what are the various ways in which lithospheric plates interact with each other as they move around on a dynamic earth??

Answers

Answer 1
Answer: The plates make up Earth's outer shell, called the lithosphere. (This includes the crust and uppermost part of the mantle.) Churning currents in the molten rocks below propel them along like a jumble of conveyor belts in disrepair. Most geologic activity stems from the interplay where the plates meet or divide.

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Balance KOH+AlCl3 --> Al(OH)3 +KCL

Answers

3KOH+AlCl3--> Al(OH)3+3KCl

List three cases in which potential energy becomes kinetic energy and three cases in which kinetic
energy becomes potential energy

Answers

1 Electrical Potential Energy, separating two charged plates will store energy as the plates want to return to their original position. 

2 Spring or Elastic can be stretched to store energy as it wants to return to rest 

3 Gravitational energy is stored by moving something (ball or pendulum are both examples of this) against a gravity gradient (lifting an object) that wants to fall back down. 

Write in powers of 10 notation: 3 trillion; five-thousandths; 730,000,000,000,000; 0.000000000082.

Answers

The numbers in power of 10 notation would be :

3 trillion is expressed as 3 ×  10¹².

Five-thousandths (0.005) are expressed as 5 × 10⁻³.

730,000,000,000,000 is expressed as 7.3 × 10¹⁴.

0.000000000082 is expressed as 8.2 × 10⁻¹¹.

3 trillion:

In standard form: 3,000,000,000,000

In powers of 10 notation: 3 × 10¹²

Explanation: In this number, 3 is multiplied by 10 raised to the power of 12, indicating that it is 3 followed by 12 zeros. This notation is particularly useful when dealing with very large numbers like the national debt or astronomical distances.

Five-thousandths (0.005):

In standard form: 0.005

In powers of 10 notation: 5 × 10⁻³

Explanation: Here, 5 is multiplied by 10 raised to the power of -3, indicating that it is 5 divided by 1,000 (10³). This notation helps represent fractions or very small quantities.

730,000,000,000,000:

In standard form: 730,000,000,000,000

In powers of 10 notation: 7.3 × 10¹⁴

Explanation: In this case, 7.3 is multiplied by 10 raised to the power of 14, indicating that it is 7.3 followed by 14 zeros. This notation simplifies the expression of extremely large numerical values.

0.000000000082:

In standard form: 0.000000000082

In powers of 10 notation: 8.2 × 10⁻¹¹

Explanation: Here, 8.2 is multiplied by 10 raised to the power of -11, indicating that it is 8.2 divided by 100 billion (10¹¹). This notation is useful when working with very small decimal fractions, such as in scientific measurements.

Powers of 10 notation with superscripts provides a clear and concise way to represent numbers across a wide range of scales, from the macroscopic to the microscopic, making it a fundamental concept in scientific notation.

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3 trillion= 3X10^12
5 thousanths= 5X10^-3
730000000000000= 7.3X10^14
0.000000000082= 8.2X10^-11

The chart shows data for four moving objects.Object
Final Velocity
(m/s)
29
Change in
Time (s)
Initial Velocity
(m/s)
11
10
12
20
W
X
Y
IZ
Which object has the greatest acceleration?
34
Ow
OZ

Answers

Answer:

Y

Explanation:

The answer is y because,

W: (29-11)/6 = 3

X: (34-10)/12 =2

Y: (40-12)/7=4

Z= (28-20)/8=1

4 is greater then all, therefore the answer is Y

Answer:

X

Explanation:

v=u+at but t is constant so

a=v-u

for x

a=29-10

a=19

which marks the greater acceleration

What happens in a change in temperature as it is heated

Answers

It increases in temperature

Give two ways of reversing the direction of the forces on the coil in the electric motor?​

Answers

Answer:

Interchanging the poles of the magnet

Reversing the direction of the applied current

Explanation:

  1. The working of the electric motor is associated with Fleming's left-hand rule.
  2. It states that if a current-carrying conductor is placed inside a magnetic field, it experiences a force in the direction perpendicular to the direction of the electric current and magnetic field.
  3. These three physical quantities are placed in a mutually perpendicular direction.
  4. So, in order to reverse the direction of force, you have to either change the direction of the current or magnetic field.