A car slow down at -5.00 m/s2 until it comes to a stop after traveling 15.0 m. What was the initial speed of the car? (Unit=m/s)

Answers

Answer 1
Good formula to remember!

V_F^2 = V_0^2 + 2 * a * d

V_F = final speed
V_0 = initial speed

0^2 = V_0^2 + 2*(-5)*15 = V_0^2 -150,

V_0 = sqrt(150) = 12.25 m/s
Answer 2

Answer:

12.25 m/s

Explanation:

If a car slows down at -5 m/s2 and it comes to a stop after traveling 15 m we just have to use the next formula:

[tex]Vf^{2} =Vo^{2} +2ad[/tex]

Now we know that the final velocity is 0, so by inserting our data into the formula it would look like this:

[tex]Vf^{2} =Vo^{2} +2ad[/tex]

[tex]0 =Vo^{2} +2(-5m/s^{2})(15m)[/tex]

[tex]-Vo^{2}= -150m^{2}/s^{2}[/tex]

[tex]Vo^{2}= 150m^{2}/s^{2}[/tex]

[tex]Vo= \sqrt{150m^{2}/s^{2}}[/tex]

[tex]Vo= 12.25m/s[/tex]


Related Questions

how much force is needed to cause a 15 kilogram bike to accelerate at a rate of 10 meters per second?

Answers

F = m*a, mass times acceleration.

F = 15*10 = 150 N

Answer:

150 Newtons

Explanation:

Match the following rocks with the correct type.
1. obsidian A) intrusive igneous
2. granite B) extrusive igneous
3. conglomerate C) clastic sedimentary
4. evaporite D) organic sedimentary
5. coal E) chemical sedimentary
6. marble F) metamorphic

Answers

I\B
2/A
3\C
4\E
5\D
6\F
I think this is right

The correct matches are:

1. obsidian - B) extrusive igneous;

2. granite - A) intrusive igneous;

3. conglomerate - C) clastic sedimentary;

4. evaporite - E) chemical sedimentary;

5. coal - D) organic sedimentary;

6. marble - F) metamorphic;

There are three big groups of rocks, igneous, sedimentary, and metamorphic. They further diversify into multiple types of rocks in accordance to their structure, chemical composition, crystallization, formation etc. The igneous can simple be divided into intrusive (ones that formed on the surface or very close to it) and extrusive (ones that formed deep into the ground). The sedimentary rocks can be divided into multiple groups in accordance to their composition, as some can be made of multiple sediments, some from organic material, some from mixture of sediments and organic material etc. And the metamorphic can simply be seen as rocks that come to be as a result of the transformation of the other two types if they are under big pressure and temperatures for longer periods of time.

According to the plate tectonics model, what layers form earth's rigid, mobile plates

Answers

Crust & Upper Mantle

Answer:

Crust and Upper Mantle

Explanation:

I am just so smart

Which statement best describes the skier? The skier has potential and kinetic energy. The skier has only potential energy. The skier has only kinetic energy. The skier does not have potential or kinetic energy.

Answers

The skier has potential and kinetuc energy. Because if the skier from high places, it will have potential energy then when the skier started to move down it will change to kinetic energy. This is the same as the situation where water in the dam that from high place have the potential energy when it started to move down it will change to kinetic energy.

Option A: The skier has potential and kinetic energy

If you run your boat aground what should you do first

Answers

If you run your boat aground, the first thing you should do is to calmly assess the situation. In case you have passengers on your boat, you should have them don PFDs (personal flotation devices). Afterwards, you should turn off the engine, check if there is any damage, and generally see if everything is okay.

Answer:

Calmly assess the situation and get everyone to don PFDs.

Valerie is preparing a blood sample for analysis. She wants to separate the solid red blood cells and obtain only the liquid portion, called plasma. The red blood cells are too small to filter out, but are denser than the plasma.
Describe the steps Valerie could take to separate the blood sample.

Answers

First, she should put the sample in a test tube and place it in a centrifuge. This would cause the red blood cells to move to the bottom because of their higher density. Next, she would be able to decant the plasma and analyze it separately from the red blood cells.

Valerie is preparing a blood sample for analysis. For this purpose, a machine called a centrifuge is used which spins the blood sample to separate the red blood cells, platelets and plasma from blood. As the blood is separated, the heavier reds cells sink to the bottom of the tube and are given back to the person.

What is blood sample analysis?

A test done on a sample of blood is used to measure the amount of certain substances in the blood or to count the different types of blood cells present in the blood sample. Blood tests may be done to look for the signs of disease or agents which cause disease, to check for the antibodies or tumor markers, or to see how well the different treatments are working.

Valerie is preparing a blood sample for the purpose of analysis. First, she should put the blood sample in a test tube and place it in a centrifuge machine. This machine would cause the red blood cells from the blood to move to the bottom of the tube because of their higher density in comparison to other components. Next, Valerie would be able to decant the plasma from the blood and analyze it separately from the red blood cells.

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How can pwc operators minimize annoying noise?

Answers

The most important thing to do if you want to minimize annoying noise while operating a PWC is not to congregate with other PWC operators near shore.
If you get into a crowd of other PWCs, then the noise will be unbearable and this is something that you should definitely avoid if you don't want to bother other people around you.
Final answer:

PWC operators can minimize annoying noise using destructive interference, where a second sound with maxima and minima exactly opposite the incoming noise is introduced. This resulting sound is much quieter. This technique can also apply engineering changes to parts that could resonate at the annoying sound frequency.

Explanation:

PWC operators can minimize annoying noise using a method based on sound interference, notably destructive interference. Figure 17.23 provides a demonstration with headphones that use this principle to cancel noise. The main idea of noise cancellation is to introduce a second sound with its peaks and troughs exactly opposite from the incoming noise. This is achieved through a fast electronic analysis. The two sounds then interfere destructively, resulting in a much quieter sound.

Achieving completely destructive interference in practice is rarely possible, but using this method, it's feasible to reduce noise levels by 30 dB or more. Notably, the principle of Pascal's principle is at play, where pressures from two different sources add and subtract like simple numbers. This results in a lower-intensity sound, i.e., less noise.

This technique can be extended to include studying parts that could resonate at the frequency of the annoying sound, and then engineering changes to eliminate that resonance. It may involve changing the material used or changing the length of the part, as discovered in Fourier Analysis.

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If a sheet of aluminum foil (d = 2.70 g/cm3) weighs 5.31 lbs and is 0.0130 mm thick, the surface area of the foil is closest to�

Answers

Given:
d = 2.70 g/cm³, the density
M = 5.31 lbs, the mass
t = 0.0130 mm, thickness

Convert all data into SI units.
d = (2.70 g/cm³)*(1/1000 kg/g)*(10² cm/m)³
   = 2.7 x 10³ kg/m³
M = (5.31 lb)*(0.543592 kg/lb)
    = 2.4086 kg
t = (0.013 mm)*(10⁻³ m/mm)
  = 1.3 x 10⁻⁴ m

Let the surface area f the foil be A m².
Then the mass of the foil is 
M = d*A*t
    = (2.7 x 10³ kg/m³)*(A m²)*(1.3 x 10⁻⁴ m) 
    = 0.351A kg

Because the mass is 2.4086 kg, therefore
A = 2.4086/0.351
   = 6.862 m²

Answer: The surface area is 6.862 m².

When conducting an experiment, what is provided by the independent variable?

Answers

Answer:
The independent variable provides the control required to obtain output measurements or results.

Explanation:
The purpose of an experiment is to determine the response of a dependent variable to changes in an input variable.

The input variable controls the output measurement, and it is, therefore, the independent variable.

Example:
I place a mass of water in a beaker and insert an electric heating coil into the water. I place a thermometer in the water to measure the average temperature of the water as I increase the heat input to the water by varying the current to the heating coil.
Because I am controlling the output result (temperature) by varying the input (current), my independent variable is current.

As a function,
T = T(I)
where
I = current (the independent variable),
T = temperture, (the dependent variable).


Eq-36 when paddling a canoe at night, which piece of equipment should be carried to help avoid a collision?

Answers

Flashlight should be carried to help avoid a collision, when paddling a canoe at night.
There are some rules and skills for paddling a canoe. So, before paddling you should know everything about it. Canoeing is not easy as it looks and not everyone can paddle a canoe. A strong stroke is a fundamental rule of Canoeing.

The combined weight of the vessel and its engine should not exceed what percentage of the trailer's recommended load capacity?

Answers

The combined weight of the vessel and its engine should not exceed 90% percentage of the trailer's recommended load capacity. Because if it does, there will be lesser room for passengers to occupy the vessel or worst, in the long run, may cause the vessel to sink due to overloading. The combined weight of passengers, gear, and motors is the maximum weight  of the vessel. If it exceeds the desired maximum weight, then it will be subjected to questioning to the Federal law because it is not advisable. To know the maximum capacity of the vessel, look for the capacity plate near the position of the operator or on the transom of the vessel.

Electromagnetic force occurs when
A.Atoms in the field lose an electron.
B.An electromagnetic field interacts with charged particles.
C.Atoms gain an electron.
D.Electromagnetic fields gain proto

Answers

Answer:

B.An electromagnetic field interacts with charged particles.

Explanation:

As we know that electromagnetic field is the combination of electric field and magnetic field both.

If the electric field or magnetic will interact with charge particle then due to interaction of charge particles with the field there is force on the charge particle which is given as

for electric field

[tex]F = qE[/tex]

for magnetic field

[tex]F = q(v \times B)[/tex]

so in both cases the charge particle will have interaction with magnetic field or electric field

so correct answer would be

B.An electromagnetic field interacts with charged particles.

Electromagnetic force occurs when an electromagnetic field interacts with charged particles. The correct option is (B).

When charged particles interact with an electromagnetic field, electromagnetic force results. Along with gravity, the weak nuclear force, and the strong nuclear force, this force is one of the four fundamental forces of nature.

Electric charges or electric currents cause an electromagnetic field to form. When charged particles, such as electrons or protons, are near an electromagnetic field, the interaction between their charge and the field causes them to feel a force.

The electromagnetic force is given by:
F = q(E + v×B)

Many commonplace phenomena and technology applications are fundamentally influenced by electromagnetic force. It is in charge of numerous electromagnetic phenomena, including interactions between charged particles, electrical circuit behavior, the creation of magnetic fields, and many more.

Hence, electromagnetic force occurs when an electromagnetic field interacts with charged particles. The correct option is (B).

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Suppose a membrane surrounded an oil droplet, as it does in the cells of plant seeds and in some animal cells. describe and explain the form it might take.

Answers

Supposing a membrane surrounded an oil droplet, as it does in the cells of plant seeds and in some animal cells. The oil droplet membrane would contain only a layer of phospholipids rather than having two layers or a bilayer since a structure wherein the hydrophobic end of the phospholipids are in contact with the oil droplet membrane which is a hydrocarbon would give more stability than forming a bilayer. A bilayer structure can be seen when phospholipids are in water since the hydrophilic ends would tend to be attracted to water while the hydrophobic ends would find a way to be away from water forming a double layer.

How does temperature increase effect collisions between molecules apex?

Answers

Temperature increase, increases the kinetic energy of the molecules. Increase in temperature is an increase in energy level so, the rate of the reaction increases, motion of the particles increase. This means the particles move faster, collide more often with each other and collide with more energy.

Answer:

Increase of temp causes the rate of a reaction to increase, which increases the kinetic energy of molecules, causing more collisions

Why can a bridge surface freeze before adjoining road surfaces do?

Answers

Heat loss from both top and bottom of the road surface.
Final answer:

The bridge surface can freeze before adjoining road surfaces do because of the difference in heat transfer. The bridge loses heat faster due to exposure to the cold air from above and below, while the roads are insulated by the ground.

Explanation:

The reason why a bridge surface can freeze before adjoining road surfaces do is due to the difference in heat transfer.

When it is cold outside, the bridge surface is exposed to the cold air from above and below, causing it to lose heat rapidly. On the other hand, the adjoining road surfaces are in contact with the ground, which acts as an insulator and slows down the heat loss.

As a result, the bridge surface reaches the freezing temperature faster than the adjoining road surfaces, leading to the formation of ice on the bridge while the roads remain clear.

820 mol of hydrogen gas hydrogen gas has a volume of 2.00 l at a certain temperature and pressure. what is the volume of 0.125 mol of this gas at the same temperature and pressure

Answers

 To solve this problem, let us first assume that the hydrogen gas acts like an ideal gas. So that we can make use of the ideal gas equation:

P V = n R T

where P is the pressure, V is the volume, n is the number of moles, R is the universal gas constant and T is the absolute temperature


Since it is given that T and P is constant therefore we can write the equation as:

V / n = k


So equating the two conditions:

V1 / n1 = V2 / n2


We can now solve for the new V2 given n2 = 0.125:

2 L / 820 mol = V2 / 0.125 mol

V2 = 3.05 x 10^-4 L

The new volume is about 3.05 x 10^-4 L which is equivalent to 0.3 mL

Nina is working with electricity and shortens the wires through which the current is flowing. What is Nina most likely trying to accomplish?
A convert electric energy to heat
B convert electric energy to light
C increase resistance
D decrease resistance 

Answers

Resistance is directly propotional to the length of the wire. It is denoted by R. By shortening the wire the value of resistance is decreased in the wire.

What is the resistance of an electric wire?

The flow of current is due to the flow of charge in the wire. Resistance causes an opposition force in the flow of the current due to which the flow of current got reduced.

Hence resistance is inversly propotional to the value of the flow of current.

If the length of the wire, the cross-sectional area of the wire, and resistivity of the material are known, the resistance of the wire may be computed as follows:

[tex]\rm R=\frac{\rho l}{A}[/tex]

R is the resistance,

is the wire's resistivity

L is the wire's length

A is the area of a crosssection of the wire.

From the above formula, we get the resistance is directly propotional to the length of the wire.

Hence by shortening the wire the value of resistance is decreased in the wire.

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Answer:

its d

Explanation:

True or false to activate the anti-lock brake system, you must pump the breaks three times

Answers

False because anti-lock brake system will activate automatically. 
False

Hope this helps : )

What part of the visible light spectrum produces the most light?

Answers

Answer: all colors

.......

Key evidence that mars may once have had much more water than it does today-perhaps enough to form an ocean-comes from ________.

Answers

The answer to this question is precisely the "measurement of the atmospheric ratio of the given deuterium to the given ordinary hydrogen". Hence, if we complete the statement in the problem, we have it, the key evidence that Mars may once have had much more water than it does today- perhaps enough to form or accommodate an ocean comes from the measurement of the atmospheric ratio of the deuterium to the given ordinary hydrogen. 

A baseball is hit nearly straight up into the air with a speed of 22 m/s. (a) how high does it go? (b) how long is it in the air? neglect air resistance.

Answers

Final answer:

To determine how high a baseball goes and how long it is in the air when hit straight up, we use kinematic equations. The maximum height is given by the formula h = V_i^2 / (2g), and the total time in the air is calculated by t = (2V_i) / g.

Explanation:Baseball Trajectory Calculations

A baseball hit straight up into the air with a speed of 22 m/s undergoes uniform accelerated motion due to gravity, which is -9.81 m/s2. To determine how high the baseball goes, we use the kinematic equation h = Vi2 / (2g), where Vi is the initial velocity and g is the acceleration due to gravity. Substituting 22 m/s for Vi and 9.81 m/s2 for g, we can calculate the maximum height the ball reaches.

For part (b), calculating how long the baseball is in the air, we use the kinematic equation t = (2Vi) / g, considering the ball has to go up and then come down, doubling the time it takes to reach the maximum height (as the initial speed going up is the same as the final speed coming down, just with opposite signs).

These equations and methods apply similarly to all projectile motion problems and are useful to address multiple exercises including the determination of initial velocity, time in the air, and maximum height in various scenarios such as a ball kicked with initial components, the range of projectiles, the work done by air resistance, and more.

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Suppose you adjust your garden hose nozzle for a hard stream of water. you point the nozzle vertically upward at a height of 1.5 m above the ground. when you quickly turn off the nozzle, you hear the water striking the ground next to you for another 1.8 s .

Answers

For problems especially pertaining motion, it is best to illustrate the problem to help you understand the problem. The picture I've attached is my illustration based on what I understood from the problem. Suppose the diamond in the picture is the nozzle. It is placed 1.5 m above the ground (bold horizontal line). The water coming out of the nozzle follows the direction of the arrows until it falls to the ground next to you holding the nozzle. When you turn it off, the water at the topmost part slowly comes back to the ground in 1.8 seconds. 

Unfortunately, you weren't able to complete the problem. However, I would make a smart guess. I think it is logical that the problem would ask how high did the water shoot upwards from the nozzle, denoted as x. In order to solve this, we use the equations for free-falling objects:

t = √2h/g
1.8 = √2h/9.81
h = 15.9 m

To find the height of the water from the nozzle, we subtract the total height to 1.5 m to determine x.

x = 15.9 - 1.5 = 14.4 m


The spread of uniform construction technology can be traced to which of the following developments?



Answers

The best answer for this question would be:

 

 The onset of World War II 

 

It started during World War II because during the war, soldiers needed to upgrade their uniform. This is to enable them to adapt to the battlefield where the deconstruction happened and courses of history have changed.

A turtle crawls at a constant speed, moving 4.77 m in 19.5 s. What was the turtle's velocity?

Answers

The turtles average speed during that time was 0.245 meter per second. We have no way to describe its velocity because you haven't told us anything about the direction it crawled.

A turtle crawls and covers a distance of 4.77 m in a time of 19.5 seconds, then the velocity of the turtle will be equal to 0.245 m/s.

What is velocity?

Velocity is the rate of change of a traveling object's direction, as measured by a certain unit of time and as seen from a specific vantage point. Speed is a basic concept in kinematic, the branch of special relativity that studies how bodies move.

A scientific vector quantity called velocity must have both a magnitude and direction to be described.

As per the given data provided by the question,

The distance traveled by the turtle, d = 4.77 m

Time is taken by the turtle, t = 19.5 seconds.

[tex]Velocity(v) = Distance(d)/Time(t)[/tex]

v = 4.77/19.5

v = 0.245 m/s.

Therefore, the velocity of the turtle is 0.245 m/s.

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A toaster draws 8 A of current with a voltage of 120 V. Which is the power used by the toaster?

Answers

[tex]U=120 \text{ V}\\ I=8\text{ A}\\ P=U\cdot I\\\\ P=120\cdot8=960 \text{ W} [/tex]

Sb-39 according to the navigation rules, what factor should be considered in determining a safe speed?

Answers

According to the navigation rules, the factor which should be considered in determining a safe speed is the state of the visibility.
Safe speed contains factors which includes: visibility conditions like fog, mist, rain, darkness etc., wind, water conditions and currents. Vessel responsiveness, traffic density, proximity of any navigational hazards are also included in this.

Answer:

The state of visibility

How to find initial velocity in projectile motion without angle?

Answers

Refer to the diagram shown below.

We want to find V, the initial launch velocity of a projectile, without knowing θ, the launch angle.

To find V, we need to perform an experiment to determine:
d, the horizontal distance traveled,
t, the time taken to travel the horizontal distance.

Assume that aerodynamic resistance is negligible.
The horizontal component of the velocity is 
Vx = V cosθ
Because the horizontal distance, d, is traveled in time, t, therefore
(V cosθ)*t = d
Vcosθ = d/t                  (1)

Assume that ground level has height zero.
Note that g, the acceleration due to gravity is known.

The vertical travel between the time of launch and return to ground level obeys the equation
Vsinθ*t - (g/2)*t² = 0
Therefore
t[Vsinθ - (gt)/2] = 0
Obtain
t = 0, which corresponds to launch
or
t = (2Vsinθ)/g

That is,
Vsinθ = (gt)/2            (2)

From (1) and (2), obtain
(Vcosθ)² + (Vsinθ)² = (d/t)² + (g²t²)/4
V²(cos² + sin² ) = (d/t)² + (g²t²)/4
[tex]V= \sqrt{( \frac{d}{t})^{2}+( \frac{gt}{2})^{2} } [/tex]

Because g,t  and d are known, V can be calculated.
Final answer:

To find initial velocity in projectile motion without the angle, use the vertical motion information to calculate time of flight, then use horizontal distance and time to find horizontal velocity, and combine it with initial vertical velocity using the Pythagorean theorem.

Explanation:

To find the initial velocity in projectile motion without knowing the angle, one approach is to use the given vertical motion information. According to the provided discussion, if a projectile has an initial vertical velocity (Vy0) of 14.3 m/s and lands 20.0 m below its starting altitude, the time of flight is 3.96 seconds. This time is solely determined by the vertical motion, as the vertical acceleration is constant due to gravity.

Once the time of flight is known, you can calculate the horizontal component of the velocity (Vx) as follows: Vx = horizontal distance traveled / time of flight. It is important to note that Vx is constant throughout the motion if air resistance is negligible. The horizontal component can then be used in combination with the vertical component to calculate the total initial velocity (Vo). This can be done by using the Pythagorean theorem, Vo = √(Vx² + Vy0²).

When a refrigerant trace gas is necessary in a 410a air conditioner, which of the available refrigerants should be mixed with nitrogen and used to identify a leak?

Answers

The answer is CFC – 22 or HCFC - 22. To locate leaks, it is easily accomplished using a pressure – regulated dry nitrogen charge with CFC – 22. But some technicians prefer to use Refrigerant – 22 (HCFC – 22) to pressurize the system without the use of nitrogen. CFC – 22 is also known as Chlorodifluoromethane. This is a hydrochlorofluorocarbon (HCFC). This is better recognized as HCFC-22, or R-22. It is usually used as a propellant and refrigerant. While HCFC – 22 is also known as class II hydrochlorofluorocarbon refrigerant that is less harmful to the ozone than R -12. If HCFC – 22 is used for leak testing, all refrigerant must be first detached from the system. After the leak test, HCFC – 22 should be remove before putting any other refrigerant. Do not mix refrigerants. Both HCFC – 22 and R -134a fall into the kind of refrigerants known as combustible. If exposed to oxygen, they will burn when under pressure or exposed to high temperatures. 

how light used to study space

Answers

Light is used to study how far in space which gets you Lightyears.

Work of 2 joules is done in stretching a spring from its natural length to 11 cm beyond its natural length. what is the force (in newtons) that holds the spring stretched at the same distance (11 cm)

Answers

The law applied here is Hooke's Law which describes the force exerted by the spring with a given distance. The equation for this is F = kΔx, where F is the force in Newtons, k is the spring constant in N/m while Δx is the displacement in meters.

If you want to find work done by a spring, this can be solved by using differential equations. However, derived equations are already ready for use. The equation is

W = k[{x₂-x₁)² - (x₁-xn)²],

where 
xn is the natural length
x₁ is the stretched length 
x₂ is also the stretched length when stretched even further than x₁

In this case xn =x₁. So, that means that (x₁-xn) = 0 and (x₂-x₁) = 11 cm or 0.11 m.

Then, substituting the values,

2 J = k (0.11² -0²)
k = 165.29 N/m

Finally, we use the value of k to the Hooke's Law to determine the Force.

F = kΔx = (165.29 N/m)(0.11 m)
F = 18.18 Newtons

Final answer:

To find the force holding a spring stretched at 11 cm, the spring constant is first calculated using the work done to stretch the spring. The spring constant is found to be approximately 330.58 N/m. The force is then calculated as 36.36 N.

Explanation:

The question relates to calculating the force that holds a spring stretched at a particular distance, given the work done to stretch the spring. The work to stretch (or compress) a Hooke's law spring by a displacement x  is 0.5kx², where k is the spring constant, and x is the displacement. We know that 2 joules of work is done to stretch the spring 11 cm; we can use this information to calculate the spring constant and then find the force.

First, we convert 11 cm to meters by dividing by 100 to get 0.11 meters. Then, rearrange the spring work formula to solve for k:
W = 1/2 k x^2
2 = 1/2 k (0.11)^2
k = (2 * 2) / (0.11)^2
k = 4 / 0.0121
k = approximately 330.58 N/m

Once we have the spring constant, we can calculate the force that the spring exerts when stretched 11 cm:

F = k x
F = 330.58 N/m * 0.11 m
F = 36.36 N

Therefore, the force that holds the spring stretched at 11 cm is 36.36 N.

Other Questions
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