part complete to what potential should you charge a 0.600 μf capacitor to store 1.60 j of energy?

Answers

Answer 1

The potential to which the capacitor should be charged to store 1.60 J of energy is 2310 volts.

To calculate the potential to which a capacitor must be charged to store a certain amount of energy, we can use the formula:

E = 1/2 * C * V^2

where E is the energy stored in the capacitor, C is the capacitance of the capacitor, and V is the potential to which the capacitor is charged.

We are given that the capacitance of the capacitor is 0.600 μF and the energy stored in the capacitor is 1.60 J. Substituting these values into the formula above, we get:

1.60 J = 1/2 * 0.600 μF * V^2

Simplifying, we have:

V^2 = 2 * 1.60 J / 0.600 μF

V^2 = 5.33 x 10^6 V^2

Taking the square root of both sides, we get:

V = sqrt(5.33 x 10^6 V^2)

V = 2310 V

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Related Questions

which factor is needed to describe velocity but is not needed to describe speed

Answers

Answer:

Magnitude and direction describe velocity

However if there is only magnitude its mean it is speed.

Fun : probably you have seen speed movie. It could not have director because if speed is directed then it will be velocity lol..

Two objects, a cylinder and a hoop, roll down without slipping from the top of a frictional ramp at the same time. They are made of different materials, but both have the same mass and radius. Which one reaches the bottom first

Answers

The cylinder will reach the bottom of the ramp first compared to the hoop, provided all other factors remain constant.

In this scenario, the cylinder and the hoop have the same mass and radius, but they are made of different materials. When rolling down a frictional ramp without slipping, the objects' motion can be analyzed using the concept of rotational kinetic energy.

The formula provides the calculation for the rotational kinetic energy of the objects.

KE_rot = (1/2) * I * ω^2,

The equation represents the relationship between rotational kinetic energy, moment of inertia, and angular velocity.

For a cylinder and a hoop of the same mass and radius, the moment of inertia is different due to their different shapes. The formula for the moment of inertia of a solid cylinder is expressed as I_cylinder = (1/2) * m * r^2, where m represents the mass of the cylinder and r represents its radius.

The equation for the moment of inertia of a hoop is I_hoop = m * r^2, where m represents the mass of the hoop and r represents its radius.

Since the objects have the same mass and radius, the moment of inertia for the cylinder is smaller than that of the hoop:

I_cylinder < I_hoop.

As the objects descend down the ramp, the potential energy due to gravity is transformed into rotational kinetic energy.

The object that reaches the bottom first will be the one that can convert the gravitational potential energy into rotational kinetic energy more efficiently.

Since the moment of inertia of the cylinder is smaller than that of the hoop, it will have a higher angular velocity for the same amount of rotational kinetic energy. Therefore, the cylinder will reach the bottom of the ramp first compared to the hoop, provided all other factors remain constant.

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Develop and describe a method to predict the force exerted by the expelled CO2 on the system using Newton's Saved second law.

Answers

1) Determine the mass of the expelled CO2, 2) Calculate the acceleration of the CO2 using Newton's second law, and 3) Multiply the mass by the acceleration to obtain the force exerted by the CO2 on the system.

Newton's second law states that the force exerted on an object is equal to the mass of the object multiplied by its acceleration. To apply this principle to predict the force exerted by expelled CO2 on a system, the following steps can be followed:

Determine the mass of the expelled CO2: This can be achieved by measuring the mass of the CO2 or using known properties such as the molar mass of CO2 and the quantity of CO2 expelled.

Calculate the acceleration of the CO2: The acceleration can be determined by considering the forces acting on the CO2. In this case, the main force acting on the CO2 would be the expulsion force. Other factors such as air resistance can be taken into account if necessary.

Multiply the mass by the acceleration: Once the mass and acceleration are determined, multiply them together to obtain the force exerted by the CO2 on the system. The unit of force is typically Newtons (N).

By following this method and applying Newton's second law, it is possible to predict the force exerted by the expelled CO2 on the system. It is important to ensure accurate measurements and consider all relevant forces to obtain a reliable prediction.

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Remember the equation for the induced voltage, when everything
is constant except the magnetic field.
[ Submit Answer Incorrect. Tries 1/12 Previous Tries
Calculate the magnitude of the current induce
OT A circular conducting loop of radius 21.0 cm located in a region of homogeneous magnetic field of magnitude 0.900 T pointing perpendicular to the plane of the loop. The loops connected in series wi

Answers

The magnitude of the current induced in the circular conducting loop is 0.00536 A

The magnitude of the current induced in the circular conducting loop can be calculated using the formula; i = ε/R

Where, ε is the induced EMF,

R is the resistance of the conducting loop

Given,

Radius of the circular conducting loop, r = 21.0 cm = 0.21 m

Magnetic field, B = 0.900 T

Number of loops, N = 1

Resistance, R = 5.00 Ω (since the loops are connected in series)

Now, we need to calculate the induced EMF, ε;ε = N(dϕ/dt)

where, dϕ/dt is the rate of change of magnetic flux dϕ/dt = Bπr²/dt= πr²(dB/dt)

Substituting the given values, ε = Nπr²(dB/dt)= (1) × π(0.21 m)²(d/dt(0.900 T))= 0.0268 V

Substituting the values of ε and R,

we get;i = ε/R= 0.0268 V / 5.00 Ω= 0.00536 A

Therefore, the magnitude of the current induced in the circular conducting loop is 0.00536 A.

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show how three identical 6 resistors must be connected tho have the following effective resistance values 9 and 4 ohms​

Answers

Answer:

connect two 9 ohms resistance in series now it becomes 18 ohm

If an object is moving in uniform circular motion, its period is defined by which one of the following quantities?
a) the speed of the object
b) the centripetal acceleration of the object
c) the number of revolutions the object makes each second
d) the time interval for the object to make one revolution
e) the displacement of the object

Answers

The period of an object in uniform circular motion is defined by the time interval for the object to make one revolution (option d).


In uniform circular motion, the period (T) of an object is defined as the time taken for the object to complete one full revolution or one full cycle. This is also known as the time period of the object's motion.

So, if an object is moving in uniform circular motion, its period is defined by the time interval for the object to make one revolution.

In other words, the period of an object in uniform circular motion is the time it takes for the object to go around the circle once.

Therefore, the correct answer is option d) the time interval for the object to make one revolution.

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A ferry boat is 4.0 m wide and 6.0 m long. When a truck pulls onto it,
the boat sinks 4.00 cm in the water, What is the weight of the boat?

Answers

Should the question say “what is the weight of the truck”? :)
I can then answer it. There is no information to find the weight of the boat ;)

which mechanical layer of the earth is plastic and completely solid?

Answers

The mechanical layer of the Earth that is both plastic and completely solid is the asthenosphere, which is a part of the Earth's upper mantle that behaves in a plastic manner due to high pressure and temperature conditions, allowing for slow flow and deformation of the material.

What is the mechanical layer of the Earth that is both plastic and completely solid?

The mechanical layer of the Earth that is both plastic and completely solid is the "asthenosphere." The asthenosphere is a part of the Earth's upper mantle, and it behaves in a plastic manner due to the high pressure and temperature conditions. While it is not liquid, its solid-state allows for the slow flow and deformation of the material, giving it its plastic characteristics.

The asthenosphere is a part of the Earth's upper mantle that lies directly below the lithosphere, which consists of the Earth's crust and the uppermost portion of the mantle.

The asthenosphere is made up of solid rock, but it behaves in a plastic manner due to the high pressure and temperature conditions that exist at this depth.

The solid-state of the asthenosphere allows for the slow flow and deformation of the material over long periods of time, giving it its plastic characteristics.

The asthenosphere is responsible for the movement of tectonic plates and the formation of volcanoes, making it an important component of the Earth's geological processes.

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The captain of a small plane starts his journey by proceeding east. The speed of the plane with respect to still air is 180 km/h. A sudden north wind starts to blow at a constant speed of 63.0 km/h. What is the speed of the plane relative to the ground if no action is taken by the pilot? km/h 10. b) As seen by people on the ground, what is the angle made between the direction of motion of the plane with repect to the east?

Answers

The speed of the plane relative to the ground, without any action taken by the pilot, is approximately 191.2 km/h. As seen by people on the ground, the angle made between the direction of motion of the plane with respect to the east is approximately 18.9 degrees.

To determine the speed of the plane relative to the ground, we can use vector addition. The speed of the plane with respect to still air is given as 180 km/h, and the north wind blows at a constant speed of 63.0 km/h.

1. Speed of the plane relative to the ground:

To find the speed of the plane relative to the ground, we need to calculate the resultant vector of the plane's velocity and the wind's velocity. This can be done using the Pythagorean theorem:

Resultant speed = sqrt((180 km/h)² + (63.0 km/h)²)

                 = sqrt(32,400 km²/h² + 3,969 km²/h²)

                 = sqrt(36,369 km²/h²)

                 ≈ 190.78 km/h

Therefore, the speed of the plane relative to the ground, without any action taken by the pilot, is approximately 190.78 km/h.

2. Angle made with respect to the east:

To find the angle made between the direction of motion of the plane with respect to the east, we can use trigonometry. The angle can be calculated as the inverse tangent of the wind's velocity (north) divided by the plane's velocity (east):

Angle = arctan((63.0 km/h) / (180 km/h))

       ≈ arctan(0.35)

       ≈ 18.9 degrees

Therefore, as seen by people on the ground, the angle made between the direction of motion of the plane with respect to the east is approximately 18.9 degrees.

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Which is the best explanation of his results?
the heating changed some of the sample to gas, causing the mass to decrease without breaking down the
sample. therefore, the original sample is a compound.
the appearance stayed the same, showing that the sample was not broken down by heating. therefore, the
original substance is an element.
o the mass decreased during heating and some of the impurities escaped. therefore, the original substance is
an element.
the chemical reaction with acid changed, showing that the sample was broken down by heating. therefore, t
original substance is a compound.

Answers

The original sample is a compound.

Based on the given explanation, the best explanation of his results would be The heating changed some of the sample to gas, causing the mass to decrease without breaking down the sample. Therefore, the original sample is a compound.

This is because the mass of the sample decreased, which indicates that some portion of the sample was converted into gas. This suggests that the original sample is a compound that can decompose into its constituent elements upon heating, rather than being an element that is not affected by heating. Additionally, the fact that the appearance of the sample did not change suggests that the substance did not break down into smaller components, further supporting the idea that the original sample was a compound rather than an element.

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Speed and velocity
Number 1-5​

Speed and velocity Number 1-5

Answers

10 m/s12.5 m/s20 m/s8.667 m/s 50 seconds

Average speed = total distance covered/ total time taken

here on the graph y-axis is represented as distance and x-axis is showing time

So for the average speed of Train (line A)

total distance covered (d) = 1500 m

total time taken to reach that distance (t) = 150 s

so by a simple formula

d/t1500/15010 m/s

For the average speed of  Car (line B)

Total distance covered (d) = 1500 m

total time taken to reach that distance (t) = 120 s

so by

d/t1500/12012.5 m/s

For Maximum speed of roller- coaster (LineC)

So in the time between 70-80 seconds, it has the highest slop which shows the speed maximum at that time

In that 10 seconds, it covered 200 meters which shows its maximum speed which is

d/t200/1020 m/s

For the average speed of a Roller- coaster (line C)

Total distance covered (d) = 1300 m

total time taken to reach that distance (t) = 150 s

Speed = d/t1300/1508.667 m/s

For the Train to Stoped at a station we can see from 40 seconds to 90 Seconds train has covered almost 0 distance which clearly shows that it was stopped which is 90-40= 50 seconds.

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the form of solid waste recycling in which the energy value of combustible waste materials is recovered is termed composting.

Answers

This statement is incorrect. The correct form of solid waste recycling in which the energy value of combustible waste materials is recovered is called "waste-to-energy" or "energy recovery."

Composting is a different form of solid waste recycling that involves the biological decomposition of organic materials to create a nutrient-rich soil amendment.

Here is a step-by-step explanation of the correct process:

Waste-to-energy (WTE) facilities receive solid waste, typically municipal solid waste, which is then sorted to remove recyclable materials such as plastics, metals, and paper.

The remaining waste is then burned in a specially designed furnace, called an incinerator, at high temperatures to create steam.

The steam drives turbines, which generate electricity that can be sold to the grid.

In addition to electricity generation, WTE facilities also recover the heat generated by the incineration process to provide heat to nearby buildings or industries.

The remaining ash from the incineration process can be used as a construction material, such as for roadbeds or building foundations.

WTE facilities are highly regulated and must meet strict emissions standards to ensure that the air and water quality in surrounding communities is not negatively impacted.

Overall, WTE is a form of solid waste recycling that can provide both energy generation and waste reduction benefits, while also reducing the need for landfill space.

Composting, on the other hand, is a separate process that involves the natural decomposition of organic waste materials to create a valuable soil amendment for use in agriculture and landscaping.

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an object is 14.0 cm in front of a concave spherical mirror, and the image is 5.00 cm in front of the mirror. what is the focal length of the mirror? please give your answer in units of cm.

Answers

The focal length of the concave spherical mirror is -10.0 cm. To find the focal length of the concave spherical mirror, we can use the mirror equation:

1/f = 1/d_o + 1/d_i
Where f is the focal length, d_o is the object distance, and d_i is the image distance.
From the problem, we know that:
d_o = 14.0 cm (the object is 14.0 cm in front of the mirror)

d_i = -5.00 cm (the image is 5.00 cm in front of the mirror, and since it is on the same side as the object, we use a negative sign)

Plugging these values into the mirror equation, we get:

1/f = 1/14.0 cm + 1/-5.00 cm
Simplifying the equation, we get:
1/f = -0.0714 cm^-1
Multiplying both sides by f, we get:

f = -14.0 cm / 0.0714 cm^-1

f = -196 cm

However, the negative sign indicates that the mirror is concave. Since a concave mirror has a negative focal length, we need to take the absolute value of f to get the final answer:
f = 10.0 cm
Therefore, the focal length of the concave spherical mirror is -10.0 cm (or 10.0 cm, taking the absolute value), which means that the mirror converges incoming light rays to a point 10.0 cm away from the mirror.

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why do think chopping of wood is a physical change but burning of wood is a chemical change

Answers

Answer:   Burning of wood is a chemical change while cutting of wood is a physical change because during burning, new substances are formed. After burning, we cannot get original substance, (i.e. wood) back. Cutting of wood into small pieces is a physical change because no new substance is formed.

monochromatic light from a distant source is incident on a single slit that is 0.75 mm wide. on a screen that is 2.0 meters away, the distance from the central maximum brightness of the resulting diffraction pattern to the first minimum (or dark band) is 1.35 mm. what is the wavelength of the light?

Answers

The wavelength of light is 555.55 nm.

Monochromatic light

Monochromatic lights are single-wavelength light, where mono refers to a single, and chroma means color. Visible light of a narrow band of wavelengths is classified as monochromatic light. It features a wavelength within a short wavelength range.

With the screen locations of the dark fringe of order m at

\((y_{dark} )_{m}\) = L tanФ\(_{m}\) ≈ L sinФ\(_{m}\) = m (λL/a)  

for m = ±1, ±2, ±3......

the width of the central maximum is

Δy\(_{central maximum}\) = (y\(_{dark}\))\(_{m =+1}\) - (y\(_{dark}\))\(_{m-= -1}\) = 2(λL/a)

So,

λ = a(Δ y\(_{central}\))/ maximum = (0.75 ×\(10^{-3}\)) ( 2×\(10^{-3}\))/ 2(1.35)

                                           = 1.5× \(10^{-6}\) / 2.7

                                            =  0.555× \(10^{-6}\)

                                            = 555.55 ×\(10^{-9}\)

                                            = 555.55nm

Therefore the wavelength of light is 555.55nm.

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red light (660 nm) falls on a single slit (0.490 mm width) and makes a diffraction pattern on the wall 1.10 m away. (a) what is the location of the first dark fringe?

Answers

The location of the first dark fringe is 1.482 x 10⁻³ m.

What is the location of the first dark fringe?

The location of the first dark fringe is calculated by applying destructive interference formula as shown below.

a tan (θ) = m λ

a ( Y / L ) = m λ

aY = mλL

Y = mλL / a

where;

Y is the location of the dark fringeλ is the wavelengthL is the length of the screena is the width of the slitm is the first dark fringe value = 1

The location of the first dark fringe is calculated as;

Y = (1 x 660 x 10⁻⁹ x 1.1) / (0.49 x 10⁻³)

Y = 1.482 x 10⁻³ m

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Which theory of plate movement relies on the weight of subducting crust?

Answers

Slab Pull  theory of plate movement relies on the weight of subducting crust.

What is slab pull?

A cold, dense oceanic plate that is falling into the mantle as a result of its own weight is said to be exerting a slab pull. According to the hypothesis, the oceanic plate sinks into the mantle because it has a higher density than the hotter mantle underneath it. Subduction is the process through which a tectonic plate descends into the mantle.

One sort of convergent boundary where two tectonic plates are clashing is a subduction zone. There may be divergent boundaries between two oceanic plates.

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Where does the force come from that propels a rocket forward?

Answers

Answer:

Newtons law of equal and opposite reactions

Explanation:

This is my best guess I'm sorry if it's not helpful

When dribbling you should?
a. Use both feet.

b.Use frequent small touches of the ball.

C.Protect the ball with your body.

D. All of the above.

Answers

D all of the above (:

Assume that a scale is in an elevator on Earth.
what force would the scale exert on a 53-kg person
standing on it during the following situations?
(use Fnet = ma and F = mg and g = 10m/s^2)
a. The elevator moves up at a constant speed.
b. It slows at 2.0 m/s^2 while moving upward.
C. It speeds up at 2.0 m/s^2 while moving downward.
d. It moves downward at a constant speed.
Blank 1:
Blank 2:
Blank 3:

Assume that a scale is in an elevator on Earth.what force would the scale exert on a 53-kg personstanding

Answers

★ Remember :

The reading of scale of a man in an elevator :

When the elevator moves upward with acceleration a, R = m(g + a)When the elevator moves downwards with acceleration a , R = m(g - a)When the elevator falls freely, we take a = g so, R = m(g - g) = 0When the lift is at rest or moves with uniform velocity, a = 0, so R = m(g - 0) = mg

A). The elevator moves up at a constant speed\(.\)

∴ Acceleration of elevator = 0

➠ R = mg

➠ 53 × 10

➠ R = 530N

B). It slows at 2m/s² while moving upward.

∴ Acceleration of elevator = -2m/s²

[Negative sign shows that speed decreases with time]

➠ R = m(g + a)

➠ R = 53(10 + (-2))

➠ R = 53 × 8

➠ R = 424N

C). It speeds up at 2m/s² while moving downward.

∴ Acceleration of elevator = 2m/s²

➠ R = m(g - a)

➠ R = 53(10 - 2)

➠ R = 53 × 8

➠ R = 424N

D). It moves downward at constant speed.

∴ Acceleration of elevator = 0

➠ R = mg

➠ R = 53 × 10

➠ R = 530N

Hope It Helps!

(a) When the elevator moves up with a constant speed, the force on the scale is 519.4 N.

(b) When the elevator slows down at 2 m/s² while moving up,  the force on the scale is 625.4 N

(c) When the elevator speeds up at 2 m/s² while moving down, the force on the scale is 413.4 N.

(d) When the elevator moves down at constant speed, the force on the scale is 519.4 N.

The given parameters;

mass of the person , m = 53 kg

The force that scale must exert on the person is calculated as follows;

F = mg + ma

F = m(a + g)

(a)

When the elevator moves up with a constant speed, the acceleration is zero.

F = m(0 + g)

F = mg

F = 53 x 9.8 = 519.4 N

(b)

When the elevator slows down at 2 m/s² while moving up;

F = m(a + g)

F = 53(2 + 9.8)

F = 625.4 N

(c)

When the elevator speeds up at 2 m/s² while moving down;

F = m(g - a)

F = 53(9.8 - 2)

F = 413.4 N

(d)

when the elevator moves down at constant speed;

F = m(g - a)

F = 53(9.8 - 0)

F = 519.4 N

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Which is a unit of momentum?

A) N-m/s
B) kg-m/s
C) kg-m/s2
D) N-m/s2


please hurry i need help asap, will mark brainliest

Which is a unit of momentum?A) N-m/sB) kg-m/sC) kg-m/s2D) N-m/s2please hurry i need help asap, will mark

Answers

Answer:

unit of momentum is kgm/s2

The unit for momentum can be Newton-second (Ns). In the CGS system, if the mass is in grams and the velocity in centimeters per second, then the unit of momentum will be gram-centimeters per second (g⋅cm/s).

What is momentum ?

"Momentum, product of the mass of a particle and its velocity. Momentum is a vector quantity; i.e., it has both magnitude and direction. Isaac Newton's second law of motion states that the time rate of change of momentum is equal to the force acting on the particle. See Newton's laws of motion."

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what is the minimum wavelength of light absorbed by germanium which has a band gap energy of 0.67 ev? provide a numerical answer in micrometers.

Answers

The minimum wavelength of light absorbed by germanium with a band gap energy of 0.67 eV is approximately 1.234 μm (micrometers).

To calculate the minimum wavelength of light absorbed by germanium which has a band gap energy of 0.67 ev, we can use the relationship between energy and wavelength given by Planck's equation:

E = hc / λ

where E is the energy of a photon, h is Planck's constant (approximately 6.626 × 10^(-34) J·s), c is the speed of light in a vacuum (approximately 3.00 × 10^8 m/s), and λ is the wavelength of light.

The band gap energy (Eg) of germanium is given as 0.67 eV.

We need to convert the electronvolts (eV) to joules (J) before proceeding with the calculation.

1 eV = 1.602 × 10^(-19) J

- Band gap energy of germanium (Eg) = 0.67 eV = 0.67 × 1.602 × 10^(-19) J

Now, rearranging the equation to solve for wavelength (λ):

λ = hc / E

Substituting the values:

λ = (6.626 × 10^(-34) J·s * 3.00 × 10^8 m/s) / (0.67 × 1.602 × 10^(-19) J)

Calculating the numerical value:

λ ≈ 1.234 μm

Therefore, the minimum wavelength of light absorbed by germanium with a band gap energy of 0.67 eV is approximately 1.234 μm (micrometers).

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what is the electric flux through a sphere that is concentric with the cubic charge distribution that has a radius rr

Answers

The net electric flux is determined by Gauss's law as follows: = Q/, where Q is the net charge inside of the sphere. As a result, the flux is given by = 1/(8.8510-12) = 1.13105 Nm2/C.

What are the many kinds of electric flux?

Electric flux: The term "electric flux" denotes the total number of electric field lines that move through a given area in a certain amount of time. Electric flux is equal to the product of the electric field, the surface area, and the angle formed by the intersection of the electric field and the surface area. ϕ E = E → . A → Magnetic flux: The number pf magnetic fields that flow through a specific area is referred to as magnetic flux.

Flux and electric flux: what are they?

The net charges that are present inside the conducting material due to the permittivity of space are equivalent to the electric flux, while the total magnetic field lines that penetrate the material's surface area are equivalent to the magnetic flux. Due to the electric field, the electric flux is created.

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A water-balloon launcher with a mass of 2.2 kg is suspended on a wire. It
fires a 0.85 kg balloon to the north at a velocity of 13.0 m/s. What is the
resulting velocity of the launcher if the net force on the launcher is equal to
the reaction force?
A. 5.0 m/s south
B. 33.6 m/s south
C. 5.5 m/s north
D. 6.3 m/s south

Answers

Answer:

5.0 m/s south.

Just did it.

Hope This Helps!

Answer:

5.0 m/s south

Explanation:

How far did Michael Phelps swim, if he swam at a speed of 10m/s in 30 seconds?

Answers

Answer:  his total speed would be 3 seconds

Explanation: because if you mulimply 10 x 3 you get 30 meaning that your answer would be 3

most neutral atoms of fluorine have an atomic mass of 19 amu and an atomic number of 9. what are these atoms composed of

Answers

Answer:

An atom of fluorine has the atomic number 9, and its mass number is 19 amu. Which of the following shows a neutral atom of fluorine? 16 protons and 14 electrons.

Explanation:

ITs 16 protins and 14 ELECTRONS

Answer:

Answer is 9 Protons, 10 Neutrons, and 9 Electrons

Explanation:

A.P.E.X

Look at the graph. What is the slope of the line?

Look at the graph. What is the slope of the line?

Answers

Answer:D

Explanation: you’re going in a downward direction. Consider rise/run.

The use of magnetic fields to control charged particles in machines such as tokamaks and particle accelerators is called which of the following? Select one:a.magnetic inductionb.electromotive force c.magnetic resonanced.magnetic containment

Answers

Used in generators and electric motors, electromagnetic induction explains how a changing magnetic field can produce an electric current and, conversely, how an electric current generates a magnetic field around it. The most accurate option is:

a.

Which name is given to the force that stretches the spring with a metal that weights it down

Answers

Answer:

gravity

Explanation:

ok what i understand from your query is that a spring balance with a metal piece attached to it is weighing it down, a spring balance is measured in newtons (f=ma), the acceleration part is gravity (-9.81 m/s^2). The metal piece is attached to the string.

hope this answers your question and please take my answer with a grain of salt and refer to some webpages or videos

If you were in a pool or ocean, what could you say about the amount of energy in a wave and the amptitude

Answers

Answer:

The amount of energy in a wave and the amplitude depends on the force applied.

Explanation:

The amount of energy in a wave is directly related to the amplitude means if the the amount of energy in a wave increases, the amplitude of that wave also increases whereas if the the amount of energy in a wave decreases the amplitude of the wave also decreases. If you jump into the pool from a higher elevation, increase occur in the amount of energy in a wave and also higher the amplitude while on the other hand, slower movement in the pool leads to smaller wave energy and lower amplitude.

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