Your friend just challenged you to a race through an obstacle course. You know in order to beat him, you must run 30 meters within 60 seconds in a southern direction. What does your average velocity need to be to win the race?

Answers

Answer 1
.5 meters per seconds.
Answer 2

Answer:

velocity = 0.5 m/s Towards South

Explanation:

As we know that velocity is the ratio of displacement and time

so here it is given that object displaced by total displacement of d = 30 m

also we know that time taken is 60 seconds

now we know the formula as

[tex]v = \frac{displacement}{time}[/tex]

now plug in the values in it

[tex]v = \frac{30}{60}[/tex]

[tex]v = 0.5 m/s[/tex] Towards South

So the average velocity must be 0.5 m/s Towards South


Related Questions

What is the ratio of the earth's orbital period about the sun to the earth's period of rotation about its own axis?

Answers

One complete orbit of the earth around the sun is 365 and ¼ days. Because of this, the earth has to completely orbit around the sun in respect to the stars too no the sun only and so the earth spins 366.26 times every rotation. The ratio of the earth's orbital period about the sun to the earth's period of rotation about its own axis will then be 1 is to 366.26.

Final answer:

The ratio of the Earth's orbital period about the sun to its period of rotation about its axis is 365.26:1.

Explanation:

The ratio of the earth's orbital period about the sun to the earth's period of rotation about its own axis is 365.26 days to 1 day.

This means it takes approximately 365.26 days for the Earth to orbit the Sun once, while it takes 1 day for the Earth to complete one full rotation about its axis.

Therefore, the ratio can be simplified to 365.26:1.

If you lose control of your vehicle and collide with a fixed object, such as a tree, at 60 m.p.h., the force of impact is the same as driving your vehicle off a

Answers

You can compare the velocity of the car, 60 mph, with the velocity that a mass would acquire when falls from certain height.

First, convert 60 mph to m/s:

60 miles/h * 1.60 km/mile * 1000 m/km * 1h/3600s = 26.67 m/s

Second, calculate from what height a body in free fall reachs 26.67 m/s velocity when hits the floor.

free fall => Vf^2 = 2g*H => H = Vf^2 / (2g)

H = (26.67m/s)^2 / (2*9.8 m/s) = 36.2 m

If you consider that the height between the floors of a building is approximately 3.6 m, you get 36.2 m / 3.6 m/floor = 10 floors.

Then, you conclude that the force of impact is the same as driving you vehicle off a 10 story building.

The force of impact is the same as driving your vehicle off a 10.0 story structure.

Given the following data:

Velocity = 60 mph.

Conversion:

Velocity = 60 mph to m/s = 26.82 m/s.

How to calculate the height.

In this exercise, you're required to compare the force of impact with an equivalent height. Thus, we would use the following formula to calculate the height:

[tex]H = \frac{V^2}{2g}[/tex][tex]H = \frac{V^2}{2g}[/tex]

Where:

H is the height.V is the velocity.g is the acceleration due to gravity.

Substituting the parameters into the formula, we have;

H = \frac{26.82^2}{2(9.8)}

H = 36.70 meters.

Assuming a distance of 3.6 meters:

Height = \frac{36.70}{3.6}

Height = 10.0 meters.

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what is equal between two identical light bulbs??.is it current,voltage or resistance??

Answers

Salutations!

What is equal between two identical light bulbs?

Between two identical light bulbs, the equivalence between then would be the current, as the identical bulbs would have the same brightness.

Hope I helped!

An electric hair dryer is rated 350w 110v. the safety fuse in the circuit can withstand 12a of current. how many hair dryers can be safely operated in the circuit?

Answers

To determine the number of hair dryers that can be plugged in to a circuit, our basis is the maximum threshold of the current. The current which measures 12 Amperes. This current already incorporates the safety factor that is important in industrial setting.

The voltage and the current can be related to the power by the equation:

P = I*V, where I is the current in Amperes and V is the voltage in volts

Solving for the total power:

P = 12 A * 110 V
P = 1,320 Watts

Since the power rating of each hair dryer is 350 W, we divide this to the total power to determine the capacity.

Number of hair dryers = 1,320 Watts/350 Watts per hair dryer
Number of hair dryers = 3.77

In this case, we cannot round off to 4 because this would already exceed the maximum power capacity. Therefore, the total number of hair dryers allowable is 3.

The pollutants associated with eutrophication are _____.

Answers

Eutrophication is a pollution problem in which water (lakes, ponds, and rivers) receive excess nutrients. These nutrients stimulate excessive growth of algae, and as a result of this bacteria. The pollutants associated with eutrophication are  nitrogen and phosphorous. These both nutrients lead to growth of algae.

Nitrates and phosphates is correct on gradpoint

Is it possible for one ray to be shorter in length than another?

Answers

Yes, even light rays can vary in wavelength and frequency, if the length of the ray is sorter, it becomes more energetic and has a higher frequency. If you're talking about a ray tracing diagram for lenses or mirrors, the length of the ray doesn't really matter unless you're finding the path length but there are some procedures for that too. Let me know if I missed what you were asking.

The air that flows over the top part of an airplane's wing moves faster than the air that flows across the bottom. This faster moving air causes the wing to rise.

Which of the following principles or laws helps explain why the wing rises?

Boyle
Bernoulli
Pascal
Charles

Answers

As an airplane moves through the air, its wings cause changes in the speed and pressure of the air moving past them. These changes result in the upward force called lift.

The Bernoulli principle states that an increase in the speed of a fluid occurs simultaneously with a decrease in the pressure exerted by the fluid.

A wing is shaped and tilted so the air moving over it moves faster than the air moving under it. As air speeds up, its pressure goes down. So the faster-moving air above exerts less pressure on the wing than the slower-moving air below. The result is an upward push on the wing—lift!

A driver sets out on a journey. for the first half of the distance she drives at the leisurely pace of 30 mi/h; during the second half she drives 60 mi/h. what is her average speed on this trip?

Answers

A driver sets out on a journey. for the first half of the distance she drives at the leisurely pace of 30 mi/h; during the second half she drives 60 mi/h, the driver's average speed on this trip is 40 mi/h.

To find the average speed for the entire trip, we can use the formula for average speed:

Average Speed = Total Distance ÷ Total Time.

In this case, the driver covers the first half of the distance at 30 mi/h and the second half at 60 mi/h.

Let's assume the total distance of the trip is [tex]\(D\)[/tex] miles. The first half of the distance is [tex]\(D/2\)[/tex] miles, and the second half of the distance is also [tex]\(D/2\)[/tex] miles.

Let's calculate the time taken for each half of the distance:

Time taken for the first half = Distance / Speed

= [tex]\((D/2) \, \text{miles} / (30 \, \text{mi/h})\)[/tex].

Time taken for the second half = Distance / Speed

= [tex]\((D/2) \, \text{miles} / (60 \, \text{mi/h})\).[/tex]

Total time for the trip = Time for the first half + Time for the second half.

Total time = [tex]\((D/2) / (30) + (D/2) / (60)\)[/tex].

Total time = [tex]\(\dfrac{D}{60} + \dfrac{D}{120}\)[/tex].

Total time = [tex]\(\dfrac{3D}{120} = \dfrac{D}{40}\)[/tex].

Now we can calculate the average speed:

Average Speed = Total Distance / Total Time.

Average Speed = [tex]\(D / \dfrac{D}{40}\)[/tex].

Average Speed = [tex]\(40\) mi/h[/tex].

Thus, the driver's average speed on this trip is 40 mi/h.

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Final answer:

The driver's average speed on this trip is 30 mi/h.

Explanation:

To find the average speed on this trip, we can use the formula: average speed = total distance / total time. Let's assume the total distance is D miles. According to the given information, the driver spends the first half of the distance at a speed of 30 mi/h and the second half at a speed of 60 mi/h. Therefore, the total time taken for the trip is D / (30 mi/h) + D / (60 mi/h) = D / (1/30 h) + D / (1/60 h) = 2D / (1/60 h) = 120D h. We can substitute this value into the average speed formula and simplify: average speed = D / (120D h) = 1/120 h. So, the driver's average speed on this trip is 1/120 h = 0.00833 h = 0.00833 x 60 min = 0.5 min/h = 0.5 x 60 = 30 mi/h. Therefore, the driver's average speed on this trip is 30 mi/h.

Which statements describe the process of scientific inquiry? Check all that apply.

Answers

I believe that you forgot to add the choices. However, I will just tell you what is the process of scientific inquiry and you can choose the best match from the choices you have.

Scientific inquiry is mainly the process of developing a meaningful explanation to a certain phenomenon or a question from the natural world. This process involves collecting data, forming a hypothesis and testing the results of this hypothesis. These results whether confirm or reject the hypothesis you made you made.

Scientific inquiry has seven main sub-process, these processes are as follows:
1- Figuring out the problem through observation
2- To do some research to gather more information about the problem and how to solve it
3- To develop your hypothesis on how to solve this problem
4- To test your hypothesis through experiments and observation
5- analyzing the results of your testing through graphs, tables, organizing data,....elc
6- to draw a conclusion based on these results. The conclusion will either confirm or reject your hypothesis
7- Just pass-on your results

Answer:

a

Explanation:

A plane flies from base camp to lake a, 205 km away in the direction 20.0° north of east. after dropping off supplies it flies to lake b, which is 175 km at 30.0° west of north from lake

a. determine the distance and direction from lake b to the base camp.

Answers

Draw a diagram to illustrate the problem as shown in the figure below.

Camp A  is 20° north of east from the camp, therefore
m∠CAB = 80°
where C => base camp.

Let d = distance from lake B to the base camp, at x° west of south.
Apply the Law of Cosines to determine d.
d² = 205² + 175² - 2*205*175*cos80⁰
     = 6.0191 x 10⁴
d = 245.338 km

Apply the Law of Sines to obtain
[tex] \frac{sin(x+30)}{205}= \frac{sin80^{o}}{245.338}\\ \\ sin(x+30)=( \frac{205}{245.338})sin80^{o}= 0.8229[/tex]
x+30 = sin⁻¹ 0.8229 = 55.4°
x = 25.4°

Answer:
The distance from lake B to base camp is 243.3km (nearest tenth).
The direction is 25.4° west of south.

For an object starting from rest and accelerating with constant acceleration, distance traveled is proportional to the square of the time. if an object travels 2.0 furlongs in the first 2.0 s, how far will it travel in the first 4.0 s?

Answers

Final answer:

For an object starting from rest and accelerating with a constant acceleration, the distance travelled is proportional to the square of the time. So, if an object travels 2.0 furlongs in the first 2.0 seconds, it will travel 8.0 furlongs in the first 4.0 seconds.

Explanation:

In the problem, we have an object accelerating from rest and we know that distance covered is proportional to the square of the time. In the first 2.0s, the object has covered a distance of 2.0 furlongs. Hence, if we double the time from 2.0s to 4.0s, since distance covered is proportional to the square of time, the object will cover 2*(2.0s)^2 = 8.0 furlongs in the first 4.0s. This relationship is based on the physics principle of displacement which defines that in constant acceleration, distance travelled is proportional to square of time.

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How does a cell phone use electromagnetic radiation?

Answers

To receive and transmit the messages, voice or text.

An object is placed exactly halfway between the Earth and moon. The object will fall toward the

Answers

Earth as the earth has a higher mass and therefore a higher gravitational force upon the object.

Answer:

Force of Earth will be dominating and the object will fall towards Earth

Explanation:

As we know that

Mass of Earth

[tex]M_e = 5.98 \times 10^{24} kg[/tex]

Mass of Moon

[tex]M_m = 7.35 \times 10^{22} kg[/tex]

since we know that gravitational force depends on mass and the distance between two objects

so here if an object is placed midway between Moon and Earth then as we can see that mass of Earth is approx 100 times more than the mass of Moon

So here we can say that Force of Earth will be dominating and the object will fall towards Earth

What does the prefix for kilo- mean

Answers

The word/prefix "[tex]kilo[/tex]" means [tex]one [/tex] [tex]thousad[/tex]

Good luck on your assignment and enjoy your day!

~[tex]MeIsKaitlyn :)[/tex] 

Calculate the change in internal energy (δe) for a system that is giving off 25.0 kj of heat and is changing from 12.00 l to 6.00 l in volume at 1.50 atm pressure. (remember that 101.3 j = 1 l∙atm) 14) ______
a.+25.9 kj
b.-16.0 kj
c.-25.9 kj
d.-24.1 kj
e.937 kj

Answers

Since the system itself is giving off heat, this is a reduction in the internal energy.

heat = - 25,000 J

 

Since work is being done on the system, therefore it is an additional energy to the system. Work is given as:

work = - P dV

work = - 1.50 atm (6 L – 12 L)

work = 9 L atm

Since it is given that 1 L atm is equivalent to 101.3 J, therefore the total energy added is:

energy due to work = 9 L atm (101.3 J / 1 L atm)

energy due to work = 911.7 J

 

Therefore the total change in internal energy is the sum of heat and energy due to work:

Change in internal energy = - 25,000 J + 911.7 J

Change in internal energy = - 24,088.3 J

 

Therefore, approximately 24.1 kJ of energy is lost by the system in the total process.


Answer:

-24.1 kJ

The correct option is d. which is the change in internal energy is -24.9 kj.

Given to us:Heat system is giving off, [tex]Q_{out}= -25000[/tex]Initial volume, [tex]V_{i}=12\ l[/tex]Final volume, [tex]V_{i}=6\ l[/tex]Pressure, [tex]P= 1.50\ atm[/tex]Also, a piece of additional information is given to us, [tex]101.3\ j = 1\ l\cdot atm[/tex].


Work

As work is being done on the system, meaning additional energy is provided to the system. Therefore,

[tex]\begin{aligned}W&=- \int\limits {P} \, dv\\&=-P\ dv\\\\&=-P\ (V_f-V_i)\\&=- (1.50) (6-12)\\&= 9\ l\cdot atm\end{aligned}[/tex]

Also,

[tex]1\ l\cdot atm=101.3\ j\\9\ l\cdot atm=101.3\times 9\\9\ l\cdot atm=911.7\ j[/tex]

According to the First law of thermodynamics,

[tex]\Delta U = Q - W\Delta\\\\where,\\ U = change\ in\ internal\ energy\\Q = heat\ added\\W = work\ done\ by\ the\ system[/tex]

Substituting the values,

[tex]\begin{aligned}\\\Delta U&= Q - W\Delta\\&= -25000+911.7\\&=-24,088.3\ j\\&= -24.0883\ kj\end{aligned}[/tex]

Hence, the change in internal energy is -24.0883 kj.

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For safety reasons, in case of an aborted takeoff, the length of the runway must be three times the takeoff distance. what is the minimum length runway this aircraft can use?

Answers

The minimum length runway this aircraft can use is about 4.1 km

Further explanation

Acceleration is rate of change of velocity.

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

[tex]\large {\boxed {d = \frac{v + u}{2}~t } }[/tex]

a = acceleration ( m/s² )

v = final velocity ( m/s )

u = initial velocity ( m/s )

t = time taken ( s )

d = distance ( m )

Let us now tackle the problem !

Let's look at the table in the attachment

Given:

u = 0 m/s

v = 79 m/s

a = 23 / 10 = 2.3 m/s²

Unknown:

d = ?

Solution:

Let's calculate the takeoff distance.

[tex]v^2 = u^2 + 2as[/tex]

[tex]79^2 = 0^2 + 2(2.3)s[/tex]

[tex]6241 = 4.6s[/tex]

[tex]s = 6241 \div 4.6[/tex]

[tex]s \approx 1400 ~ m[/tex]

The length of the runway must be three times the takeoff distance.

[tex]d = 3s[/tex]

[tex]d = 3(6241 \div 4.6)[/tex]

[tex]d \approx 4100 ~ m[/tex]

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Answer details

Grade: High School

Subject: Physics

Chapter: Kinematics

Keywords: Velocity , Driver , Car , Deceleration , Acceleration , Obstacle , Speed , Time , Rate

Final answer:

To determine the minimum runway length for an aircraft, multiply the takeoff distance by three. If the takeoff distance is known, this simple multiplication will provide the minimum runway requirement.

Explanation:

The question asks for the minimum runway length required for an aircraft, given that the runway must be three times the takeoff distance for safety reasons in the event of an aborted takeoff. To determine this, if we know the takeoff distance required for the aircraft, we simply multiply that distance by three to find the minimum runway length the aircraft can use. For example, if an aircraft requires 1 kilometer (1,000 meters) to take off, the minimum runway length must be 3 kilometers (3,000 meters) for safety reasons.

Rahul goes to school daily on his cycle. It is his daily observation that he
needs to apply more force to start the cycle to move, as compared to when the
cycle is in motion. Explain.

Answers

Friction force comes from this equation, F = μN, where F is the force, μ is the coefficient of friction between surfaces and N is the normal force of the ground on the bike. The normal force shouldn't change as Rahul rides, as it's dependent mostly on he and his bike's weight. What's changing is the coefficient of friction, μ, which in general is a higher value for static friction (not moving) than it is for moving friction (sliding (kinetic friction) or rolling). Basically, it takes more force to put something into motion than it takes to keep it in motion once it is already going. That's why Rahul has to push harder on his pedals to start going than he goes after he's already rolling along.

If the sound of an electric can opener causes a cat to salivate because it has been associated with the presentation of food, the cat's salivation to the sound of the can opener is

Answers

It is called "classical conditioning".
This is a procedure in which a neutral stimulus is repeatedly paired with a stimulus that elicits a reflex or other response until the neutral stimulus alone comes to elicit a similar response. Such as a cat connecting the sound of an electric can opener to the providing of food.

Sb-26 what information is most important when passing near a lighthouse

Answers

Most important information  when passing near a lighthouse is the water depth.
Today there are many complex navigation instruments,but in the past the lighthouse were the only navigation sailors had. However, the lighthouse still is very important in the navigation. There is an information chart on every lighthouse that gives information about  the location of the lighthouses and the depth of the water. With these information an experienced sailor can navigate even without modern instruments.

The information, most important when passing near a lighthouse is the

Water's depth or depth of the water.

What is a lighthouse?

A lighthouse is simply a structure that emits a bright light that provides navigators with a constant or intermittent signal.

In conclusion, When passing near a lighthouse we consider looking at the water's depth around the area

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How many magnitude 8 earthquakes does it take to equal the energy release for a magnitude 9 earthquake?

Answers

The popular Richter scale for measuring the magnitude of earthquakes is based on a log₁₀ scale.
Therefore, a magnitude 9 earth quake is 10 times a magnitude 8  earthquake.

That is, it takes ten magnitude 8  earthquakes to equal the energy released by one magnitude 9 earthquake.

Answer: 10

Two planets are 3 x 107 km apart. Planet A has a mass of 8 x 1024 kg. Planet B has a mass of 1 x 1025 kg.
What is the gravitational force that Planet A exerts on Planet B? (2pts)



What is the gravitational force that Planet B exerts on Planet A? (2pts)

Answers

Given:
m₁ = 8 x 10²⁴ kg, mass of planet A
m₂ = 10²⁵ kg, mass f planet B
d = 3 x 10⁷ m, the distance between planets A and B

The gravitational force between planets A and B is
[tex]F=G \frac{m_{1}m_{2}}{d^{2}} [/tex]
where
G = 6.674 x 10⁻¹¹ (N-m²)/kg²
That is,
F =[ (6.674 x 10⁻¹¹ (N-m²)/kg²)*(8 x 10²⁴ kg)*(10²⁵ kg) ]/(3 x 10⁷ m)²
   = 5.9324 x 10²⁴ N

Answer:
Planet A exerts a force of 5.9324 x 10²⁴ N on planet B.
Planet B exerts an equal and opposite force om planet A.

As the external magnetic field decreases, an induced current flows in the coil. what is the direction of the induced magnetic field caused by this current?

Answers

As the external magnetic field decreases, an induced current flows in the coil. The direction of the induced magnetic field would be pointing to the screen. The flux through the coil is said to decrease. In order to counter this change, the coil would generate or produce a magnetic field that is induced that would be pointing to the same direction as the external field that is flowing which is into the the screen. This is according to Lenz's law or the right hand rule. It states that an induced current in a circuit that is due to the change or motion in   magnetic field should be directed opposing to the change in the flux.

The direction of the induced magnetic field caused by this current will be the same direction as the external field.

What is an induced magnetic field?

As the external magnetic field decreases, an induced current flows in the coil. The direction of the induced magnetic field would be pointing to the screen.

The flux through the coil is said to decrease. In order to counter this change, the coil would generate or produce a magnetic field that is induced that would be pointing in the same direction as the external field that is flowing which is into the screen.

This is according to Lenz's law or the right-hand rule. It states that an induced current in a circuit that is due to the change or motion in the magnetic field should be directed opposing the change in the flux.

hence the direction of the induced magnetic field caused by this current will be the same direction as the external field.

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How do you change the thermos into an open energy system

Answers

Final answer:

To convert a thermos into an open energy system, allow for energy exchange by adding openings or using less insulating materials, thus modifying the thermos to gain or lose energy like other open systems.

Explanation:

To change a thermos into an open energy system, you must allow for the transfer of energy between the thermos and its surroundings. A thermos is designed to be an isolated system, minimizing energy exchange with the environment to keep its contents at a consistent temperature. However, to convert it into an open system, modifications can be implemented such as adding openings or using materials that facilitate heat exchange. It is through such alterations that the thermos can then gain or lose energy, behaving similarly to a pot of water on a stove, which is considered an open system because it loses heat to the air.

While a thermos typically serves to approximate an isolated system, where the coffee inside remains hot by limiting heat transfer, to convert it to an open system, one might drill holes in it or construct it from a less insulating material. Once converted, the thermos could then absorb energy from the environment or release energy to it, such as solar radiation warming the contents or ambient air cooling them down. This adherence to thermodynamics principles demonstrates how the laws of thermodynamics govern the energy dynamics of open systems. Ultimately, converting a thermos to an open system reflects the first law of thermodynamics, where the energy within the system changes through the work done on it or by it.

At fifty-five miles per hour, a vehicle travels __________ feet in one second.

Answers

In order to convert from miles per hour into feet per second you need to multiply by 1.47. Therefore, if a vehicle is travelling at a speed of 55 miles per hour, we simply multiply this number by 1.47 and obtain the result of 80.9 feet per second. Thus, the vehicle travels 1.47 feet in a single second. 

Final answer:

A vehicle traveling at 55 miles per hour covers approximately 80.67 feet in one second, calculated by converting miles per hour to feet per second.

Explanation:

To find out how many feet a vehicle travels in one second at a speed of 55 miles per hour, we can perform a unit conversion from hours to seconds. First, we need to determine how many feet are in a mile and then convert miles per hour to feet per second.

There are 5,280 feet in a mile, therefore:

55 miles × 5,280 feet/mile = 290,400 feet per hour

Since there are 3,600 seconds in an hour, we divide the total feet per hour by the number of seconds in an hour to find the distance in feet per second.

290,400 feet/hour ÷ 3,600 seconds/hour = 80.67 feet per second (rounded to two decimal places)

So, a vehicle traveling at 55 miles per hour travels approximately 80.67 feet in one second.

The time between two successive meridian crossings of the vernal equinox (or any other fixed point in the celestial sphere) is called ___________ day and it is ___________ long.

Answers

The best answers to complete this sentence would be the following:

 

“sidereal day”

“upper median”

 

It keeps the time, in the two successive upper meridian of the sun during the crossing. Also it is when the star crosses the celestial meridian.

Explanation:

“sidereal day”

“upper median”

It keeps the time, in the two successive upper meridian of the sun during the crossing. Also it is when the star crosses the celestial meridian.

Hope this helps!      

Which process is a form of mechanical weathering?
A. Hydration
B. Carbonation
C. Exfoliation
D. Oxidation

Answers

Mechanical weathering is actually breaking down of rocks into smaller pieces by natural forces. Any weathering processes that can cause the physical breakdown of rocks without any type of change in the chemical composition of rocks, called mechanical weathering.

So, looking at each of the definitions in the options, we can easily choose:
1. Hydration : It's a process of absorbing water by substance.

2. Carbonation: It's a process of Carbon Dioxide dissolving in liquid (mostly water).

3. Oxidation : It's a process of oxygen reacting with some element.

4. Exfoliation:  It's a process where the rocks erodes by peeling off in sheets or layer by layer rather than grain by grain.

As you can see the last one Exfoliation matches with the definition of mechanical weathering. It's one of its types.
Final answer:

The form of mechanical weathering is exfoliation, which refers to the peeling off of the outer layers of a rock due to physical forces. Hydration, carbonation, and oxidation represent forms of chemical weathering.

Explanation:

The weathering process that exemplifies a form of mechanical weathering is option C, exfoliation. Mechanical weathering, also known as physical weathering, refers to the process where rock is broken down into smaller pieces by physical forces without any changes in its chemical composition.

Exfoliation is a form of mechanical weathering that occurs when the outer layers of rock peel off in layers due to differential heating and cooling, or freeze-thaw cycles. In contrast, options A (hydration), B (carbonation), and D (oxidation) all depict processes of chemical weathering, wherein the rock's mineral composition itself changes.

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A tall cylinder contains 30 cm of water. oil is carefully poured into the cylinder, where it floats on top of the water, until the total liquid depth is 40 cm. part a what is the gauge pressure at the bottom of the cylinder? suppose that the density of oil is 900 kg/m3.

Answers

The total gauge pressure at the bottom of the cylinder would simply be the sum of the pressure exerted by water and pressure exerted by the oil.

The formula for calculating pressure in a column is:

P = ρ g h

Where,

P = gauge pressure

ρ = density of the liquid

g = gravitational acceleration

h = height of liquid

Adding the two pressures will give the total:

P total = (ρ g h)_water + (ρ g h)_oil

P total = (1000 kg / m^3) (9.8 m / s^2) (0.30 m) + (900 kg / m^3) (9.8 m / s^2) (0.4 - 0.30 m)

P total = 2940 Pa + 882 Pa

P total = 3,822 Pa

 

Answer:

 The total gauge pressure at the bottom is 3,822 Pa.

The total gauge pressure at the bottom of cylinder due to the oil and the water is  [tex]\boxed{3822\,{\text{Pa}}}[/tex].

Further Explanation:

Given:

The water in the cylinder is up to the height of 30 cm .

The total height of the liquid column in the cylinder is 40 cm .

The density of oil is  [tex]900\,{{{\text{kg}}}\mathord{\left/{\vphantom {{{\text{kg}}} {{{\text{m}}^{\text{3}}}}}}\right.\kern-\nulldelimiterspace} {{{\text{m}}^{\text{3}}}}}[/tex].

Concept:

The gauge pressure is the amount of pressure exerted by the liquid column on the surface below it.

The gauge pressure due to the height of the liquid pressure is given by:

[tex]P =\rho gh[/tex]

Here, [tex]P[/tex] is the gauge pressure, [tex]\rho[/tex] is the density of the liquid, g is the acceleration due to gravity and [tex]h[/tex] is the height of the liquid column.

The height of the oil present in the cylinder is:

[tex]\begin{aligned}{h_{oil}}&={h_{total}} - {h_{water}}\\&= 40 - 30\,{\text{cm}}\\&=10\,{\text{cm}}\\&\approx {\text{0}}{\text{.1}}\,{\text{m}}\\\end{aligned}[/tex]

The total gauge pressure at the bottom of the cylinder will be:

[tex]{P_{total}} = {\left({\rho gh}\right)_{water}} + {\left( {\rho gh}\right)_{oil}}[/tex]

Substitute the values in the above expression.

[tex]\begin{aligned}{P_{total}}&=\left({1000 \times 9.8 \times 0.30} \right) + \left( {900 \times 9.\times 0.1}\right)\\&=2940 + 882\\&=3822\,{\text{Pa}}\\\end{aligned}[/tex]

Thus, the total gauge pressure at the bottom of cylinder due to the oil and the water is [tex]\boxed{3822\,{\text{Pa}}}[/tex]

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Answer details:

Grade: High School

Subject: Physics

Chapter: Pressure

Keywords: Gauge pressure, water, oil, bottom of cylinder, 30cm of water, density of oil, 900kg/m^3, poured, floats on top, total liquid depth.

Which is a chemical property of iron?
its tendency to react with oxygen
its melting point
its strength under compression
its hardness

Answers

Final answer:

A chemical property of iron is its tendency to react with oxygen to form iron oxide, otherwise known as rust, which is a process called corrosion.

Explanation:

A chemical property of iron is its tendency to react with oxygen, which is an example of corrosion. This reaction forms iron oxide, commonly known as rust. Unlike physical properties like melting point, hardness, and strength under compression, chemical properties describe the potential for a substance to change its chemical structure. Corrosion is one such property that can only be observed as the substance is transformed into a different substance, in this case, iron becoming iron oxide.

Dilute, saturated, concentrated is the order of terms for increasing solute to solvent ratio for solutions.

Answers

I think the statement would be false. Dilute, salute, concentrated is not the right order of terms for increasing solute to solvent ratio for solutions. The correct order would be dilute, concentrated and saturated. Dilute solutions are solutions that contain small amount of solute. Concentrated solutions are solutions are those solutions which contains higher amount of solute sometimes near saturation. Saturated solutions, on the other hand, are solutions where the amount of solute particles had reach the maximum amount that could be dissolved in the solvent. It can also be considered as a concentrated solution. However, it should be higher than concentrated solution since the latter can contain solutes where the amount is higher than dilute but lower than saturated.

The position function x (6.0 m) cos[(3p rad/s)t p/3 rad]gives the simple harmonic motionof a body. at t 2.0 s, what are the(a) displacement, (b) velocity, (c)acceleration, and (d) phase of the motion? also, what are the (e)frequency and (f) period of the motion?

Answers

The correct formula for this simple harmonic motion is:

x = (6.0) cos [ (3 pi) t + pi/3 ] 

 

A. Calculating for displacement x at t = 2:

x =6.0 cos (19/3 pi)
x = 6 (0.5)

x = 3 m

 

B. Velocity is equivalent to the 1st derivative of the equation. v = dx / dt

 Velocity v = dx/dt = -18 pi sin (3pi t + pi/3) 

v = - 18 pi sin (6pi + pi/3)

v = 49.0 m/s

 

C. Acceleration is the 2nd derivative or the 1st derivative of velocity dv / dt
Acceleration a = dv/dt = -54 pi^2 cos(3pi t + pi/3) 

a = -54 pi^2 cos(3pi * 2 + pi/3)

a = 386.34 m/s^2

D. Phase = pi/3 

E. frequency f= 3pi/2pi = 1.5Hz 


F. period = 1/f = 1/1.5 = .6667sec 

Final answer:

The position function x(t) = X cos(ωt + φ) represents the simple harmonic motion of a body. At t = 2.0 s, we can calculate the displacement, velocity, acceleration, and phase of the motion. The frequency and period of the motion can also be determined.

Explanation:

In simple harmonic motion, the displacement of a body at any given time t is given by the equation x(t) = X cos(ωt + φ), where X is the amplitude, ω is the angular frequency, and φ is the phase angle.

(a) At t = 2.0 s, plugging in the values, we have x(2.0) = 6.0 cos((3π rad/s) * 2.0 s + π/3 rad).

(b) Velocity can be obtained by taking the derivative of the displacement function, v(t) = -ωX sin(ωt + φ).

(c) Acceleration can be obtained by taking the derivative of the velocity function, a(t) = -ω²X cos(ωt + φ).

(d) The phase of the motion refers to the initial position of the body and is represented by the phase angle φ.

(e) The frequency of the motion is given by f = ω/(2π) = (3π rad/s)/(2π) = 3/2 Hz.

(f) The period of the motion is the reciprocal of the frequency, T = 1/f = (2/3) s.

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