What do biologist geologist have in common how are they different

Answers

Answer 1
The prefix for Bio is life so a biologist studies life of living organisms
The prefix for Geo is earth so it would be the study of earth.
What is in common would be animals and plants
what is different is an Geologist studies only earth Biologist studies everything living. I hope this was helpful and I didn't confuse you.


Related Questions

What is the speed of a wave if the wavelength is 100 m and the period is 20 s? 2,000 m/s 120 m/s 80 m/s 5 m/s

Answers

the formula for speed is distance divided by time. if you plug in the numbers, you get 100 divided by 20. the answer is 5m/s

The speed of the wave is 5 m/s.

What is wave speed?

Wavelength and time period both influence wave speed. The distance between two similar spots on adjacent waves is known as the wavelength. Time period is the amount of time needed for a wave to pass a fixed location.

This equation demonstrates how the three variables are connected:

Speed of wave = Wavelength ÷ Time period.

Given parameters:

The wavelength of the wave; λ = 100 m.

Time period of the wave; T = 20 s.

Then, speed of the wave; v = ?

We know that,

The speed of the wave; v = λ/T = (100m/20s) = 5 m/s.

Hence, the speed of the wave is 5 m/s.

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Xander was traveling at a final velocity of 4.5 m/s for 3.5 seconds. Finley was traveling at a final velocity of 3.6 m/s for 4.2 seconds. Max was traveling at a final velocity of 7.3 m/s for 1.2 seconds. They all started at the same location from rest. Which lists them from least to most acceleration?

Answers

Answer: Finley, Xander, Max

Explanation:

The acceleration of each runner is given by:

[tex]a=\frac{v-u}{t}[/tex]

where

v is the final velocity

u is the initial velocity

t is the time taken

- Xander: his acceleration is [tex]a=\frac{4.5 m/s-0}{3.5 s}=1.29 m/s^2[/tex]

- Finley: his acceleration is [tex]a=\frac{3.6 m/s-0}{4.2 s}=0.86 m/s^2[/tex]

- Max: his acceleration is [tex]a=\frac{7.3 m/s-0}{1.2 s}=6.08 m/s^2[/tex]

So, in order from least to most acceleration:

Finley, Xander, Max

Which is a unit rate

A)47c for 2 pens

B)20 gallons or 2 hours

C)15 hours for 3 months

D)18 miles driven in a week

Answers

d. 18 miles driven in a week

Answer: D) 18 miles driven in a week

Explanation:

A unit rate describes how many units of the first type of quantity corresponds to one unit of the second type of quantity.

a. 47 c for 2 pens

thus the price is for 2 pens and not 1.

b. 20 gallons or 2 hours

Thus the amount of gasoline used is for 2 hours and not 1.

c. 15 hours for 3 months

Thus the time given is for 3 months.

d. 18 miles driven in a week

The distance given is for 1 week and thus is the unit rate.

Thus unit rate is 18 miles driven in a week.

A study published in Science notes that water flowing from the Atlantic Ocean into the Arctic is warmer than it's been in 2,000 years. Scientists believe that this increased heat input has far-reaching consequences to life on Earth. U.S. and European scientists studied the Fram Strait branch of the North Atlantic Current, the ocean current that carries heat north from the tropics. By studying tiny-shelled organisms called foraminifera found deep in the ocean floor, they could chart temperatures going back 2,000 years. From their findings, scientists reported that the water has warmed about 2o C since the late 1800's. We would expect warmer Northern Atlantic currents to have all BUT ONE of these consequences on Earth.

Answers

Warmer Northern Atlantic currents would have no effect on the Earth's mass or shape.

Answer:

C

Explanation:

decreased precipitation

Which of the following situations would cause the greatest increase in the motion of molecules in a system?   A. The system absorbs 75 J of heat, and its volume is halved.   B. The system releases 75 J of heat, and its volume doubles.   C. The system absorbs 75 J of heat, and its volume doubles.   D. The system releases 75 J of heat, and its volume is halved.

Answers

The answer is B. When the system absorbs energy, the molecules gain more kinetic energy and hence start to move faster. Doubling the size of the system also gives more room for the molecules to move randomly around the system before colliding with other molecules hence increasing their motion.




Answer:

The correct answer is A. The system absorbs 75 J of heat, and its volume is halved.

Explanation:

For this question, we want the system's molecular motion to experience an INCREASE. So if your question is asking for a DECREASE in molecular motion, this answer does not apply! Instead, it would be "The system releases 75 J of heat, and its volume doubles." Let me explain.

Molecular motion increases with increasing temperature, since collisions increase. For that reason, we want to look for the answer choice that experiences an increase in temperature, with would mean that the system absorbs (NOT RELEASES) 75 J of heat. Additionally, a system's molecular motion increases when its volume decreases. With a smaller volume, molecules are closer together and hit each other more often, increasing molecular motion. And so, for the motion of molecules to INCREASE, the volume would actually have to decrease or be halved! Answer choice A is correct!

If that explanation isn't enough to sway you, know that I took this computer-scored test and received 100%. If you review your study notes from this unit, you'll see that my answer makes sense. I hope that helped! :)

If you were measuring a lower-pitched sound wave, you would measure _____.

A. more compressions per second
B. fewer compressions per second
C. a greater amount of compression of the air
D. a smaller amount of compression of the air

Answers

Answer: B

To measure a lower-pitched sound wave, you would measure fewer compressions per second. Pitch relates to frequency by measuring how many times a second the particles vibrate. Therefore, the lower-pitched sounds, the fewer compression waves or sound waves are produce because low-frequency sounds have greater distance between each wave.

Moreover, the frequency of a wave is measured as the number of complete back-and-forth vibrations of a particle of the medium per unit of time. The universal unit for frequency used is the Hertz (abbreviated Hz), where 1 Hertz = 1 vibration/second.

which of these would be best explained by the Doppler effect? A) the change in frequency as you shorten a guitar string. B) the change in pitch heard as an ambulance approaches you. C) the change in volume as a train pulls away from the station. D) the change in seed of a sound wave as it travels from air into water.

Answers

The  correct answer is B) the change in pitch heard as the ambulance approaches. 
In fact, doppler effect occurs when the source of a wave is moving with respect to the observer. In this case, the source is the ambulance and the wave is a sound wave. The result is that there is a shift of the frequency (and therefore of the pitch) as seen by the observer, with respect to the original frequency of the source.

Light bending as it passes through a rain drop is an example of...

A. Transmission

B. Reflection

C. Refraction

Answers

The answer would be C. Refraction
C. Refraction hope this helps

Metamorphic rocks are made from

I .sedimentary rocks
II.igneous rocks
III.other metamorphic rocks

A. I and III only
B. III only
C. I and II only
D. I, II, and III

Answers

D! It can be made from all.
The answer is D) They can be made from any rock. Metamorphic rocks can be formed from any other type of rock - sedimentary or igneous. Remember these two examples of common metamorhpic rocks and where they come from: slate is formed from shale. marble is formed from limestone.
~Deceptiøn

What is the energy of a photon with a frequency of 2.2 × 1016 Hz? Planck’s constant is 6.63 × 10–34 J•s.
1.5 × 10–17 J
8.8 × 10–17 J
1.5 × 10–16 J
8.8 × 10–16 J

Answers

Energy = frequency (v) * Planck's constant (h)
E =hv
E= 6.62*10^-34 * 2.2*10^16 = 1.45*10^-17
Approximately ~ 1.5*10^-17J

Taking into account the definition of photon and energy of a photon, the correct answer is the first option: The energy of a photon with a frequency of 2.2×10¹⁶ Hz is 1.5×10⁻¹⁷ J.

You have to know that electromagnetic radiation carries energy, which can be absorbed or emitted. To explain the processes of emission and absorption, Plank and Einstein proposed that the energy of radiation is composed of indivisible units (quanta). In each elemental process only a quantum of light can be emitted or absorbed. Each of these quanta was called a "photon".

The exchanges of energy between matter and radiation take place not continuously, but by discrete and indivisible quantities or quanta of energy. The quantum of energy is proportional to the frequency of radiation.

The relationship between the amount of energy (E) transported by the photon and its frequency (f) is determined by the following expression, where the energy of a photon is obtained by multiplying Planck's constant h by the frequency f of electromagnetic radiation:

E=h×f

In this case, you know:

h=  6.63*10⁻³⁴ Jsf= 2.2×10¹⁶ Hz

Replacing:

E= 2.2×10¹⁶ Hz× 6.63×10⁻³⁴ Js

E= 1.4586×10⁻¹⁷ J≅ 1.5×10⁻¹⁷ J

The correct answer is the first option: The energy of a photon with a frequency of 2.2×10¹⁶ Hz is 1.5×10⁻¹⁷ J.

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When studying the attraction between objects, which of the following can be concluded?

Answers

The answer is 2,and 4.

Answer:

2 , 4

Explanation:

Why does the earth rotate

Answers

It also moves with respect to the Earth's crust; this is called polar motion. Precession is a rotation of the Earth's rotation axis, caused primarily by external torques from the gravity of the Sun, Moon and other bodies. The polar motion is primarily due to free core nutation and the Chandler wobble. i got it from google.but put because the earth is caused primarily by external torques from the gravity of the Sun, Moon and other bodies. your welcome.

It also moves with respect to the Earth's crust; this is called polar motion. Precession is a rotation of the Earth's rotation axis, caused primarily by external torques from the gravity of the Sun, Moon and other bodies. The polar motion is primarily due to free core nutation and the Chandler wobble.

What is the potential energy of a 150 kg diver standing on a diving board that is 10 m high?

The potential energy is
J.

Answers

W= F x dPower (formula)P= W/tForce (formula)F= m x anewton (N)the SI unit for force , equal to 1 kg*m/s2joule (J)the SI unit of work, equal to 1 newton-meter

Answer:

The potential energy is  14700J.

Explanation:

Definition of potential energy:

Potential energy is the energy that measures the ability of a object  to perform a job based solely on its position (height at which the object is from the ground), and it is calculated with the following formula:

Ep= m*g*h Formula (1)

Ep: Potential energy in Joules (J)

m : mass (kg)

g: acceleration due to gravity (m/s²)

h: height (m)

Data

m= 150 kg

g = 9.8 m/s²

h=  10 m

Problem development

We replace data in formula (1)

Ep=  150 kg*9.8 m/s²*10 m = 14700 N*m =  14700J

Ep=  14700J

What conclusion can you draw based on the data in the scatterplot?

Answers

The scatter plot diagram shows us the relation of icecreams with that of consumption

As per the scatter, plot graph shows the increase in the amounts of temperature up to 80° F leads to intake of more ice creams and cones per person going up to 0.56. Hence the increase in temperature lead to changes in buying behavior. More is the temperature more is consumption.

Learn more about the conclusion can you draw based on the data in the scatterplot.

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Final answer:

The scatter plot shows a linear pattern, indicating a significant linear relationship between the X and Y variables.

Explanation:

The scatter plot shows a linear pattern in the data, where the points roughly form a straight line. This indicates a linear relationship between the X and Y variables. However, it is important to consider the correlation coefficient as well.

If the correlation coefficient is significantly different from zero, it suggests a strong linear relationship. In this case, there is sufficient evidence to conclude that there is a significant linear relationship between the X and Y variables.

Therefore, the X and Y variables would be good candidates for linear regression to predict outcomes.

Balanced rock has a mass of about 36,000 kg. If the acceleration due to gravity is 9.8m/s^2, what is the force that the rock is exerting in its pedestal

Answers

Newton's second law! Use force = mass (x) acceleration

The answer should be 352,800 N onto the pedestal

Answer:

Force, F = 352,800 N

Explanation:

Given that,

Mass of the rock, m = 36000 kg

Acceleration due to gravity, [tex]a=9.8\ m/s^2[/tex]

We need to find the force that the rock is exerting in its pedestal. It can be calculated using Newton’s second law of motion as :

F = m × a

[tex]F=36000\times 9.8[/tex]

F = 352,800 Newton

So, the force acting on the rock is 352,800 Newton. Hence, this is the required solution.

HELP PLS! AND MAKE SURE YOU ARE CORRECT ON ALL OF THEM DUE TOMORROW

Question 2
Which layer of the atmosphere has the most air pressure?
exosphere
stratosphere
troposphere
mesosphere

Question 3
Which best explains heating by convection?
Air molecules touch the warm ground, heating them up.
Warm air rises and takes heat with it; eventually it cools and sinks.
Sunlight travels through space without the aid of fluids or solids.
Land and ocean absorb and re-emit heat from the sun.

Question 7
Which conditions are usually the effect of a low air pressure system?
clear, dry weather
cloudy, wet weather
cold, dry weather
hot, dry weather

Question 8
What would cause rain showers to continue over a particular area for several days?
a high-pressure system
a stationary front
low humidity
a warm front

Question 9
What effect does an ocean have on the climate?
Rushing water from tides lead to dry air.
There is no influence on climate from an ocean.
Cool ocean air causes a cool climate.
Warm ocean air causes a dry climate.

Answers

Question 2) Troposphere. This is in fact the layer of atmosphere closer to the ground, and therefore it is the layer with most air above it, therefore it has the largest atmospheric pressure. Indeed, atmospheric pressure decreases as going higher in altitude.

Question 3) Warm air rises and takes heat with it; eventually it cools and sinks.This is exactly what occurs in heating by convection, not only with air but with every fluid: the warm fluid goes up and releases its heat, cooling down and becoming cold fluid and then going down again.

Question 7) Cloudy, wet weather.A low-pressure system is an area with lower pressure than the surrounding areas. Because of this, it is generally associated with the formations of clouds, and consequently precipitations (so, wet weather).

Question 8) A stationary front. A stationary front occurs when a pair of air masses point into two opposite directions. This system tends to remain in the same postion for a long time, leading to clouds and precipitations.

Question 9) Cool ocean air causes a cool climate. In fact, if wind blows from the ocean to the land, it brings the cool air from the ocean to the land, causing cool climate.
question 2 is mesosphere

What keeps the balanced rock balanced

Answers

Hello,

Here is your answer: 

The proper answer to this question is "because of there substantial size the rock rests on another rock which keeps it balanced".

If you need anymore help feel free to ask me!

Hope this helps!

Which of the following is likely to contribute to geological events that take place on Earth?

Crust undergoing convective currents
Crust being of uniform thickness throughout
Crust being a single layer that surrounds Earth
Crust sitting on top of molten rock of the mantle

Answers

Crust sitting on top of Milton rock of the mantle

Answer:

Crust sitting on top of molten rock of the mantle

Explanation:

Earth's crust is the geological name for what we usually call the surface of the planet, and it is immediately above the molten rock of the mantle, the next layer of the planet.

The crust happens to be fragmented in large pieces or tectonic plates, that can be seen as "drifting" on the mantle's molten rock, also known as magma.

In some areas tectonic plates are drifting away, allowing magma to reach the surface (volcanoes for example), or the seabed (forming mid-oceans crests).

In other areas tectonic plates are crashing each other, causing earthquakes, tidal waves, mountain formation and other relevant geological events.

A machine shovel moves dirt at the rate of 1,100 pounds of dirt 1 foot in 1 second. How many horsepower is this?

Answers

It depends on what direction it moves the dirt.

If it moves the dirt horizontally, then the answer depends on several more
quantities that we don't know about.

If it moves the dirt vertically, then the machine does

          (1100 lb x 1 ft) =  1,100 ft-lbs of work per second.

1 horsepower = 550 ft-lbs per second.

So the machine does work at the rate of

           (1100 ft-lbs / second) / (550 ft-lbs / second) 

       =           2 horsepower .

The machine shovel that moves 1,100 pounds of dirt 1 foot in 1 second exhibits 2 horsepower, based on the calculation that compares the work done in foot-pounds per second to the standard definition of one horsepower as 550 foot-pounds per second.

To calculate the amount of horsepower exhibited by a shovel machine moving 1,100 pounds of dirt 1 foot in 1 second, we can use the definition of horsepower. By definition, one horsepower is equal to 550 foot-pounds per second. The machine does 1,100 foot-pounds of work per second (since it moves 1,100 pounds over 1 foot in 1 second).

Now, we calculate the horsepower

Power (hp) = Work (foot-pounds per second) / 550

Power (hp) = 1,100 foot-pounds per second / 550

Power (hp) = 2 hp

Thus, the machine shovel operates at 2 horsepower.

Light traveling through air strikes the surface of the four different materials below. which material reflects light but doesn't refract it?
Options:
A-Metal Spoon
B-Water Droplets
C-Diamond
D-Prism

Answers

B....……................
it A) a metal spoon hope this help

i'll make u the brainlyist


Which three forms of light are invisible light?

A.blue light

B.infrared rays

C.radio waves

D.red light

E.x-rays

Answers

Three forms of light that are invisible light are : radio waves, infrared rays, and x-rays. Red light and blue light are color spectrums called visible light not invisible light.

Your answer is: B) Infrared rays, C) radio waves, E) x-rays 

Have an amazing day mate!

A ball is dropped and falls with an acceleration of 9.8 m/s2 downward. It hits the ground with a velocity of 49 m/s downward. How long did it take the ball to fall to the ground?

Answers

First write down what we know.

V=49m/s
Vo=initial velocity=0m/s
A=-9.8m/s²
t=?

Then find an equation that suits the data, in this case its v=vo+a*t

V=Vo+at
plug in the data
49=0+-9.8t
49=-9.8t
divide both sides by -9.8
-5=t

Answer=5 seconds

It would take the ball 5 seconds to fall to the ground.

Given the following data:

Acceleration = 9.8 [tex]m/s^2[/tex]Final velocity = 49 m/s.Initial velocity = 0 m/s (since the ball is starting from rest).

To find how long (time) it took the ball to fall to the ground, we would use the first equation of motion;

Mathematically, the first equation of motion is calculated by using the formula;

[tex]V = U + at[/tex]

Where:

A is the acceleration. V is the final velocity. U is the initial velocity. t is the time measured in seconds.

Substituting the given parameters into the formula, we have;

[tex]49 = 0 + 9.8t\\\\49 = 9.8t\\\\t = \frac{49}{9.8}[/tex]

Time, t = 5 seconds.

Therefore, it would take the ball 5 seconds to fall to the ground.

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How does a compound eye work?

Answers

The Compound Eye. The arthropod (e.g., insects, crustaceans) eye is built quite differently from the vertebrate eye (and the mollusk eye). Arthropod eyes are called compound eyes because they are made up of repeating units, the ommatidia, each of which functions as a separate visual receptor.

A compound eye, primarily found in arthropods, consists of numerous small units called ommatidia. These units, which include lenses and visual cells, create a mosaic image allowing insects to detect motion efficiently due to the flicker effect.

The compound eye is an optical structure found in certain animals, notably arthropods such as insects and crustaceans. Unlike the human eye, which has a single lens, the compound eye is made up of numerous small visual units called ommatidia. Each ommatidium is a self-contained photoreception unit that consists of a lens, cone, visual cells, and pigment cells. These units capture parts of the visual field and send nerve impulses to form a mosaic image, similar to a pattern of light and dark dots.

Flicker effect is a distinctive feature of compound eyes which makes them highly sensitive to motion. As an object moves across an insect's visual field, some ommatidia are exposed to light while others are not, creating a flicker that the insect can detect. This property allows insects to respond quickly to moving objects, which is crucial for their survival. Animals with compound eyes, like honeybees, are particularly adept at recognizing motion, preferring to visit wind-blown flowers over stationary ones.

The visual acuity in compound eyes is determined by the number of ommatidia and the fineness of the mosaic they create.

Which landform represents the boundary between the land and an ocean or a lake?

Answers

Coastline or seashore

Answer:

coastline

Explanation:

its the coastline

Which is an example of the force of attraction between two objects that have mass?

A:Gravity
B:Solar energy
D:Electricity

Answers

they deleted my answer. again the answer is gravity

Which of the following is not a type of plate boundary?

A. Transform
B. Tectonic
C. Convergent
D. Divergent

Answers

Final answer:

The answer is B. Tectonic. This is not a recognized type of plate boundary. The plate boundaries recognized by geologists are transform, convergent, and divergent.

Explanation:

The type of plate boundary that is not recognized among the classic types established by geologists is B. Tectonic. In plate tectonics, a discipline within earth sciences, plate boundaries are classified into three main types: A. Transform, C. Convergent, and D. Divergent. Each type describes a different way in which tectonic plates, the large pieces of Earth's lithosphere, interact with each other. Transform boundaries occur when plates slide past each other horizontally. Convergent boundaries form when plates come together or converge. Divergent boundaries are created when plates move apart from each other or diverge. 'Tectonic' is not a type of plate boundary, but rather an adjective used to describe phenomena related to Earth's tectonic plates.

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If we mechanically squeeze a gas into a smaller volume, what happens to the pressure and temperature?

A. The pressure and temperature both increase, but we can't predict how much each one will change.
B. The pressure increases and the temperature decreases.
C. Only the pressure increases.

Answers

Its A- the pressure and tempt both increase...

If we mechanically squeeze a gas into a smaller volume the pressure and temperature will increase but we can't predict how much each one will change.

Answer: Option A

Explanation:

When we squeeze a gas or a material, a force acts upon it making it to compress which increases the pressure subsequently as tension and compression is always accompanied by pressure.

The temperature of gas also increases as work is done due to transfer of energy which alters the existing temperature.

The pictures shows what a student observed when he looked through a hand lens at a penny.
What happens to light passing through a hand lens that makes the image of the penny appear larger?

The light is-

A. Refracted

B. Stopped

C . Absorbed

D . Reflected

Answers

the answer is A. Refracted

Light is refracted when it passes through a hand lens that makes the image of the penny appear larger.

What is Refraction?

This is defined as the process in which waves change direction when they move from one medium to another.

The hand lens changes the speed of the waves which therefore brings about this occurrence.

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Which model represents a fraction greater than 3/5

Answers

To represent a fraction greater than 3/5, choose a numerator larger than 3 and match it with a denominator. Fractions like 4/6, 5/7, or 10/12 are examples of fractions greater than 3/5.

Fractions greater than 3/5 are represented by fractions where the numerator is larger than the denominator. For example, 4/6 is greater than 3/5 because the numerator 4 is greater than the denominator 6.

To find a fraction larger than 3/5, you can choose any numerator larger than 3 and pair it with a denominator to form a fraction greater than 3/5, such as 4/6, 5/7, or 10/12.

If a bar of copper is brought near a magnet, the copper bar will be
Pennfoster:
A. attracted by the magnet.
B. unaffected by the magnet.
C. repelled by the magnet.
D. made into an induced magnet.

Answers

If a bar of copper is brought near a magnet, the copper bar will be unaffected by the magnet.
A. attracted by the magnet
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