Through the movement of molecules, water drops, and ice particles
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| During a rainstorm, clouds develop regions of different charges.
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How do clouds develop different regions of charges Because of motion present in air molecules, water drops, and ice particles
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| The negative charges are concentrated at the base of the clouds.
|
How do clouds develop different regions of charges Because of motion present in air molecules, water drops, and ice particles
|
You may wonder if there are other examples of static discharge. ||||| The positive charges are concentrated at the top.
|
How do clouds develop different regions of charges Because of motion present in air molecules, water drops, and ice particles
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| During a rainstorm, clouds develop regions of different charges.
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How do clouds develop different regions of charges Because of movement of air molecules, water drops, and ice particles
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| The negative charges are concentrated at the base of the clouds.
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How do clouds develop different regions of charges Because of movement of air molecules, water drops, and ice particles
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You may wonder if there are other examples of static discharge. ||||| The positive charges are concentrated at the top.
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How do clouds develop different regions of charges Because of movement of air molecules, water drops, and ice particles
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What does lighting have to do with static electricity? ||||| As it turns out, everything!
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What does lightning have to do with static electricity Lightning is a form of static energy
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What does lighting have to do with static electricity? ||||| Lightning is a form of static discharge.
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What does lightning have to do with static electricity Lightning is a form of static energy
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| You can watch an awesome slow-motion lightning strike below.
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What does lightning have to do with static electricity Lightning is a form of static energy
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What does lighting have to do with static electricity? ||||| As it turns out, everything!
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What does lightning have to do with static electricity Lightning is an example of static energy
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What does lighting have to do with static electricity? ||||| Lightning is a form of static discharge.
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What does lightning have to do with static electricity Lightning is an example of static energy
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| You can watch an awesome slow-motion lightning strike below.
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What does lightning have to do with static electricity Lightning is an example of static energy
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What does lighting have to do with static electricity? ||||| As it turns out, everything!
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What does lightning have to do with static electricity As it turns out, everything
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What does lighting have to do with static electricity? ||||| Lightning is a form of static discharge.
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What does lightning have to do with static electricity As it turns out, everything
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| You can watch an awesome slow-motion lightning strike below.
|
What does lightning have to do with static electricity As it turns out, everything
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What does lighting have to do with static electricity? ||||| As it turns out, everything!
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What does lightning have to do with static electricity Everything!
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What does lighting have to do with static electricity? ||||| Lightning is a form of static discharge.
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What does lightning have to do with static electricity Everything!
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This happens due to the movement of air molecules, water drops, and ice particles. ||||| You can watch an awesome slow-motion lightning strike below.
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What does lightning have to do with static electricity Everything!
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The negative charges are concentrated at the base of the clouds. ||||| The positive charges are concentrated at the top. ||||| During a rainstorm, clouds develop regions of different charges.
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How is the top of a cloud different from the base of the cloud during a rainstorm The positive charges are concentrated at the top
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The negative charges are concentrated at the base of the clouds. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The answer is yes.
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How is the top of a cloud different from the base of the cloud during a rainstorm The positive charges are concentrated at the top
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It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The ground then becomes positively charged. ||||| Over time the differences increase.
|
How is the top of a cloud different from the base of the cloud during a rainstorm The positive charges are concentrated at the top
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The negative charges are concentrated at the base of the clouds. ||||| The positive charges are concentrated at the top. ||||| During a rainstorm, clouds develop regions of different charges.
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How is the top of a cloud different from the base of the cloud during a rainstorm Top and bottom clouds have opposite charges
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The negative charges are concentrated at the base of the clouds. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The answer is yes.
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How is the top of a cloud different from the base of the cloud during a rainstorm Top and bottom clouds have opposite charges
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It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The ground then becomes positively charged. ||||| Over time the differences increase.
|
How is the top of a cloud different from the base of the cloud during a rainstorm Top and bottom clouds have opposite charges
|
The negative charges are concentrated at the base of the clouds. ||||| The positive charges are concentrated at the top. ||||| During a rainstorm, clouds develop regions of different charges.
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How is the top of a cloud different from the base of the cloud during a rainstorm Top and bottom clouds are oppositely charged
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The negative charges are concentrated at the base of the clouds. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The answer is yes.
|
How is the top of a cloud different from the base of the cloud during a rainstorm Top and bottom clouds are oppositely charged
|
It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The ground then becomes positively charged. ||||| Over time the differences increase.
|
How is the top of a cloud different from the base of the cloud during a rainstorm Top and bottom clouds are oppositely charged
|
The negative charges are concentrated at the base of the clouds. ||||| The positive charges are concentrated at the top. ||||| During a rainstorm, clouds develop regions of different charges.
|
How is the top of a cloud different from the base of the cloud during a rainstorm Negative charges are concentrated at the cloud base and positive charges are concentrated at the top
|
The negative charges are concentrated at the base of the clouds. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The answer is yes.
|
How is the top of a cloud different from the base of the cloud during a rainstorm Negative charges are concentrated at the cloud base and positive charges are concentrated at the top
|
It is much more dramatic than what happens between you and the door knocker, but it is the same principle. ||||| The ground then becomes positively charged. ||||| Over time the differences increase.
|
How is the top of a cloud different from the base of the cloud during a rainstorm Negative charges are concentrated at the cloud base and positive charges are concentrated at the top
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The negative charges are concentrated at the base of the clouds. ||||| The negative charges repel electrons on the ground below. ||||| The ground then becomes positively charged.
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How does ground become positively charged The negative charges which are concentrated at the base of the clouds repel electrons on the ground below
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The ground then becomes positively charged. ||||| This is what we see as lightning. ||||| Eventually the electrons are discharged.
|
How does ground become positively charged The negative charges which are concentrated at the base of the clouds repel electrons on the ground below
|
The positive charges are concentrated at the top. ||||| You may wonder if there are other examples of static discharge. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle.
|
How does ground become positively charged The negative charges which are concentrated at the base of the clouds repel electrons on the ground below
|
The negative charges are concentrated at the base of the clouds. ||||| The negative charges repel electrons on the ground below. ||||| The ground then becomes positively charged.
|
How does ground become positively charged The negative charges from the cloud base repel electrons on the ground below
|
The ground then becomes positively charged. ||||| This is what we see as lightning. ||||| Eventually the electrons are discharged.
|
How does ground become positively charged The negative charges from the cloud base repel electrons on the ground below
|
The positive charges are concentrated at the top. ||||| You may wonder if there are other examples of static discharge. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle.
|
How does ground become positively charged The negative charges from the cloud base repel electrons on the ground below
|
The negative charges are concentrated at the base of the clouds. ||||| The negative charges repel electrons on the ground below. ||||| The ground then becomes positively charged.
|
How does ground become positively charged Negative charges at the base of the clouds.repel electrons on the ground below
|
The ground then becomes positively charged. ||||| This is what we see as lightning. ||||| Eventually the electrons are discharged.
|
How does ground become positively charged Negative charges at the base of the clouds.repel electrons on the ground below
|
The positive charges are concentrated at the top. ||||| You may wonder if there are other examples of static discharge. ||||| It is much more dramatic than what happens between you and the door knocker, but it is the same principle.
|
How does ground become positively charged Negative charges at the base of the clouds.repel electrons on the ground below
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| During a rainstorm, clouds develop regions of different charges.
|
How can different regions of clouds have different charges Because of motion present in air molecules, water drops, and ice particles
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| The negative charges are concentrated at the base of the clouds.
|
How can different regions of clouds have different charges Because of motion present in air molecules, water drops, and ice particles
|
You may wonder if there are other examples of static discharge. ||||| The negative charges repel electrons on the ground below.
|
How can different regions of clouds have different charges Because of motion present in air molecules, water drops, and ice particles
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| During a rainstorm, clouds develop regions of different charges.
|
How can different regions of clouds have different charges Because of movement of air molecules, water drops, and ice particles
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| The negative charges are concentrated at the base of the clouds.
|
How can different regions of clouds have different charges Because of movement of air molecules, water drops, and ice particles
|
You may wonder if there are other examples of static discharge. ||||| The negative charges repel electrons on the ground below.
|
How can different regions of clouds have different charges Because of movement of air molecules, water drops, and ice particles
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| During a rainstorm, clouds develop regions of different charges.
|
How can different regions of clouds have different charges It is due to the movement of air molecules, water drops, and ice particles
|
This happens due to the movement of air molecules, water drops, and ice particles. ||||| The negative charges are concentrated at the base of the clouds.
|
How can different regions of clouds have different charges It is due to the movement of air molecules, water drops, and ice particles
|
You may wonder if there are other examples of static discharge. ||||| The negative charges repel electrons on the ground below.
|
How can different regions of clouds have different charges It is due to the movement of air molecules, water drops, and ice particles
|
If approved, the hold-the-line request for LSC means its budget would erode with inflation for another year, but it could be worse for the organization: Many conservatives fought for years to do away with the LSC altogether, saying legal services attorneys were spending too much time fighting for liberal causes or pursuing politically charged cases against the government instead of representing the needy. ||||| 5-36) Republicans cut the organization's budget deeply in 1996, but its funding has recovered slowly.
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What year did the Republicans cut the LSC's budget 1996
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5-36) Republicans cut the organization's budget deeply in 1996, but its funding has recovered slowly. ||||| The money would go to help states, such as Michigan and Ohio, that lost money when the organization redistributed its funding based on census counts made in 2000 of poor households.
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What year did the Republicans cut the LSC's budget 1996
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The federal government began funding some programs to provide legal assistance to the poor in the late 1960s; the Legal Services Corporation was created in 1974 (PL 93-355). ||||| LSC gives nearly all its money to state and local agencies, which provide civil legal assistance to those whose income is less than 125 percent of the federal poverty level - $11,075 a year for an individual and $22,625 for a family of four.
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What year did the Republicans cut the LSC's budget 1996
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Since 1996, lawyers who receive money from Legal Services have been prohibited from such activities as lobbying legislatures, filing class-action suits, participating in political demonstrations or strikes, pursuing abortion-related litigation, representing illegal aliens or prisoners, or defending public housing tenants evicted because they were charged with selling drugs ||||| Opposition to the organization has cooled since 1996, when Congress approved restrictions (PL 104-134) on the sorts of cases federally funded legal aid attorneys can take.
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What types of cases were prohibited by PL 104-134 Defending public housing tenants evicted because they were charged with selling drugs
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Since 1996, lawyers who receive money from Legal Services have been prohibited from such activities as lobbying legislatures, filing class-action suits, participating in political demonstrations or strikes, pursuing abortion-related litigation, representing illegal aliens or prisoners, or defending public housing tenants evicted because they were charged with selling drugs ||||| The money would go to help states, such as Michigan and Ohio, that lost money when the organization redistributed its funding based on census counts made in 2000 of poor households.
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What types of cases were prohibited by PL 104-134 Defending public housing tenants evicted because they were charged with selling drugs
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5-36) Republicans cut the organization's budget deeply in 1996, but its funding has recovered slowly. ||||| Funding for legal services goes to defend needy clients in domestic violence cases, custody cases and other such matters, according to LSC.
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What types of cases were prohibited by PL 104-134 Defending public housing tenants evicted because they were charged with selling drugs
|
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