What is the DNA in the G1 stage called?

Answers

Answer 1

Final answer:

The DNA in the G1 phase is unreplicated chromosomal DNA, as this phase involves the cell growing and accumulating the necessary components and energy for upcoming DNA replication in the S phase.

Explanation:

Understanding the G1 Phase of Interphase

The G1 phase is the initial stage of the cell cycle and falls under interphase. It is often referred to as the "first gap" mainly because there are no significant changes visible under a microscope during this period. Despite this, the cell is not dormant; it is engaged in vital preparatory activities. During the G1 stage, the cell grows and increases in size, meticulously assembling the basic biochemical compounds needed for DNA replication.

This includes the building blocks of chromosomal DNA and the associated proteins. In addition to this, the cell is also building up sufficient energy reserves necessary to go through the upcoming phase of DNA synthesis or the S phase, where each chromosome is replicated.


Related Questions

how do we measure or think of speed in the united states?

Answers

I'm not sure what you mean by "think of speed", but the way we measure it is by plugging the numbers into this formula: distance divided by time. If you are trying to find an average speed, then your formula would be: total distance divided by total time. I hope this helped!:)

The planet Jupiter’s mean orbital radius is 5.2025 AU’s. what is the period of Jupiter in earth years?

Answers

11.86 years, or around that time it would take about 12 years.

The period of Jupiter's orbit around the sun is  11.862 Earth years.

What is Kepler's law of planetary motion?

Kepler's laws of planetary motion are a set of three laws that describe the motion of planets around the sun. They were formulated by the German mathematician and astronomer Johannes Kepler in the early 17th century, based on observations made by the astronomer Tycho Brahe.

Kepler's first law, also known as the law of orbits, states that the planets move in elliptical orbits around the sun, with the sun located at one of the foci of the ellipse.

Kepler's second law, also known as the law of areas, states that the line connecting a planet to the sun sweeps out equal areas in equal times. This means that a planet moves faster when it is closer to the sun and slower when it is farther away.

Kepler's third law, also known as the law of harmonies, relates the period and distance of a planet's orbit to its mass and the mass of the sun. Specifically, it states that the square of a planet's orbital period is proportional to the cube of its average distance from the sun.

These laws helped to revolutionize the field of astronomy and laid the foundation for the later development of Isaac Newton's laws of motion and gravitation.

Here in the question,

We can use Kepler's third law of planetary motion to calculate the period of Jupiter's orbit around the sun, which relates the period of an orbit to the average distance of the planet from the sun.

Kepler's third law states that:

(T^2) / (R^3) = (4π^2) / G,

where T is the period of the orbit, R is the average distance between the planet and the sun, G is the gravitational constant, and π is pi.

To solve for T in Earth years, we need to convert Jupiter's average distance from AU to kilometers (km) and then to meters (m), and we need to convert Earth years to seconds.

1 AU = 149,597,870.7 km

1 year = 365.25 days = 31,557,600 seconds (approx.)

So, Jupiter's average distance from the sun is:

R = 5.2025 x 149,597,870.7 km = 778,547,200 km = 7.785 x 10^11 m

Substituting the values into Kepler's third law, we get:

(T^2) / (7.785 x 10^11 m)^3 = (4π^2) / 6.6743 x 10^-11 m^3/(kg s^2)

Solving for T, we get:

T = ∛[(7.785 x 10^11 m)^3 / ((4π^2) / 6.6743 x 10^-11 m^3/(kg s^2))] = 11.862 Earth years

Therefore, the period of Jupiter's orbit around the sun is approximately 11.862 Earth years.

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Why will interference occur

Answers

Two waves interfere when they run into each other.

The barrier reflects waves that run straight into it. It acts as a wave source and sends wave pulses back up the page towards the incoming waves.

Imagine a loose string tied to a wall. Someone sends two consecutive pulses along the string towards the wall. The first pulse gets reflected right away. It will travel backward towards the person holding the string. Along its way, it will run into the second pulse. The two pulses will interfere. The wall will make the reflected pulse out of phase with the second one. They will end up creating a destructive interference.

So is the case with the water waves running into the barrier. The barrier will send incoming waves back toward where they came from. Reflected waves interfere with incoming ones.

Which gas in Earth’s atmosphere forms ozone?

oxygen
nitrogen
water vapor
carbon dioxide

Which characteristics describe the troposphere? Check all that apply.

is the innermost layer
contains the ozone layer
has the highest air pressure
spans 12–50 km above Earth
is a good place for planes to fly



Which gas in Earth’s atmosphere has increased over time due to burning fossil fuels?

oxygen
nitrogen
water vapor
carbon dioxide


Which phrases describe air density? Check all that apply.

increases as altitude increases
equals mass divided by volume
pushes molecules in one direction
exerts more pressure as it increases
measures how tightly molecules are packed

Answers

1- oxygen
2- it is good for flying planes
3-carbon dioxide

Answer:

1) Oxygen 2) So The Troposphere is a good place for planes to fly. 3)  [tex]CO_{2}[/tex] 4) It measures how tightly molecules are packed, It pushes molecules in one direction

Explanation:

1) Which gas in Earth’s atmosphere forms ozone?

Oxygen since Ozone is formed when [tex]O_{2} [/tex] receives Ultraviolet in its energetic form[tex] O_{3}[/tex], in a process called photolise.

2) Which characteristics describe the troposphere? Check all that apply.

This layer is the closest to the Earth although it is thicker in the Equator. Most planes fly in there.

So The Troposphere is a good place for planes to fly.

3) Which gas in Earth’s atmosphere has increased over time due to burning fossil fuels?

The outcome burning of fossil fuels is among other gases is the [tex]CO_{2}[/tex]

4) Which phrases describe air density?

Although these are not precise descriptions:

It measures how tightly molecules are packed The more density the more molecules are packed in given volume.

It pushes molecules in one direction, In a column of air the more the altitude the more molecules are pushed into the lower altitude region.

which of the following is an inclined plane wrapped around a rod?
A. A Screw
B. A Lever
C. A Wheel and Axle
D. A Pulley

Answers

Alright well the Answer to your question is A). Screw

Hope this helps have a nice day : )

If u want i can explain why

Answer:

answer is screw my good fellow

Explanation:

What is the SI unit for momentum

Answers

The impulse of the material point is equal to the product of mass and its velocity.

      The unit of measurement of the imouls is:

                                         [P] = [m] * [v] = kg * m / s.

Answer:

kg·m/s

Explanation:

The momentum of a body is calculated according to the following formula.

momentum = mass * velocity

Since the SI unit unit for mass is kilogram and the SI unit for velocity is metres/second then the multiplication of both will, algebraically give kg·m/s

Devon places sliced potatoes in a package of aluminum foil. He puts a metal grate over a campfire and sets the package on the grate. He warms his hands over the fire while he waits and watches the hot air carry ashes into the sky. When he removes the foil package, the grate and foil are hot, and the food is cooked.

Which part of this scenario represents conduction?



The food cooks inside the foil.
Devon warms his hands over the fire.
The hot air rises into the sky.
The grate is hot when Devon is done cooking.

Answers

Answer:  The correct answer is "The food cooks inside the foil".

Explanation:

In conduction , there is no actual movement of matter. Heat flows from the hotter body to the colder body but when the two bodies are placed in contact with each other.

In convection, there is a physical movement of matter.

Radiation is the emission of the energy. Heat travels through a vacuum in the radiation.

In the given problem, Devon places sliced potatoes in a package of aluminum foil. He puts a metal grate over a campfire and sets the package on the grate.  

When he removes the foil package, the grate and foil are hot, and the food is cooked. Here, the heat is transferred from the campfire to the metal grate to the aluminium fire and then to the food. The metal grate and the aluminium foil are in contact with each other. Here, the conduction takes place.

Therefore, the scenario, "The food cooks inside the foil" represents the conduction from the given option.

Answer:

the food makes contact with the foil wich represents conduction so the answer is  A, hope this helps ( ;w;)

Explanation:

imagine you are in a sports team, there is one player on you team who is the star athlete. you notice that he/she does not include players who are good as they are; he/she puts down their teammates. how would you encourage this player to be more inclusive and supportive of all the player on the team? create a dialogue with this person.

Answers

Final answer:

In order to encourage the star athlete to be more inclusive and supportive, start by acknowledging their talent and having a gentle conversation about their behavior. Emphasize the importance of teamwork and suggest activities to foster inclusivity.

Explanation:

To encourage the star athlete on your sports team to be more inclusive and supportive of all the players, you could have a dialogue with them. Start by acknowledging their talent and achievements and express your admiration for their skills. Then, gently bring up the issue of their behavior towards other players and explain how it affects team dynamics.

Next, emphasize the importance of teamwork and how their support can uplift and motivate other players. Share examples of successful teams that have thrived because of a positive and inclusive team culture. Encourage them to recognize and appreciate the strengths of their teammates.

Suggest activities or team-building exercises that can help foster inclusivity and encourage interactions among all team members. Additionally, remind them of the power of their influence as a star athlete and how they can set an example for others by embracing a supportive and inclusive attitude.

Which waves can travel through a vacuum? A) light waves Eliminate B) ocean waves C) sound waves D) mechanical waves

Answers

A.) Light waves can travel through a vacuum.

The answer is A, light waves eliminate

Students can take the aspire test in ninth and grade


A. First

B. Tenth

C. Eleventh

D. Twelfth

Answers

Answer:

The correct answer is option B, tenth

Explanation:

ASPIRE test is basically given by students of ninth and tenth grade as pre-test to the ACT test. ACT ASPIRE test can be given from third grade till tenth grade. The scoring obtained in this test helps the student, teachers and parents to monitor the preparation of their kids towards completing a successful ACT test.  

Apart from ninth and tenth grade , students belonging to lower grades (i.e from 3rd grade to 8th grade) can opt for online test.  However, higher grades can opt for both online and paper based test.

Students can take the Aspire test in the ninth and grade Tenth. The correct option is B.

What is the Aspire test?

The Aspire test is an assessment designed to measure students' readiness for college and careers. It evaluates their skills in English, math, reading, and science. The test is administered by the ACT organization and is typically taken by students in grades 3-10.

While students in ninth grade may be eligible to take the Aspire test, it is not the earliest grade at which it can be taken, and thus option A. First is not correct. The Aspire test is not typically administered to students in the first grade.

Option C. Eleventh and option D. Twelfth are not correct because by these grades, students may have already taken the ACT or SAT, which are the college entrance exams typically taken during the junior and senior years of high school.

Therefore, the correct option is B. Tenth, as this is the grade level at which most students take the Aspire test.

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A 3.00 kg box is lifted by an upward force 1.50 m above the surface pf Earth to the top of a table. What is the potential energy stored in the box at this new position?

Answers

the potential energy is 45J(joules)

A horizontal spring oscillator consists of a mass attached to a spring of constant 712 N/m. There is no friction.

What mass (kg) should be attached for the oscillator to oscillate with a period of 0.47 seconds?

Answers

Answer:

3.99 kg

Explanation:

The period of a harmonic oscillator is given by:

[tex]T=2 \pi \sqrt{\frac{m}{k}}[/tex]

where

m is the mass attached to the spring

k is the spring constant

In this problem, we know:

k = 712 N/m

T = 0.47 s

Therefore, we can re-arrange the equation to find the mass that should be attached to the oscillator:

[tex]m=\frac{k T^2}{(2 \pi)^2}=\frac{(712 N/m)(0.47 s)^2}{(2 \pi)^2}=3.99 kg[/tex]

A mass of 3.97 kg should be attached.

The student asks what mass should be attached to a spring for a horizontal spring oscillator to oscillate with a period of 0.47 seconds, given the spring constant is 712 N/m and there is no friction. To find the mass, we use the formula for the period T of a simple harmonic oscillator: T = 2π√(m/k), where m is the mass in kilograms and k is the spring constant in newtons per meter. Rearranging the formula to solve for m gives us m = (T/(2π))2 × k.

Plugging in the given values:

Calculate (0.47 / (2π))2 = 0.005577... (rounded to nine decimal places).

Multiply this by the spring constant 712 N/m gives us 0.005577 × 712 = 3.970544 kg.

Therefore, the mass that should be attached to the spring is approximately 3.97 kg.

BRAINLIEST AND MAY DOUBLE POINTS!!!

how much power would a light bulb have if it used 30 joules of energy every 3 seconds

Answers

Given that:

 Energy of bulb  (Work ) = 30 J,

 Time (t) = 3 sec

The power consumption =  ?

 We know that, Power can be defined as rate of doing work

              Power (P) = Work(Energy supplied) ÷ time

                               = 30 ÷ 3

                              = 10 Watts

The power consumption is 10 W.


A skydiver jumps from a helicopter hovering at high altitude.if there were no air resistance, how fast would she be falling 12s after jumping?

Answers

Well, if there were no air resistance, then a helicopter couldn't fly.  But let's do the physics and the Math anyway:

The way gravity works, the speed of a falling object increases at the rate of 9.8 m/s every second.

So, after falling for 12 seconds, its speed is (12 x 9.8) = 117.6 m/s .

After 12 seconds of her jump from th helicopter, her velocity would be 117.6 m/s.

What are the second and third equations of motion?

The second and third equations of motion are -

S = ut + 1/2 at²

v² - u² = 2aS

Given is a skydiver who jumps from a helicopter hovering at high altitude.

We can write -

[a] = 9.8 m/s²

[t] = 12 s

[u] = 0 m/s

Using the second equation of motion, we get -

S = ut + 1/2 at²

S = 1/2 at²

putting values -

S = 1/2 x 9.8 x 12 x 12

S = 705.6 m

Using the third equation of motion, we get -

v² - u² = 2aS

v² = 2aS

putting values -

v² = 2 x 9.8 x 705.6

v² = 13829.7

v = 117.6 m/s

Therefore, after the 12 seconds of her jump from the helicopter, her velocity would be 117.6 m/s.

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A 0.5-kg ball moving at 5 m/s strikes a wall and rebounds in the opposite direction with a speed of 2 m/s. If the impulse occurs for a time duration of 0.01 s, then the average force (magnitude only) acting upon the ball is ____ Newtons.

Answers

Given that:

                       mass of the ball (m) = 0.5 Kg ,

                    ball strikes the wall (v₁) = 5 m/s ,

rebounds in opposite direction (v₂) = 2 m/s,

                                time duration (t) = 0.01 s,

        Determine the force (F) = ?

We know that from Newton's II law,

                                F = m. a  Newtons  

                                  (velocity acting in opposite direction, so a = ( (v₁ + v₂)/t

                                   = m × (v₁ + v₂)/t

                                   = 0.5 × (5 + 2)/0.01

                                  = 350 N

The force acting up on the ball is 350 N

                                     

A primary succession does not include any invasive species

True or false

Answers

To be referenced, it would be true

A primary succession does not include any invasive species. This is true statement.

What is primary succession?

When a new piece of land is produced or is first exposed, primary succession occurs. This may occur, for instance, when lava solidifies and forms new rocks or when a glacier recedes and reveals bare rocks. In the initial succession, organisms have to start over. First, lichens may cling to rocks, followed by a few small plants capable of surviving without much soil. The term "pioneer species" refers to these.

More and larger plants start to colonize the region as a result of the decomposition of those plants, which gradually helps to create soil. Once sufficient soil has accumulated and sufficient nutrients are accessible, a climax community, such as a forest, is created. In the event that the site is disturbed after this, secondary succession takes place.

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CAN SOMEONE PLEASE HELP ME WITH MY PHYSICS QUESTIONS? I NEED CORRECT ANSWERS ONLY!

Free fall is a situation in which the only force acting upon an object is gravity. Why do all objects in free fall have the same acceleration?

A) their masses are always the same

B) acceleration due to gravity is always the same

C) the distance between two objects is always the same

D) the gravitational force between two objects are always the same

Answers

Right answer: acceleration due to gravity is always the same

According to the experiments done and currently verified, in vacuum (this means there is not air or any fluid), all objects in free fall experience the same acceleration, which is the acceleration of gravity.  

Now, in this case we are on Earth, so the gravity value is [tex]9.8\frac{m}{s^{2}}[/tex]  

Note the objects experience the acceleration of gravity regardless of their mass.

Nevertheless, on Earth we have air, hence air resistance, so the afirmation "Free fall is a situation in which the only force acting upon an object is gravity" is not completely  true on Earth, unless the following condition is fulfiled:

If the air resistance is too small that we can approximate it to zero in the calculations, then in free fall the objects will accelerate downwards at [tex]9.8\frac{m}{s^{2}}[/tex] and hit the ground at approximately the same time.  


In which situation is maximum work considered to be done by a force

Answers

Answer:

Work done is maximum when the movement of object is in line and direction of force.  

OR

Work done is maximum, when displacement takes place along the direction of force. Work done is given by the equation

                                W = F.S

                                W  = F. S cos Θ

When cos Θ = 0° ; cos 0 = 1

Answer:

The angle between the force and displacement is 0°.

Explanation:

Which of he following injuries include instability of the knee with pain and swelling?

Answers

Hi there,

the following injuries that include instability of the knee with pain and swelling is ACL Tear.

The ACL tear is common especially in sports like football one wrong move and you fall and tear your ACL

Hope this helped :)

Have a great day

While studying balanced and unbalanced forces, Jose and Gina test what they have learned by Jose applying 10 Newtons of forces to one side of a box and Gina applying 8 Newtons of force to the other side of the box.
A. The box does not move.
B. The box moves toward Gina.
C. The box moves toward Jose.
D. The force crumples the box.

Answers

The answer will be letter B.

Answer:

b

Explanation:

the box moves toward gina

A 20kg boy on a 5 kg skateboard coasts to a rest from a speed of 4.5m/s while traveling a distance of 20m on the sidewalk. Draw a free body diagram for this situation and calculate the acceleration of the skateboard, the force of friction on the skate board and the coefficient of friction between the skateboard and the sidewalk.

Answers

Answer:

a = -.51 m/s²

coefficient of friction = .05

fk= 12.25 N

Explanation:

mass = 20 + 5kg

weight = 25kg ·9.8 = 245 N

There are many ways to do this I am sure but I did this:

1.  found a by using vf²=vi²-2aΔx. accel is - because it is slowing down.

started at 4.5 m/s, final = 0 and Δx=20....a=-.51 m/s²

2.  the force acting on the object is the friction force which has to equal the mass(accel).

-fk (going to left on free body diagram) = ma

-mu·n = ma

-mu·245N = 25 (-.51)

mu=.05

fk= .05(245N) = 12.25 N

The kinematics and Newton's second law allow to find the results for the questions of the movement of the child and the skateboard are:

  a) the deceleration is a = 0.51 m / s²

  b) The friction force is: fr = 12.75 N

  c) The friction coefficient is equal to: μ = 0.052

Given parameters

The child's mass M = 20 kg. The mass of the skateboard m = 5 kg. Initial velocity vo = 4.5 m / s. The distance traveled x = 20 m.

To find

    a) Acceleration.

    b) The friction force.

    c) The coefficient of friction.

a) Kinematics studies the movement of bodies, finding relationships between their position, speed and acceleration.

Since the child ends up at rest, his final velocity is zero (v = 0), let's use the relation.

       v² = v₀² - 2 a x

       0 = v₀² - 2ax

       a = [tex]\frac{v_o^2}{2x}[/tex]  

       a = [tex]\frac{4.5^2 }{2 \ 20}[/tex]

       a = 0.51 m / s²

b) Newton's second law states that the net force is proportional to the product of the mass and the acceleration of the body.

A free-body diagram in a diagram of the forces without the details of the body, in the attached we can see the free-body diagram of the system.

Let's write Newton's second law, since the boy and the scooter do not separate, we use the total mass.

 

y-axis

     N-W = 0

     N = W

     N = (M + m) g

     N = (20 +5) 9.8

     N = 245 N

x-axis

     fr = [tex]m_{total} \ a[/tex]  

     Fr = (20+ 5) 0.51

     fr = 12.75 N

c) Friction force is a macroscopic force of the interactions between the two surfaces and has the formula.

       fr = μ N

       μ = [tex]\frac{fr}{N}[/tex]

       μ = 12.75 / 245

       μ = 0.052

In conclusion, using kinematics and Newton's second law we can find the results for the questions of the movement of the boy and the skateboard are:

  a) The deceleration is a = 0.51 m / s²

  b) The friction force is: fr = 12.75 N

  c) The friction coefficient is equal to: μ = 0.052

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Which of the following best expresses power? A. Power is work.
B. Power is the rate at which work is done.
C. Power is determined by mass.
D. Power is determined by work and mass.

Answers

B because power is the rate of doing work.

Answer: option B: Power is the rate at which work is done.

Explanation:

Power can be defined as the amount of work done or amount of energy transferred in a unit time.

[tex]P = \frac{W}{t}[/tex]

Its unit is J/s.

SI unit of power is kg⋅m²⋅s⁻³

Hence, the best expression of power out of the given options is rate at which work is done. Option B is correct.

An object with a mass of 70 kilograms is supported at a height of 8 meters above the ground, what's the potential energy of the object with respect to the ground?

Answers

Answer:

5488 Joules

Explanation:

Use the formula for the potential energy:

[tex]E_p = mgh = 70kg\cdot 9.8\frac{m}{s^2}\cdot 8m = 5488 J[/tex]

how far will a rubber ball fall on 20 seconds?

Answers

Given that:

time (t) = 20 s ,

        S = ?

We know that S = ut + 1/2 at²     meters

                       since free fall, a = g = 9.81 m/s² ; u =0 ;

                        S = 0 + 1/2 × 9.81 × 20²

                        S= 1962 m

Which of the following shows a car holding a steady speed

Answers

The answer is the velocity that is in a straight horizontal line.

The second one as the velocity doesn't change over time.

Please help, I really don't know
Estimate the length of the day if the centripetal acceleration at the equator due to the spinning Earth was equal to the acceleration of free fall (g=9.8 ms⁻²)
Thanks

Answers

Final answer:

By setting the formula for centripetal acceleration equal to the acceleration due to gravity and using the known radius of the Earth, we find the speed at the equator. Using this speed to divide the Earth's equator's circumference, we estimate the length of a day to be approximately 1.41 hours or 84 minutes.

Explanation:

To estimate the length of the day if the centripetal acceleration at the equator due to the spinning Earth was equal to the acceleration of free fall (g=9.8 ms⁻²), we need to utilize known physical constants and the formula for centripetal acceleration.

The formula for centripetal acceleration is a_c = v²/r, where v is the speed, and r is the radius of the circular path. We set this equal to g (9.8 m/s²), so v²/r = 9.8 m/s2. Given the known radius of Earth R = 6.376 x 10^6 m, we can solve for the speed at the equator v.

From the speed, we can calculate the time it would take for the Earth to complete a single rotation. Since the distance the Earth covers in a day is a circular path around the Earth’s equator, this distance is equal to the Earth's circumference, which is 2πR. Dividing this by the speed gives the length of a day, which we can calculate to be 1.41 hours or approximately 84 minutes.

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Which of following scientists helped lay the groundwork for the development of the concept of gravity by claiming the the sun, not earth, was at the center of the universe

Answers

Nicolaus Copernicus

Nicolaus Copernicus  is the scientist who put forward a model which placed sun instead earth as the center of the universe



A pendulum makes 36 vibrations in 60 seconds, what is its: Period? And Frequency

Answers

Answer:

 Period = 1.67 seconds

 Frequency = 0.6 Hz

Explanation:

  Number of vibrations in 60 seconds = 36

  Frequency is defined as vibrations per second.

  So, Frequency = 36/60 = 0.6 Hz

  Time period is defines as time taken for 1 vibration,

 So, Time period = 60/36 = 1.67 seconds.

The period of vibration of a simple pendulum is 1.67 s.

The frequency of vibration of a simple pendulum is 0.6 Hz.

What is frequency of vibration?

The frequency of vibration of a simple pendulum is the number of complete oscillation of the pendulum per second.

F = n/t

where;

n is number of vibrationst is time of vibration

F = 36/60

F = 0.6 Hz

What is period of vibration?

The period of vibration is the inverse of frequency of vibration.

T = 1/f

T = 1/0.6

T = 1.67 s

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How do climate factors affect temperature patterns where you live?

Answers

The climate of any particular place is influenced by a host of interacting factors. These include latitude, elevation, nearby water, ocean currents, topography, vegetation, and prevailing winds. The global climate system and any changes that occur within it also influence local climate.
patterns of air circulation in the atmosphere (polar & temperate climates)
Climate processes also influenced by plate tectonics (ex. formation of rain shadows)

From a window that is 20 m from the ground a stone with a speed of 10m / s is thrown vertically upwards. Calculate:
a) the maximum height reached and the time it takes to reach it
b) the total time that is in the air

Answers

a)

consider the motion in upward direction as positive and down direction as negative

Y₀ = initial position of the stone = 20 m

v₀ = initial velocity of the stone = 10 m/s

a = acceleration = - 9.8 m/s²

Y = final position of the stone when it reach the maximum height

v = final velocity at the maximum height = 0 m/s

t = time taken to reach the maximum height

Using the equation

v² = v₀² + 2 a (Y - Y₀)

0² = 10² + 2 (- 9.8) (Y - 20)

Y = 25.1 m


also using the equation

v = v₀ + a t

inserting the values

0 = 10 + (- 9.8) t

t = 1.02 sec


b)

consider the motion in upward direction as positive and down direction as negative

Y₀ = initial position of the stone = 20 m

v₀ = initial velocity of the stone = 10 m/s

a = acceleration = - 9.8 m/s²

Y = final position of the stone when it reach the ground = 0 m

t = time taken to reach the ground

Using the equation

Y = Y₀ + v₀ t + (0.5) a t²

0 = 20 + 10 t + (0.5) (- 9.8) t²

t = 3.3 sec

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