earth moves about 67,000 mph relative to the sun. when you jump upward in front of a wall, the wall doesnt slam into you at 67,000 mph because the wall

Answers

Answer 1

When you jump upward in front of a wall, the wall does not slam into you at 67,000 mph because the wall and you are moving at the same speed, before, during, and after your jump.

Taking the Sun as a reference, the speed of the earth is  67,000 mph. This means that everything on the earth is also moving at a speed of  67,000 mph relative to the Sun.

So, the reason you don't slam into the wall is that you and the wall are both moving at the same speed of 67000 mph relative to the Sun.

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Related Questions

a boy wishes to cross a river in the shortest possible time, without necessarily landing directly across from his starting point. he can row at 2 m/s in still water and the river is flowing at 1 m/s. at what angle θ should he point the bow (front) of his boat?

Answers

He should bow his boat at 90° to cross the river.

While the water will push him in side ways, it will not affect the time it takes to actually cross the river.

Hence, the correct answer is  90°.

Factors that have an effect on the velocity of a river consist of the slope gradient, the roughness of the channel, and tides. Rivers generally tend to drift from a higher elevation to a lower elevation. The gradient is the drop of the elevation of a river.

Reverberation is the time taken for the sound to fall beneath the minimal audibility measured from the immediate whilst the supply stopped sounding. Therefore if the reverberation time will become too massive it produces an echo.

Due to velocity of water drift in river, a person either swimming or floating stationary within the river reports a pushing force alongside the flow direction.

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a balloon is filled with helium gas how would the balloon volume change if it floated to a higher altitude (p decreases, assume n and t are constant)?

Answers

As we know, Pv= nRT where,

P : pressure

V : volume

n : number of moles

R : constant

T : temperature

According to question PV is constant therefore if balloon floats to a higher altitude where the outside pressure is lower than Volume will increase as a result of Boyle's Law. Therefore Figure C represents the final volume.

What is altitude?

A measurement of altitude or height is the distance between a location or item and a reference datum, often in the vertical or "up" direction. Depending on the circumstance, many definitions and reference points are appropriate.

Therefore,

a balloon is filled with helium gas how would the balloon volume change if it floated to a higher altitude (p decreases, assume n and t are constant)?

As we know, Pv= nRT where,

P : pressure

V : volume

n : number of moles

R : constant

T : temperature

According to question PV is constant therefore if balloon floats to a higher altitude where the outside pressure is lower than Volume will increase as a result of Boyle's Law. Therefore Figure C represents the final volume.

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Explain the difference between the Bohr model and the electron cloud model.

Answers

The main difference between the Bohr model and the electron cloud model is explained as, in Bohr's model, orbital paths around the nucleus are treated as discrete electron energy levels but the electron cloud model is a group of electrons circulating around a nucleus or a molecule. Usually refers to the valence electrons.

 Some physical quantities can only have discrete values according to quantum theory, Niels Bohr proposed a hypothesis for the hydrogen atom in 1913 i.e. Only in their predefined orbits do electrons move around a nucleus, if they deviate, the energy difference is released as radiation.Erwin Schrodinger, an Austrian physicist, created the electron cloud model in 1926. It was made up of an electron cloud with many different orbital levels surrounding a dense nucleus i.e. negative electrons circle the positive nucleus at fixed distances from the nucleus.According to Erwin Schrodinger, electrons move in waves, making it impossible to accurately determine where they are at any given time. To determine the probability of an electron existing in a specific place, he created an equation.

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What is Momentum ?
Ty :))​

Answers

Answer:

Momentum can be well defined as the measure of the kinetic energy of the object. In simple words, the momentum is the product of mass and velocity.

Two pulses are moving along a string. One pulse is moving to the right and the second is moving to the left. Both pulses reach point P at the same instant.

Answers

Since Two pulses are moving along a string, Mu response is Yes, there be an instance in which the wave interference is at the same level as point X because there will be an overlap  in the way of the slope of the waves.

What happens when 2 pulses meet?

When two pulses collide to produce a bigger pulse, this is called constructive interference. The two beginning pulses' amplitudes are added to create the size of the final pulse.

Note also that if two waves collide while moving across the same medium, wave interference is the result. The medium assumes a shape as a result of the net impact of the two distinct waves on the medium's particles due to wave interference.

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See full question below

Two pulses are moving along a string. One pulse is moving to the right and the second is moving to the left. Both pulses reach point X at the same instant.Will there be an instance in which the wave interference is at the same level as point X?

A battery-powered lawn mower has a mass of 49.0 kg. If the net external force
on the lawnmower, including both your push and any resistance, is 28.0 N (about
6.3 pounds), then what will be the magnitude of the mower’s acceleration?

Answers

Using Newton’s 2nd Law,
F=ma
28=49a
a=28/49
a=0.5714 m/s^2

A family drove 2,275 miles from los angeles to atlanta in a time span of 35 hours. calculate their average speed in miles per hour. what is the avarge speed

Answers

The average speed in miles per hour is 65 mph.

Total distance d = 2275 miles

Total time t = 45 hours

To calculate average velocity

v = d/t

where v is velocity, d is distance and t is time.

v = 2275/45

v = 65 mph.

Thus, the average speed in miles per hour is 65 mph.

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A 1167 kg car is driving along a highway with 458,350 J of kinetic energy.
What is its speed?

Answers

The speed of the car having kinetic energy 458,350 J  is 28.03m/s

What is What is Kinetic Energy ?

Kinetic energy is a type of power that a moving object or particle possesses. An item accumulates kinetic energy when work, which involves the transfer of energy, is done on it by exerting a net force. A moving object or particle has kinetic energy, which depends on both its mass and its rate of motion. The type of motion can be vibration, rotation on an axis, translation (or travel along a path from one place to another), or any combination of these.

K.E = 1/2*m*v2

K.E = kinetic energy

m = mass

v = velocity/speed

458350 = 1/2*1167*v2

v2= 458350*2/1167

v = 28.03 m/s

The speed of the car having kinetic energy 458,350 J  is 28.03m/s

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is your interest equal to zero, meaning the line passes through the origin? if not then did we miss something when we said f in equation 5 was only due to spring force

Answers

When the angle between the force and the displacement is more than 90 degrees, work might be negative. It can also be zero; if = 90, this will occur.

The spring force, which defines the force applied to an object by the end of an ideal spring, is the most well-known illustration of a force whose value varies on position. An ideal spring will exert a force on the object attached to one end that is proportionate to how much it is stretched, and a force that is proportional to how much it is compressed on the object linked to the other end.

The force must function in order to accomplish its mission have a component that is parallel to the motion's direction or the opposite.

We must compute an integral (a sum) to determine the work done if the force acting on the object is not constant while it is moving.

Assume that an external force with the x component Fx(x) is acting on the object, causing it to travel in a straight line (let's say along the x axis, from xi to xf). (Or, we understand the force Fx to be a function of x.)

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4.
Both solenoids and electromagnets
produce magnetic fields using
A electric current and coiled wires
B
compasses and magnetic fields
C coiled wires and a ferromagnetic core
D electric current and a battery

Answers

Both solenoids and electromagnets produce magnetic fields using electric current and coiled wires. The correct option is A

What are electromagnets?

An electromagnet can be defined as a type of magnet in which the magnetic field is produced by an electric current.

Electromagnets usually consist of wire wound into a coil.

Both solenoids and electromagnets produce magnetic fields using electric current and coiled wires.

The simple arrangement and construction of electromagnets requires an insulated copper wire, iron rod and battery.

Electromagnets has some advantages which includes :

that they are not permanent magnets and they can be made stronger by giving more amount of electricity. the poles of these magnets can change by changing the direction of the current

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q3. a v-tube with angle thetatheta contains some liquid of density ???????? inside and is open to atmosphere at point a. the height of the v-tube is HH. the v-tube can rotate along the axis ab at different speed. assume atmospheric pressure to be PP0. (1) what angular velocity ???????? can cause the pressure at b and c to be equal? (2) find the minimum pressure and its location along bc.

Answers

an angled v-tube Theta theta is open to the atmosphere at point a and contains some viscous liquid outside. The v-tube is HH in height. The speed at which the v-tube rotates along axis ab is variable. Assume that PP0 is the atmospheric pressure.

Atmosphere

An atmosphere is a subcaste of gas or layers of feasts that wrap an earth and are held in place by the gravity of the planetary body (from Ancient Greek: "atmós" "vapour," "brume," and "sphaîra" "sphere"). When the graveness is strong and the temperature of the atmosphere is low, the earth keeps its atmosphere. The outer portion of a star, known as its astral atmosphere, is made up of the layers above the opaque photosphere; low-temperature stars may have astral atmospheres that contain emulsion motes.

Nitrogen (78), oxygen (21), argon (0.9), carbon dioxide (0.04), and trace gases make up the Earth's atmosphere.

Most species utilize oxygen for respiration, while shops, algae, and cyanobacteria use carbon dioxide for photosynthesis. Lightning and bacteria use nitrogen obsession to manufacture ammonia, which is used to synthesize nucleotides and amino acids. The atmosphere's stratified structure reduces the dangers of the sun, UV radiation, solar wind, and cosmic shafts to protect species from irreparable harm. The biochemical modification of the pale atmosphere by living beings billions of times has led to the makeup of the Earth's atmosphere as it is now.

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A tray containing 0.20 kg of water at 20 °C is placed in a freezer temperature of the water drops to 0 °C in 10 minutes. (specific heat capacity of water = 4200 J /kg K Calculate
(i) the energy lost by the water as it cools to 0 °C,
(ii) the average rate at which the water is losing energy, in J/s.​

Answers

Answer:i) Energy lost by the water to cool to a temperature of 0°C from 20°C is 16800 J ii) Average rate at which the water is losing energy = 28J/s when specific heat capacity of water = 4200 J/kg K

Explanation: i)The formula used to calculate the energy lost by the water is

Q=mcΔT   where Q= heat or energy lost (or gained), m= mass of the water, c= specific heat capacity of the water, ΔT= [tex]T_{f}-T_{i}[/tex] where [tex]T_{f}[/tex] is the final temperature of the water and [tex]T_{i}[/tex] is the initial temperature of the water

Given, m=0.2kg , c= 4200 J/kg K , [tex]T_{f}=0[/tex]°C and [tex]T_{i}=20[/tex]°C

∴ΔT=[tex]T_{f}-T_{i}=(0-20)[/tex]°C= -20 K                        ∵Change of temperature in celsius = change of temperature in kelvin

∴[tex]Q=[/tex][tex]0.2*4200*(-20)= -16800 J[/tex]                    (minus denotes energy loss)

ANS:Energy lost by the water as it cools is Q=16800 joules = 16800J

ii) formula used to calculate average rate at which the water is losing energy is

average rate of losing energy [tex]=\frac{Energy Lost}{Time}[/tex][tex]= \frac{Q}{t}[/tex]

Energy Lost= Q = 16800 J                                   (from answer (i))

Time taken for water to cool to 0°C = t= 10 min= 10*60 sec= 600 sec

∴Avg. rate of losing energy[tex]=\frac{Q}{t}=\frac{16800}{600}=28 J/s[/tex]

ANS: Average rate at which the water is losing energy is 28J/s

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Two students carried out an experiment to determine the speed of sound. This is the method used
Student A stands 100 m away from Student B.
1
2
3
4.
5.
Student A bangs two blocks of wood together making a loud sound.
Student B starts a stopclock when he sees the blocks of wood bang together.
Student B stops the stopclock when he hears the sound and records the time.
The students repeat steps 2-4 several times.
The students calculated the speed of sound from their results.
(e) Suggest the most likely source of error in the experiment.

Answers

The most likely source of error would be human error such as delay in stopping the stopwatch. The coordination error would be the source of error.

What is the speed of Sound?

On Earth, the speed of sound as calculated experimentally at sea level assuming a default air temperature of 59 degrees Fahrenheit (15 degrees Celsius) is 761.2 mph (1,225 km/h). The speed of sound is slowed down because gas molecules move more slowly at lower temperatures.

Thus, sound tends to move faster in warmer air.

To explain what speed of sound is, the speed of sound can be described as the distance travelled per unit of time by any sound wave as it propagates through a completely elastic medium.

At 20 °C, temperature the speed of sound in air is about 343 meters per second, or one kilometer in 2.91 s or one mile in 4.69 s.

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A rock climber stands on top of a 53 m -high cliff overhanging a pool of water. He throws two stones vertically downward 1.0 s apart and observes that they cause a single splash. The initial speed of the first stone was 1.5 m/s. How long after the release of the first stone does the second stone hit the water?
Express your answer to two significant figures and include the appropriate units.

Answers

A rock climber stands on the top of a 53 m high cliff overhanging a pool of water, so for 3.1 seconds, after which the second stone hit the water.

What is the average speed?

The overall distance the object covers in a given amount of time is its average speed. The scalar quantity represents the average speed. It does not have direction; it is represented by magnitude.

Average Speed= [tex]Total\ Distance/ Total\ time[/tex]

According to the question, the given values are :

v₁ = 1.5 m/s

y₂ = 52 m

y₁ = 0 m

Acceleration, a = 9.8 m/s²

Use Formula :

y₂ = y₁ + v₁t + 0.5 at²

52 = 0 + 1.5t + 0.5 (9.8)t²

4.9 t² + 1.5 t - 52 = 0

[tex]t=-b\frac{+}\ \sqrt{b^2-4ac}/2a[/tex]

t = -1.5 + [tex]\sqrt{2.25+1019.2}[/tex]/9.8

t = (-1.5 + 31.9)/9.8

t = 3.10 seconds.

Hence, the time period will be 3.10 seconds.

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Place a +3q point charge at the origin, and a -q point charge on the x-axis at D = 0.500 m. At what point on the x-axis will the net forces from the other two charges acting on a third charge, q°, be equal to zero?

Answers

The Point on the x-axis that the net forces from the other two charges acting on a third charge, q°, will be equal to zero is

x=1.72units

This is further explained below.

What are forces?

Generally, The total amount of forces exerted on an item is referred to as its net force. The total of N forces exerted on an item is given in the equation below.

The total force operating on an item, which may include a number of different forces, is known as the net force acting on the object.

The n forces operating on an item are added up in this equation. According to this formula, the amount of net force exerted on an item is equal to the mass times the acceleration of the object.

+3q  <------>+11q

[tex]&\frac{1}{4 \pi E v}\left(\frac{3 q}{x^2}-\frac{11 q}{(5-x)^2}\right)=0 \\\\&\frac{3}{x^2}=\frac{11 q}{(5-x)^2} \\&\frac{5-x}{x}=\sqrt{\frac{11}{3}}=1.91 \\\\[/tex]

5-x=1.91 x

=1.715

=1.72units

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PLEASE HELP PHYSICS
A miniature quadcopter is located at

xi = −2.25 m

and

yi = −4.70 m

at

t = 0

and moves with an average velocity having components

vav, x = 1.70 m/s

and

vav, y = −1.50 m/s.

What are the x-coordinate and y-coordinate (in m) of the quadcopter's position at

t = 2.60 s?

Answers

Answer:

Final coordinates in meters : (2.17, -8.6)

Explanation:

We have the equation

displacement  Δd = average velocity x time

In this case there are two components of displacement corresponding to the two components of average velocity

[tex]v_{avg}(x) = 1.70 \; m/s[/tex]

[tex]v_{avg}(y) = -1.50 \; m/s[/tex]

Time traveled is t = 2.60s

So the x component is toward east (+x) axis and y component is due south(-y axis)

[tex]\sf{x \;displacement \;} \Delta_x = v_{avg}(x) x t= 1.70m/s \; \times \; 2.60 = 4.42 m\\\\[/tex]

Since the original x-coordinate was at -2.25m, the end x coordinate is

x =  -2.25 + 4.2 = 2.17

The y-displacement
[tex]\sf{y \;displacement \;} \Delta_y = v_{avg}(y) x t\\\\ = - 1.50m/s \; \times \; 2.60 = - 3.9 m\\\\\\\\[/tex]

The starting y-coordinate was at y = -4.70m

So final y-coordinate = -4.7 - 3.9 = -8.6m

Final coordinates in meters : (2.17, -8.6)

A ball is seen at an initial position of 12m. It moves with an average velocity of 10m/s. How long will it take for the ball to reach the 98m mark?

Answers

The ball will take 8.6 sec to reach the 98m mark.

Given,

The initial position of the ball = 12m

The final position of the ball = 98m

The velocity of the ball = 10m/s

The displacement of the ball = (98-12)

= 86m

We know,

Average velocity = Displacement/time

Therefore,

Time = Displacement/velocity

= 86/10

= 8.6 sec

So, the ball will take 8.6 sec with average velocity of 10m/s to reach the mark of 98m from initial position of 12m.

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Metals corrode when left exposed to substances in the environment. State why aluminium quickly becomes protected from further corrosion.

Answers

Answer:

Explanation: because it develops a thin oxide layer on the surface when the metal comes in contact with oxygen. The oxide layer protect the aluminum against corrosion and if damaged it will immediately regenerate in presence of

3. Alice and Kai were playing air hockey, which is a game where players hit a puck with paddles so the puck slides across
a table. After the game, they were crashing the puck and two different paddles. The puck was the same in both crashes.
but the paddles were different: the red paddle had less mass, while the purple paddle had more mass. Use the
information in the diagram to answer.
In which crash did the puck experience a stronger force? Why?

Answers

Answer: Purple because it is greater than the red in mass and the more mass and the more mass it is the stronger it would be to have a change in velocity.

Explanation:

Answer:

Crash 2

Explanation:

The force on purple paddle was stronger, so the force on the puck has to be stronger

32. Use billiard balls to model the motion of particles in a gas. Use students in a crowded
hallway to model the motion of particles in a liquid. Use an audience in a movie theater to model the
motion of particles in a solid.
55

Answers

The particles of a solid are in fixed positions, the particles of a liquid do not translate to a large extent while the particles of a gas has extreme degree of freedom.

What are particles?

We have to refer to the kinetic molecular theory at this point. We would recall from the theory that the particles that compose a substance are said to be in a constant random motion. As such, the molecules of a gas do have the greatest degree of freedom thus they move about freely. On the other hand, the molecules that compose a solid have the least degree of freedom as they remain in their fixed positions and can only vibrate.

Billiard balls are free to have about and they move at high speeds since they are spaced from each other. This is the nature of the interaction between the molecules of a gas.

Students in a hall way that is crowded can be used to approximate liquid particles because they do not posses a high degree of freedom but the molecules could move a few inches away from each other.

For a solid. an apt approximation is the  audience in a movie theater. This is because, they can only remain on their seats just as the particles in a solid retain a fixed position and do not translate.

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10.A fairground ride spins its occupants inside a large teacup. If the radius of the
circular path is 10m and the acceleration is 1.5g, what is the speed of the riders?

Answers

Radial acceleration is inversely related to the radius of the curved pathway and directly proportional to the square of the linear speed. The ratio of the square of the angular speed to the radius of the curved pathway is directly proportional to the radial acceleration.

Explain about the radius and acceleration?

This is the acceleration of an object moving at speed v within a circle of radius r. Therefore, as you may have experienced while driving a car, centripetal acceleration is greater at high speeds and in acute curves (smaller radii). y.

We can argue that as the radius increases, the centripetal acceleration of the item moving in a circle falls exponentially. Along the radius, the centripetal acceleration's magnitude diminishes.

The centripetal acceleration would be decreased if the radius were decreased while all other factors remained constant, but it would be increased if the speed were increased while all other factors remained constant.

The radius of the circular path is 10m and the acceleration is 1.5g the speed of the rider is 1.82 m/s/s.

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Calculate the average velocity of the cart for each fan speed. round your answers to the nearest tenth. the cart with low fan speed has an average velocity of cm/s. the cart with medium fan speed has an average velocity of cm/s. the cart with high fan speed has an average velocity of cm/s.

Answers

The average velocity of the cart for each fan speed to the nearest tenth is as follows:

The cart with low fan speed has an average velocity of 67.6 cm/s. The cart with medium fan speed has an average velocity of 78.1 cm/s. The cart with high fan speed has an average velocity of 90.9 cm/s.

What is average velocity?

An average velocity can be defined as the total distance covered by a physical object divided by the total time taken.

Mathematically, the average velocity of a physical object can be calculated by using this formula:

Average velocity = Total distance/Total time

The average velocity of the cart with low fan speed is given by:

Average velocity = 500/7.4

Average velocity = 67.57 ≈ 67.6 cm/s.

Also, the average velocity of the cart with medium fan speed is given by:

Average velocity = 500/6.4

Average velocity = 78.13 ≈ 78.1 cm/s.

Lastly, the average velocity of the cart with high fan speed is given by:

Average velocity = 500/5.5

Average velocity = 90.91 ≈ 90.9 cm/s.

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derive triangular law or parallelogram law of vectors to find the magnitude of the resultant and direction of two vectors

Answers

I don’t even rlly know

Which one of the following vector pairs is equal in magnitude and opposite in direction?Vectors
explained image
a)one short and one long arrow going towards each other
b)one short and one long arrow going right in the same direction
c)two of the same size arrows going right in the same direction
d)two of the same size arrows going in towards eachother

Select one:
a. A
b. B
c. C
d. D

Answers

Answer

(D) the vectors must be the same size and pointing opposite to each other

A tennis player hits a ball vertically with a speed of 10 m/s. How high does it go?

Answers

Answer:

5.1 m

Explanation:

Assuming gravitational force is 9.8 m/s², the acceleration experience by the ball is -9.8 m/s²

The acceleration is negative because the ball is moving vertically upward and gravitational force acts vertically  downward.

The velocity of the ball at maximum height is 0 m/s when it will start falling back to ground at a positive acceleration of 9.8 m/s²

We can use the following formula to calculate the height the ball reaches

v² = u² + 2 a  d

where u is the initial velocity, v = final velocity, a = acceleration and d = displacement(in this case the vertical height from ground)

Final velocity is 0 since the ball has reached it maximum height and starts falling downward, Initial velocity u = 10 m/s

Plugging in values we get
0² = 10² - 2  x 9.8 x d

0 = 100 - 19.6d

Subtracting 100 from both sides

-100 = -4.9 d

Divide by -1 both sides
100 = 4.9d

d = 100/4.9 ≈ 5.1 m

So the ball will reach a height of 5.1m


A 10kg block of wood is pulled across a level ground by fore of 15N applied at an angle of 30 degree from the horizontal. How much work is done, if it is moved to a distance of 3m?

Answers

The amount of work done, given that the block moved to a distance of 3 m is 38.97 J

How to determine the work done

Work is defined as the product of force and distance moved in the direction of the force.

Work done (Wd) = force (F) × distance (d)

Wd = fd

Considering angle projection,

Wd = FdCosθ

With the above formula, we can detertmine the work done as follow:

Mass (m) = 10 KgForce (F) = 15 NAngle (θ) = 30°Distance (d) = 3 mWorkdone (Wd) =?

Wd = FdCosθ

Wd = 15 × 3 × Cos 30

Wd = 45 × Cos 30

Wd = 38.97 J

Therefore, we can conclude that the work done is 38.97 J

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A car travels downtown on the freeway with a constant speed of 10 miles/hour. if the car travels for .5 hours , how far away is downtown?

Answers

The downtown is 5 miles far away, if the car travels at 10 miles / hour for 0.5 hours.

v = d / t

v = Velocity

d = Distance

t = Time

v = 10 mi / hr

t = 0.5 hr

d = v * t

d = 10 * 0.5

d = 5 mi

Velocity of the car is the rate of change of position of the car. In simple words it can be said as velocity is used to calculate the distance covered in a given amount of time.

Therefore, the downtown is 5 miles far.

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What layer of the mantle moves with the convection current?

Answers

Magma is the layer of the mantle that moves with the convection current.

How does the mantle layer move with convection current?

Magma is the molten rock that is present in the mantle below the earth's crust. The high amount of heat and pressure inside the earth leads to hot magma that flows in convection currents. These currents cause the movement of the tectonic plates that formed the earth's crust. Mantle convection is defined as the movement of the mantle that transfers heat from one layer to another. The mantle is heated from the lower side but it is cooled from the upper side so the temperature decreases over long periods.

So we can conclude that the layer of the mantle that moves with the convection current is the magma layer.

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Not all organelles are found in all cells. For example, red blood cells do not have a nucleus. Imagine looking
at a cell that is responsible for producing a lot of large molecules to be excreted from the cell into the body
(like the cells of the endocrine glands of the pancreas). Predict if you expect to see each of the above
organelles in this cell and then justify your prediction with evidence from this page.

Answers

Organelles are small structures present inside the cell body in order to regulate the various functions of cell .

What is an organelle and how does it functions?An organelle is a specialized structure present inside the cell body and is responsible for carrying out various functions.There are numerous cell organelles like cytoplasm, nucleus , nucleolus, mitochondria , golgi apparatus etc.All the cell organelles have specific function inside the cell , depending on whether the cell body is prokaryote or eukaryote.Eukaryotic cell have all the organelles present almost , but prokaryotic cell lacks in few organelles.Its truly said that not all organelles are found in all cells. And red blood cells do not have nucleus.

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a 40kg crate rests on a horizontal floor, and a 60kg person is standing on the crate. determine the magnitude of the normal force that the floor exerts on the crate.

Answers

The magnitude of the normal force that the floor exerts on the crate is 980 N.

What is normal force?

The normal force of an object the perpendicular force of the object due to its weight. The weight of the force of the object due force of gravity.

According to Newton's third law of motion, the normal force of an object is equal and opposite to the weight of the object.

Mathematically, the formula for normal force is given as;

W = Fn

mg = Fn

where;

m is the mass of the objectg is acceleration due to gravityFn is the magnitude of the normal force

Substitute the given parameters and solve for normal force that the floor exerts on the crate.

Fn = (m1 + m2)g

where;

m1 is mass of the crate m2 is mass of the person

Fn = (40 + 60)9.8

Fn = (100)9.8

Fn = 980 N

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