ANSWER ASAP
Dr. Thakkar was studying a fossil from a dig in a desert when he noticed that the organism had evidence of find. Why would this most likely tell Dr. thakkar

ANSWER ASAPDr. Thakkar Was Studying A Fossil From A Dig In A Desert When He Noticed That The Organism

Answers

Answer 1

B the desert was once covered in water

Answer 2

Answer: The answer is B.

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Related Questions

Which part of the wave has the highest frequency?

Answers

Answer:

The last part on the right side of the diagram

Explanation:

Im on plato and just got it right :)

The last part on the right end of the given wave has the highest frequency.

What are frequency and wavelength?

The frequency can be defined as the number of oscillations of a wave in 1 second. The wavelength can be described as the distance between the two crests or troughs on a wave that is separated by a distance.

For periodic waves, media in which the wave speed is independent of frequency, therefore the frequency has an inverse relationship to the wavelength.

[tex]{\displaystyle f={\frac {v}{\lambda }}[/tex]

In electromagnetic waves in vacuum, then v = c, where c is the speed of light:

[tex]{\displaystyle f={\frac {c}{\lambda }}[/tex]

When monochromatic waves propagate from one medium to another, their frequency will remain the same.

Frequency can be defined as the number of occurrences of a repeating event per unit of time. Frequency can be measured in hertz (Hz) which is generally equal to one event per second.

Therefore, the part at the very right of the wave has the highest frequency.

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Select the correct answer. What happens to the sum of the ball’s kinetic energy and potential energy as the ball rolls from point A to point E? Assume there’s no friction between the ball and the ground. A. The sum decreases. B. The sum increases. C. The sum remains the same. D. The sum always equals zero.

Answers

Answer:

It might be the sum is the same

Explanation:

Correct me if i am wrong but there is no friction so that means there would not be anything slowing down the ball, therefore the ball wouldn't change or the energy wouldn't change because the ball would never stop.

The sum of the ball’s kinetic energy and potential energy remains the same as the ball rolls from point A to point E ( if there’s no friction between the ball and the ground).

Answer: Option C

Explanation:

Based on the law of mechanical energy's conservation, the sum of both kinetic and potential energies i.e. the total amount of mechanical energy remain conserved even in the absence of dissipative forces (friction or air resistance) in a bound system.

                    E = Kinetic + Potential

The kinetic energy is high when ball goes downward but potential energy decreases and reverse happens when ball goes up. But in these case, the sum energy would be constant one.

What will happen to your kinetic energy if you triple your speed

Answers

The change in the kinetic energy of the object as the speed changes is proportional to the square of the factor by which the speed changes. For example if the speed of the object becomes double, its kinetic energy changes to four times the initial kinetic energy.

A wave travels at a constant speed. How does the frequency change if the wavelength is reduced by a factor of 4

Answers

The product of (wavelength) x (frequency) is always the same number ... the wave's speed.  

So if the wavelength is somehow reduced to  1/4  its original length, the frequency is immediately multiplied by 4 .  That's the only way their product can remain the same.

The frequency increases by a factor of four when the wavelength is lowered by a factor of four.

What is frequency?

Frequency is defined as the number of repetitions of a wave occurring waves in 1 second.

Frequency is given by the formula as,

[tex]\rm v = \lambda \times f[/tex]

If a wave travels at a constant speed the e frequency is inversely proportional to the wavelength.

if the wavelength is reduced by a factor of 4 then the frequency increases by a factor of 4.

Hence, the frequency increases by a factor of 4.

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4.
Organelles that use energy from sunlight to produce food are called _____.

ribosomes

lysosomes

chloroplasts

mitochondria

5.

Use the diagram to answer the question.

Which describes the cell?

a bacterial cell with a nucleus

an animal cell with a nucleus

a bacterial cell without a nucleus

an animal cell without a nucleus


6.
Specialized cells are found only in _____.

animals

bacteria

single-celled organisms

many-celled organisms

Answers

ribosomes

an animal cell with a nucleus

animal

Answer:

4) Chloroplasts, 5) An animal cell with a nucleus, 6) many-celled organisms.

Explanation:

4) Chloroplasts are organelles present in eukariotic cells that produce food with the help of sunlight via photosynthesis.

5) Every cell has a nucleus. Bacteriae are prokariotic cells, while vegetal and animal cells are eukariotic cells, in which cytoplasm is exclusive for organells. Hence, the right answer is: An animal cell with a nucleus.

6) Specialized cells are cells that help in functioning of many-celled organisms. Therefore, the right choice is: many-celled organisms.

Atmospheric refraction of light rays is responsible for which of the following effects? a. spherical aberration c. chromatic aberration b. mirages d. total internal reflection in a gemstone

Answers

Answer: b. mirages

Explanation:

A mirage is an optical illusion that occurs naturally due to refraction in the atmosphere. This phenomenon occurs especially in environments where the air exhibits large variations in its temperature, causing each of the layers with different temperatures to have a different index of refraction and therefore, the light rays will be diverted to the colder side.

Then, when this happens, displaced images of distant objects, or in the sky, are produced. In fact, sometimes it seems that distant objects are reflected on a liquid surface that is not real.

Which forces do not require contact between objects in order to exert a push or pull?
select all that apply

gravitational force between the earth and an object

tension force between an object and a rope

magnetic force between two magnets

frictional force between a surface and an object

Answers

Answer:

Gravitational force and magnetic force. The other forces on the list require contact (tension requires contact with the rope and friction requires the object to be in contact with the surface)

Explanation:

Answer:

gravitational force between the earth and an object and magnetic force between two magnets

Explanation:

gravitational force between the earth and an object and magnetic force between two magnets are forces that does not require contact between objects in order to exert a push or pull.

The earth and the object are never in contact with each other but there is a force of gravitation existing between them. There is force of attraction between the masses of the earth and the masses according to gravitational law are separated by a distance.

Force between two magnets may or maynot exert push or pull. They only attract when the poles of the magnets are unlike poles (different). There is force of repulsion between them if like poles of the magnet come together according to the law of magnetism. Magnets in magnetic field will always experience force even if at a distance from each other in the field hence the reason for the selected options

What effect changing voltage and resistance on electric current?

Answers

Ohm's law states that the electrical current (I) flowing in an circuit is proportional to the voltage (V) and inversely proportional to the resistance (R). Therefore, if the voltage is increased, the current will increase provided the resistance of the circuit does not change.

Final answer:

Changes in voltage and resistance directly impact electrical current due to Ohm's Law. Increasing voltage increases current if resistance is kept constant. Conversely, increasing resistance decreases current if voltage is kept constant.

Explanation:

The effect of changing voltage and resistance on electric current can be explained using Ohm's Law, which states that the current through a conductor between two points is directly proportional to the voltage across the two points, and inversely proportional to the resistance between them. This can be expressed by the formula I = V/R, where I is the current, V is the voltage, and R is the resistance.

When voltage increases, the current will also increase if the resistance is kept constant. Similarly, increasing resistance will decrease the current if the voltage is kept constant. For example, when the voltage is doubled to a 25-W bulb, its power nearly quadruples to about 100 W, burning it out. If the bulb's resistance remained constant, its power would be exactly 100 W, but at the higher temperature its resistance is higher, too.

Therefore, voltage and resistance are intricately linked to the electric current in a circuit. It's always critical in electrical circuits to have a proper balance of voltage, resistance, and current to prevent any malfunctions or damage to electrical components.

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A soccer player kicks a ball from the ground with a speed of 16 m/s at an angle of 63°.

A. What is the horizontal component of the velocity?
B. What is the vertical component of the velocity?

Answers

A. Horizontal component: 7.3 m/s

Explanation:

The horizontal component of the velocity is given by:

[tex]v_x = v_0 cos \theta[/tex]

where

[tex]v_0 = 16 m/s[/tex] is the magnitude of the initial velocity

[tex]\theta=63^{\circ}[/tex] is the angle of the initial velocity with respect to the ground

Substituting numbers into the equation, we find

[tex]v_x = (16 m/s) cos 63^{\circ}=7.3 m/s[/tex]

B. Vertical component: 14.3 m/s

Explanation:

The vertical component of the velocity is given by:

[tex]v_y = v_0 sin \theta[/tex]

where

[tex]v_0 = 16 m/s[/tex] is the magnitude of the initial velocity

[tex]\theta=63^{\circ}[/tex] is the angle of the initial velocity with respect to the ground

Substituting numbers into the equation, we find

[tex]v_y = (16 m/s) sin 63^{\circ}=14.3 m/s[/tex]

which of the following technologies uses electromagnetic radiation with the longest wavelenght?

A. Wireless communications transmitter

B. Compact fluorescent light bulb

C. Microwave industrial drying equipment

D. Infrared sensor on a DVD player

Answers

Final answer:

The technology that uses electromagnetic radiation with the longest wavelength is the Wireless communications transmitter, as it uses radio waves, which have the longest wavelengths in the electromagnetic spectrum.

Explanation:

The question refers to which technology uses electromagnetic radiation with the longest wavelength. From the given options, wireless communications transmitters typically use radio waves, compact fluorescent light bulbs emit light mostly in the visible spectrum, microwave industrial drying equipment uses microwaves, and infrared sensors on a DVD player use infrared radiation.

Based on the electromagnetic spectrum, radio waves have the longest wavelength, followed by microwaves, then infrared, and finally visible light which is emitted by the compact fluorescent bulbs. Therefore, the technology that uses the electromagnetic radiation with the longest wavelength amongst the choices provided is A. Wireless communications transmitter.

Amy uses 20N of force to push a lawn mower 10 meters. How much work does she do? *
200 J
250 J
220 J

Answers

She does 200J .

We know she uses 20N of force and 10m is the distance. We multiply both numbers and we are given our answer of 200J. Hope this was helpful. :)

Jason applies a force of 4.00 newtons to a sled at an angle 62.0 degrees from the ground. What is the component of force effective in pulling the sled horizontally along the ground?

Answers

Answer:

1.88 N

Explanation:

Given in the question,

force applied by Jason  = 4N

angle which it make with the ground = 62°

The angle made with the x-axis is cosine of the angle 62°

Thus, the horizontal component of the force is equal to

F = 4.00(cos62⁰) = 1.88 N

              /

            /

4N     /

       /

     / 62°

  Ф ------------------------

   

by using trigonometry identity

cosФ = adjacent / hypotenuse

horizontal force = hypotenuse (cos(Ф))

horizontal force = 4cos(62)

Explain....

A parallel plate capacitor has a capacity 80 x 10-6 when air is present between the plates. The volume between the plates is then completely filled with a dielectric slab of dielectric constant 20. The capacitor is now connected to a battery of 30 v by wires the dielectric slab is then removed. Then the charge that passes now through the wire is

Answers

Answer:

The charge that will pass through the wire will be approx. 0.003C.

Explanation:

Two equations are relevant to answer this question:

(1) The charge (Q) over a capacitance (C), given a voltage (U):

[tex]Q = C\cdot U[/tex]

and

(2) the capacitance of a parallel-plate capacitor:

[tex]C=\varepsilon \frac{A}{d}[/tex]

with [tex]\varepsilon[/tex] being the dielectric constant, A the plate area and d their distance.

We are given the capacitance when air is present (80 micro-Farad, or uF). The dielectric constant for air/vacuum is 8.84 pico-Farad per meter. Then someone sneaky slides a slab of dielectric medium with dielectric constant of 20 pF/m and connects a source of 30V. By inserting the slab, they increased the capacitance by a factor of 20/8.84=2.26, making it 2.26*80=181uF. By connecting it to the source 30V, they charged our capacitor to a charge

[tex]Q = C\cdot V = 181\cdot 10^{-6}F\cdot 30V=5.43\cdot 10^{-3}C[/tex]

but, the sneaky person changes his mind and removes the slab, effectively changing C down to the original 80uF. There is now excess charge on the capacitor that wants to leave! The steady-state charge on the air-filled capacitor should be:

[tex]Q_0 = C_0\cdot V = 80\cdot 10^{-6}F\cdot 30V=2.4\cdot 10^{-3}C[/tex]

The charge that will pass through the wire will be the difference:

[tex]Q-Q_0=(5.43-2.40)\cdot 10^{-3}C\approx 3\cdot 10^{-3}C[/tex]

During a storm, the power went out at Bailey's house. She had no electricity. What could she use as an alternate form of electrical energy?

Answers

A battery operated lamp because battery's don't use your own electricity. They come with electricity already.

a battery operated lamp

Which of these is NOT one of Earth's tectonic plates?
A. Indian plate
B. Pacific plate
C. Atlantic plate
D. North American plate

Answers

C. the atlantic tectonic plate does NOT exist

The C. Atlantic Plate is not a tectonic plate.

All continents and oceans on Earth rest on tectonic plates which form a part of the Earth's crust. These plates are constantly in motion because they are floating on the mantle.

There are several plates on Earth but none of them are called the Atlantic plate.

The Atlantic ocean rests on:

the Eurasian plateNorth American plateAfrican plateSouth American plate Antarctic plate and, Caribbean plate

In conclusion we can therefore say that there is no Atlantic plate.

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ASAP PLS
If the amplitude of a wave is 2 feet, what is the Wave Height?

Answers

Answer;

= 4 feet

Explanation;

The height of the wave is defined as the elevation of the crest minus the elevation of the trough. or

The wave height is defined as the twice of the amplitude

It is given that the amplitude of the wave is 4 feet. The height of the wave is given as;

H = 2a

Where a is the amplitude of the wave.

Therefore, H = 4 feet.

How are the current and resistance related when the voltage of a circuit is constant

Answers

Final answer:

At a constant voltage, current and resistance are inversely related as per Ohm's Law, with current decreasing as resistance increases, and vice versa.

Explanation:

When the voltage in a circuit is held constant, the current flowing through the circuit is inversely proportional to the resistance. This relationship is encapsulated by Ohm's Law, which states that the current (I) is equal to the voltage (V) divided by the resistance (R), mathematically represented as [tex]I = \frac{V}{R}[/tex].

As such, if the resistance in the circuit increases while the voltage remains unchanged, the current will decrease. Conversely, if the resistance decreases, the current will increase.

The resistance is influenced by factors such as the material of the conductor and its temperature. At a constant temperature, the resistance remains steady regardless of the changes in voltage or current.

Therefore, when considering Ohm's Law in a practical scenario, such as household electrical circuits, resistance plays a critical role in determining the current that flows through an appliance.

Which of the following waves have the highest energy? A. Gamma Waves B. Microwaves C. Radio Waves D. Visible Light

Answers

A. Gamma waves have the highest

Final answer:

Gamma Waves have the highest energy in the given list, followed by X-rays, Ultraviolet, Visible Light, Infrared, Microwaves, and then Radio Waves. Their energy is high enough to damage biological cells

Explanation:

In the electromagnetic spectrum, the energy of a wave is inversely proportional to its wavelength. The shorter the wavelength, the higher the energy they have. In this list, Gamma Waves have the shortest wavelength and therefore the highest energy.

Following Gamma Waves, are X-rays, Ultraviolet, Visible Light, Infrared, Microwaves, and then Radio Waves in terms of energy. Among these options, Gamma Waves definitely have the highest energy. The energy of Gamma Waves can be so high that they can cause damage to biological cells and are thus used in cancer therapy to destroy tumors.

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A 3-kilogram block slides along on a frictionless surface at 4 m/s north, and strikes an obstacle that exerts an impulse on the block of 6 N-s to the south. What is the speed of the block after the collision?

Answers

Answer:

2 m/s

Explanation:

The impulse exerted by the obstacle on the block is equal to the change in momentum of the block:

[tex]I=\Delta p = -6 Ns[/tex]

where we put a negative sign because the direction of the impulse is south, which is opposite to the initial direction of travelling of the block (north).

The change in momentum is also equal to

[tex]\Delta p = m (v-u)[/tex]

where

m = 3 kg is the mass of the block

v is the final velocity

u = +4 m/s is the initial velocity

Solving the equation for v, we find the final velocity of the block:

[tex]v=u+\frac{\Delta p}{m}=+4 m/s+\frac{-6 Ns}{3 kg}=+2 m/s[/tex]

and the positive sign means the direction is still north.

A common characteristic of sound waves is that they

A. Are created by vibrations
B. Travel in straight lines toward the source
C. Travel fastest through empty space
D. Move at the speed of light

Answers

Answer;

A. Are created by vibrations

Explanation;Mechanical waves are waves which travel only through matter and involve the motion  and vibration of particles of the matter they pass through. Sound waves are an example.Sound waves are longitudinal waves. Speed of sound is about 343 m/s (767 mi/h) in sea-level air at ordinary temperatures. Additionally, sound travels faster in liquids and solids than in gases.

A common characteristic of sound waves is that they are created by vibrations. Sound is produced when an object or medium vibrates, causing molecules or particles in the surrounding medium to also vibrate. The correct option is option (A).

A common characteristic of sound waves is that they are created by vibrations. These vibrations are transmitted as mechanical waves through the medium, resulting in the propagation of sound.

Sound waves travel in a variety of directions depending on the source and surrounding conditions, so option (B) is not accurate in general.

Option (C) is incorrect because sound waves require a medium to propagate and cannot travel through empty space, such as a vacuum.

Option (D) is also incorrect because the speed of sound is much slower than the speed of light.

A common characteristic of sound waves is that they are created by vibrations. The correct option is option (A).

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Explain how the mass of a planet affects the motion of the planet around the sun?

Answers

Answer:

The gravitational attraction of the Sun is what holds the planets in their elliptical orbits. So to explain this the mass effects the motion of the planets because the strength of gravitational force depends of the mass.

Explanation:

The mass of a planet affects the motion of the planet around the sun because mass is directly proportional to the gravitational force.

What is gravity?

The force of attraction felt by a person at the center of a planet or Earth is called as the gravity.

Force of gravity between Sun and planet while moving in orbit is given by

F = GMm/R²

where M is the mass of Sun, m is the mass of any planet, G = gravitational constant = 6.67 x 10⁻¹¹ N.m²/kg² and R is the distance between two masses.

The weight of a person or object is determined by gravity. The gravitational attraction of the Sun holds the planets to move in their elliptical orbits.

Thus, the mass effects the motion of the planets because the strength of gravitational force depends of the mass of planet

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Please help-you need to fill in the blanks
a) 2 trains are moving towards each other along a straight line. To find the speed of one train relative to the other train you need to ............. their speeds.
b) 2 trains are moving in the same direction along a straight line. To find the speed of one train relative to the other train, you need to ............ their speeds.

Answers

Answer:

1 average 2 subtract.

Explanation:

a). add

b). subtract.

NEED HELP ASAP PLEASEEE!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
Which of the following is an example of work being done on an object?
A.
A man pushes a couch across the room.
B.
A prism scatters ultraviolet light into visible light.
C.
A box rests on the floor.
D.
Water in a pot changes into steam.

In the diagram above, which letter identifies an axle?
A.
X
B.
Z
C.
Y
D.
W

Which simple machine can be described as a shaft that is attached to the center of a wheel?
A.
lever
B.
inclined plane
C.
pulley
D.
wheel and axle

Usually, levers are used to reduce the input force needed to move an object. This is only possible when the input force acts over a long distance and the object moves a shorter distance.

However, sometimes levers are designed to increase the input force needed to move an object. Which of the following is most likely an example of this type of lever?
A.
a catapult
B.
a see-saw
C.
a wheelbarrow
D.
a crowbar

Answers

Answer:

work being done on an object.

Answer. A. A man pushes a couch across the room

diagram identifies an axle:

Answer: B. Z

simple machine described as a shaft at the center of a wheel:

Answer: D. Wheel and axle

Type of lever:

A. a catapult

Answer:

work being done on an object.

Answer. A. A man pushes a couch across the room

diagram identifies an axle:

Answer: B. Z

simple machine described as a shaft at the center of a wheel:

Answer: D. Wheel and axle

Type of lever:

A. a catapult

Explanation:

Block A has a mass of 14 kg, block B has a mass of 12 kg, and angle alpha equals 19°. What is the tension in the wire that connects blocks A and B?
44 N

38 N

33 N

41 N

Answers

Answeroption B38 NExplanation

Given that,

mass of block A = 14kg

mass of block B = 12kg

angle alpha equals = 19°

Formula to find tension in the wire connecting blocks A and B

Tension in wire connecting weight of object A and B is due to weight of block B

             = mgsin19

due to slope we will take horizontal components of weight, mg

             = 12(9.81)sin(19)

             = 38.3

           

whats 46/50 as a percent?​

Answers

92 percent because you multiply it by 2

I'm pretty sure that would be a A.

Which statement below best describes the properties of solids? A. Solids have both definite shape and definite volume. B. Solids have definite volume but no definite shape. C. Solids have definite shape but no definite volume. D. Solids have no definite shape or volume.

Answers

The answer is A. Solids have both definite shape and denfinite volume.

The correct statement that describes the properties of solids is A. Solids have both a fixed shape and a fixed volume, resulting from the particles being in fixed positions and bound by strong intermolecular forces.

Among the statements given, the one that best describes the properties of solids is: A. Solids have both definite shape and definite volume. In the solid state, the particles that make up the material are in fixed positions relative to each other because the thermal energy is not sufficient to overcome the strong intermolecular forces that bind them. This result is that solids have a rigid and definite shape, and they also have a definite volume, which means they do not change volume or shape unless a force is applied that alters their structure.

Liquids, on the other hand, have a definite volume but no definite shape, assuming the shape of their containers. Gases fill their containers completely, expanding to fill the volume available and thus having neither a definite volume nor a definite shape.

A box is held at rest by two ropes that form 30° angles with the vertical. The tension T in either rope is 42 N. What is the weight (w) of the box?

73 N

36 N

79 N

86 N

62 N

Answers

Answer:

w = 73 N

Explanation:

Since the box is held by the ropes it means that the resulting tension is equal to the weight of the box

T_res = w

Now, the resulting tension is a combination of the tension of each rope.

Since we want to find the vertical component we must multiply by the cosine of 30 degrees the value of T

T_res =  T*cos(30) + T*cos(30)

T_res = 2*(42 N)*(0.866)

T_res = 72.746 N

T_res = w = 72.746 N

I’m not understanding this , any help ?

Answers

Answer;

B. 2HCl + Mg(OH)2 → 2H2O + MgCl2

Explanation;The reaction of an acid with a base is called a neutralization reaction. Neutralization reaction involves reaction of a base and an acid to form salt and water as the only products. For example; the reaction of hydrochloric acid, HCl with magnesium hydroxide, Mg(OH)2 producing, sodium chloride which is a salt, and water.

Which statement is true? A. The speed of sound in air is inversely proportional to the temperature of the air. B. The speed of sound in air is directly proportional to the temperature of the air. C. The speed of sound in air is twice the temperature of the air. D. The speed of sound in air is not affected by the temperature of the air.

Answers

Final answer:

The speed of sound in air is directly proportional to the temperature of the air. This is because increasing the temperature reduces the air's compressibility, making it easier for sound to travel through.

Explanation:

The true statement is B. The speed of sound in air is directly proportional to the temperature of the air.

The speed of sound in any medium is determined by a mixture of the medium's density and rigidity, which, in the case of gases like air, is translated as compressibility. In other words, the speed of sound is higher in more rigid (or less compressible) mediums. Air is easily compressible, so the speed of sound is relatively low in it.

However, temperature impacts this as well. As the temperature rises, the particles in the air move more quickly, and so the density of the air decreases - the gas becomes less compressible. With increased temperature, sound finds it easier to travel through the medium, and so the speed of sound increases. Thus, the speed of sound in air is directly proportional to the temperature of the air because an increase in one corresponds to an increase in the other. For example, sound travels at 331 m/s in the air at 0 °C, but the speed increases to 346 m/s once the temperature hits room level (around 20 °C).

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In the diagram the solid green line represents earths rotational axis and the dashed red line represent the magnetic field axis which diagram accurately shows earths magnetic field

Answers

Answer: the answer is B.

Explanation:

Answer:

Option B)

Explanation:

As we know that Earth's magnetic poles are inclined at some angle with the rotational axis of the Earth.

So here the magnetic poles must be inclined at some angle with the rotational axis of Earth

Now we know that magnetic field of earth originates from the south pole of earth and terminate near the north pole of earth

So magnetic poles of earth are opposite to the geographic pole of earth

So magnetic field will originate near the south pole and go near the north pole of earth

so here correct answer must be Option B)

Other Questions
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