Given that the temperature change observed is 11.5 c when 4.436 g of naoh are added to 150.0 ml of water. what is the heat energy in kj that is produced?

Answers

Answer 1

The heat energy in kj that is produced is 7.21kj  given that the temperature change observed is 11.5 c when 4.436 g of naoh are added to 150.0 ml of water

It is given that 4.436g is the mass of NaOH. The density and volume of water it has been added to was also given.

We need to convert the water's volume to mass

Density = mass / volume

Thus, mass = density * volume

150.0mL H2O * (1.000 g/mL) = 150.0 g H2O.

Now simply add the two masses: 150g + 4.436g = 154.436g

Q = mcdT

Q = heat added or removed

m = mass of substance = 154.436g

c = specific heat of this solution is 4.06j/g C

dT = change in temperature

Q = 154.436g * 4.06 * 11.5

Q =7,210.62J

Q = 7.21kj

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Related Questions

A tensile test was conducted on a mild steel bar. the diameter and the gauge length of bat was 3cm and 20cm respectively. the extension was 0.21mm. what is the value to strain?

Answers

The value to strain  is 0.00105.

When an object or medium is stressed, it deforms. Strain is the number that describes this distortion (deformation is experienced by objects or physical medium as a result of external forces—for). Strain is expressed as a fractional change in length (when under tensile stress), volume (when under bulk stress), or shape (under shear stress). As a result, strain is a dimensionless quantity. Tensile strain is strain produced by tensile stress, bulk strain (or volume strain) is strain generated by shear stress, and shear strain is strain induced by shear stress.

Strain = changes in length/ Original length

Strain = dL/L

= 0.21/200

= 0.00105

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PLEASE SOMEONE EXPLAIN THIS :(

Answers

The force constant of the spring is calculated as 0.57 N/cm.

What is Hooke’s law?

Hooke’s law states that the force that acts on an elastic substance is directly proportional to the extension as long as the elastic limit is not exceeded. We know that the statement of Hook’s law can only apply to an object when the object is still within the range of elasticity. If the object has reached the point where it has become plastic, that is, the  object has completely lost all of its elasticity, then  we could say that the Hook’s law can not hold in such an instance.

Mathematically, we could write;

F = Kx

F = force that causes the stretching of the object

K = the force constant

X = the extension.

We know that in the plot of the force against the extension, the slope is the force constant. Taking two points on the graph, it is possible to obtain the force constant as follows;

K = 2 – 0/3.5 – 0

K = 0.57 N/cm

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if a bicyclist, with an initial speed of zero, steadily gained speed until reaching a final speed of 26m/s, how far would she travel during this race?

Answers

Answer: V^2=u^2 + 2* a* s

V is final velocity.

u is initial velocity.

a is acceleration.

s is distance.

0^2=5^2 + 2 *a*3

A ball rolls from x = 10 m to
x = -25 m in 2.5 seconds. What was
its average velocity?
(Units = m/s)

Answers

The average velocity of the ball is - 14 m / s if it rolls from x = 10 to x = - 25 in 2.5 seconds.

We know that,

v = Δd / t

where,

v = Average velocity

Δd = Displacement

t = Time taken

Given that,

t = 2.5 sec

Δd = - 25 - 10

Δd = - 35 m

v = - 35 / 2.5

v = - 14 m / s

Average velocity is the average value of velocity from the starting point to ending point in a given amount of time.

Therefore, the average velocity of the ball is - 14 m / s

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with what minimal horizontal velocity must the cliff divers leave the top of the cliff is they are to miss the rock?

Answers

14.8m/s is  minimal horizontal velocity must the cliff divers leave the top of the cliff is they are to miss the rock.

Ledge divers in Acapulco leap into the water from a 36-meter-high cliff. A rock protrudes 10.4 meters horizontally from the water, level. 9.8 m/s2 is the acceleration of gravity. If the cliff divers are to miss the rock, they must depart from the top of the cliff with a minimal horizontal velocity.

from above statements, we assume that

there is no initial vertical velocity, then we calculate the time it takes to reach the water, then divide the horizontal distance by that time to get the minimum required horizontal speed.

h=gt^2/2

h= 36 m

t = [tex]\sqrt{2h/g}[/tex]

put h = 36 m g = 9.8 m/s^2

t=2.7 second

Then the minimum required horizontal velocity is

v = d/t

by putting value

v= 10.4 m/2.7 s

v=14.8m/s

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If net work is done by a system containing an ideal gas, the sign of is _____ according to convention, and represents a(n) _____ in the volume and a(n) _____ in the internal pressure of the gas.

Answers

If net work is done by a system containing an ideal gas, the sign of is negative according to convention, and represents a(n) decrease in the volume and a(n)  decrease By convention, in the internal pressure of the gas.

A theoretical gas known as an ideal gas is made up of several randomly moving point particles and only interacts through completely elastic collisions.

There are two equations of state that can be used to describe the classical thermodynamic characteristics of an ideal gas: The equation of state for an ideal gas, as determined by: Absolute temperature is denoted by T.

The ideal gas law is a development of the gas laws that were found through experiment. It may also result from analysis of microscopic factors. As a result, if we shift the ideal gas law's pressure, volume, and temperature onto the same side, we obtain This demonstrates that as long as a gas's mole (or molecule) count stays constant, its amount will not change.

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Represent each of the following quantities with combinations of units in the correct si form, using an appropriate prefix: (a) mm-mn (b) mg/mm (c) km/ms (d) kn/(mm)2

Answers

The international system of units is also known as SI units. It was introduced to remove the confusion between many units. According to standard international form, the SI units of various quantities are listed below:

Mass = kg

Length = m

Time = s

Force = N

To obtain the SI units of the following dimensions, they must be converted to universal standard by expressing them by the given relations:

mm-mN = ×10-3 * x10-3 = 1 x10-6 N.m

mg/mm = ×106 kg /10-3m = 1×109 kgm-1

km/ms = ×103 m /x10-3 s = 1×106 ms-1

kN/(mm)2 = ×103 / ×10-3 = 1×106 Nm-2

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Marcus performed an investigation and collected data. He wants to display his data on a graph. He has decided to use a line graph to show the data.

Which data did he most likely collect during his investigation?

Answers

The data which Marcus most likely collected during his investigation is a quantitative data.

What is a quantitative data?

A quantitative data is also referred to as a numerical data and it can be defined as a data set that is primarily expressed in numbers only. This ultimately implies that, a quantitative data (numerical data) simply refers to a data set consisting of numbers rather than words.

The types of graph.

In Science, there are different types of graph and these include the following:

Scatter plotBar graphPie chartDot graphHistogramLine graph

What is a line graph?

A line graph is sometimes referred to as scatter chart, scatter plot, scatter diagram or scattergram and it can be defined as a type of graph which is used for the graphical representation of the values of two (2) variables in a quantitative data, with the resulting points showing any association (correlation) between the data set.

In this context, we can reasonably infer and logically deduce that the data which Marcus most likely collected during his investigation is a quantitative data because a line graph is generally used to represent quantitative data.

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Imagine a simple spring, a simple harmonic oscillator where where the mass is 1 kg and the spring constant is 10 N/m.

The angular frequency would be around 3.162 and frequency would be 0.503 (I think). I was doing a question and the question said if the mass of this system gets increased with a factor of for, so for a 4 kg, how does the frequency change?

I calculated it to be 2.4834 but the answer said it will decrease to 1/2 of its original value. How can it decrease when it has clearly have increased from 0.503 to 2.4834? Did I calculate wrong?

Note: I might have calculated the frequencies wrong, steps of how to do it will be appreciated as well.

Answers

When the mass is increased by 4, the frequency would decrease by a factor of 2 hence we have 0.795 Hz.

What is the spring constant?

We know that a simple harmonic motion is a motion that is directed towards the center of the motion. The acceleration has the center as its direction.

We must first be able to obtain the angular velocity and then use it to obtain the velocity of the body that is undergoing the simple harmonic motion.

Now, we have;

ω = √k/m

ω = angular velocity

k = spring constant

m = mass of the object

ω = √10 N/m/1 kg

ω = 10 rad/s

And

ω = 2πf

f = ω/2π

f = 10 rad/s 2 * 3.14

f = 1.59 Hz

If we increase the mass by 4, the frequency would decrease by a factor of 2 hence we have 0.795 Hz.

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what is the velocity between 0s & 5s. (picture is given) Please assist (will give branliest)

Answers

Answer: the velocity is -2

Explanation: good luck don't think its wrong everyone calls me the human calculator

A solid piece of lead has a mass of 29.92 g and a volume of 2.68 cm3. from these data, calculate the density of lead in si units

Answers

The solid pieces of lead with a mass of 29.92 g has a density of 11,164 Kg/ m3.

To find the density the given values are,

v = 2.68 cm3

m = 29.92 g

What is density?

The density is a mass of a unit volume of a material substance. It is a physical quantity that expresses the ratio of the body mass to the volume it occupies.

Density is a scalar quantity.

The unit of density is kg/m³.

The density formula and the procedure we will use is:

ρ = m/v

Where:

v= volume

ρ= density

m= mass

Applying the density formula, we get:

ρ = m/v

ρ = 29.92 g/ 2.68 cm3

ρ(g/cm3) = 11.164 g/cm3

Converting the density from (gram g /cm3) to (kilogram/m3), we get:

11.164 g/cm3 * (1 kg/1000g) * (1000000 cm3/1 m3) = 11,164 Kg/ m

11.164 g/cm3 is equivalent to 11,164 Kg/ m3

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At an international auto race, a race car leaves the pit after a refueling stop and accelerates uniformly to a speed of 75 m/s in 9 s to rejoin the race

Answers

The acceleration of the car after leaving the pit to reach a speed of 75 m / s in 9 s is 8.3 m / s²

a = v / t

a = Acceleration

v= Velocity

t = Time

v = 75 m / s

t = 9 s

a = 75 / 9

a = 8.3 m / s²

Acceleration is the rate of change of velocity with respect to time. It is denoted as a.

The given question is incomplete. The complete question is:

At an international auto race, a race car leaves the pit after a refueling stop and accelerates uniformly to a speed of 75 m/s in 9 s to rejoin the race. What is the race car's acceleration during this time?

Therefore, the acceleration of the car after leaving the pit is 8.3 m / s²

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During a basketball game, a player jumps straight up to dunk a ball. The news reports his hang time is 3 seconds. Neglecting air resistance, how high would this mean the player jumped? Do you think this is an achievable height? Give your reasons and show work

Answers

The height through which the player will jump is determined as 44.1 m.

Height through which the player will jump

The height through which the player will jump at the given time is calculated as follows;

h = vt + ¹/₂gt²

where;

v is the initial velocity of the basketball player

t is the time of motiong is acceleration due to gravity

Substitute the given parameters and solve for the height jumped by the player.

h = 0 + ¹/₂(9.8)(3²)

h = 44.1 m

Thus, the height through which the player will jump is determined as 44.1 m.

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Your friend is sitting on another train traveling west at 29 m/s. as you walk toward the back of your train at 3.7 m/s, what is your velocity with respect to your friend?

Answers

The relative velocity with respect to my friend is 32.7 m/s.

We need to know about relative velocity to solve this problem. The relative velocity depends on the object and observer velocity. It can be written as

v = vo ± v'

where v is relative velocity, vo is object velocity and v' is observer velocity.

From the question above, we know that

vo = 29 m/s

v' = 3.7 m/s

The velocity will be added each other because the direction of the observer is different from the object.

v = vo + v'

v = 29 + 3.7

v = 32.7 m/s

Hence, the relative velocity with respect to my friend is 32.7 m/s.

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A family is planning a ski vacation. The local meteorologist predicts that a cold front will move in. What weather can they expect for the trip? (1 point)

A.severe rain


B.hot and sunny

C.severe weather as the front moved through, temperatures would drop


D.warm air will cool and condense, possibly light snow

Answers

The prediction of the meteorologist, the family is to expect a severe rain as they embark on the vacation. Option A

What is weather?

The term climate refers to the average weather condition of a place over a long period of time. The weather in a place changes from time to time. The weather of a place could be forecasted by a meteorologist. The meteorologist is a scientist that has been trained in the science of how to interpret weather patterns and also make predictions.

The meteorologist can be able to use the tools of the profession to discern what could be the weather condition of a place at any given point in time and announces the same by the process of giving a weather forecast.

Hence, the local meteorologist predicts that a cold front will move in; this implies that there is a cooler mass of air near the surface.

This implies that from the prediction of the meteorologist, the family is to expect a severe rain as they embark on the vacation.

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what is position vs time

Answers

Answer: A position- time graph shows how far an object has traveled from its starting position at any given time since it started moving. The steeper the line is, the greater the slope of the line and the faster the object's motion is changing

Explanation:

Given a long text string t and one shorter pattern string s, find the first occurrence of s in t (if any). what is the complexity of your algorithm?

Answers

The complexity of your algorithm is O(nm).

Algorithmic complexity is a measure of how long an algorithm would take to complete given an input of size n. If an algorithm has to scale, it should compute the result within a finite and practical time bound even for large values of n. For this reason, complexity is calculated asymptotically as n approaches infinity.

Now,

Text: T

Pattern: s

Algorithm   String Matching(T,s)

n=len(T)

m=len(s)

for i = 0 to n-m

j=0

while j<m and s[j]=T[ i + j]

j=j+1

if j==m

  return i

end if

end while

return -1

end for

the complexity of your algorithm: O(nm)

reason: nested loop runs one run (n-m) times and second run m times. so it becomes (n-m)(m) = (nm-m2) = O(nm)

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What is the electric potential 52.92 pm from a proton (the average distance between the proton and electron in a hydrogen atom)?

Answers

The electric potential from proton 52.92 pm from a proton is 27.21 V that is the average distance between the proton and electron.

DescriptionWhat does “electric potential” mean?

Electric potential is the effort required to transport a unit charge from one point to another in the presence of an electric field.

Earth is typically chosen as the reference point, but any location outside the range of the electric field charge can be used.

What does class 10’s electric potential entail?

The work required to accelerate a unit positive charge from infinity to a specific point in an electric field is known as the electric potential (or potential) at that location.

What kind of electric potential is that?

Electric potential is the amount of labor or energy that an electric charge can produce. A 1.5 V battery, for instance, has an electric potential of 1.5 volts.

Calculation

Distance from proton,

r= 52.92pm

= 52.92 x 10^(-12)

Charge on a proton

q = 1.6 x 10^(-19) C

Therefore, electric potential at distance r from a proton is

Vp = Kq/r

=Vp = (9x 10^3 x 1.6 x 10^(-19)) / 52.92 x 10^(-12) volts

Vp = 27.21 V

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A plane convex lens is made of glass ( n = 1.5) with one flat surface and the other having a radius of 20 cm. what is the focal length (in cm) of the lens?

Answers

The focal length (in cm) of the lens is 400

The distance between a lens's center and its focus is known as the focal length of a convex lens. An optical device's focal length, which is just the inverse of the system's optical power, measures how strongly/sharply the system converges or diverges light.

A plane mirror is one having a flat surface, as those found frequently in home mirrors. It has an infinite focal length. Its optical power is 0 since it does not cause light to converge or diverge.

Given:

n=1.5

R2 = 20 cm

R1= ∞ since it is a flat surface

1/f = (n-1) (1/R1-1/R2)

Substituting values,

1/f = (1.5- 1) (1/∞-1/20)

1/f = (0.5) (-1/20)

= 1/400

F=400

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Every particle of matter in the universe attracts every other particle with a force that is directly proportional to the product of the masses of the particles and inversely proportional to the square of the distance between them. True or false?.

Answers

The Law of Universal Gravitation,  states that every particle attracts every other particle in the universe with a force that is directly proportional to the product of their masses and inversely proportional to the square of the distance between their centers.

Newton's law of gravitation, states that any particle of matter in the universe draws another with pressure varying at once as the manufactured from the loads and inversely as the rectangular.

Newton, the pressure of gravity appearing between the earth and another item is at once proportional to the mass of the earth, directly proportional to the mass of the item, and inversely proportional to the square of the distance that separates the centers of the earth and the item. Gravitational steady, G is unbiased of the nature of the particle, medium among the debris, and time. Its cost is constant anywhere within the Universe.

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Is the normal force from a floor on a suitcase always equal in magnitude to the weight of the suitcase?

Answers

Yes the normal force from a floor on a suitcase always equal in magnitude to the weight of the suitcase.

What is normal force?

The part of a contact force that is perpendicular to the surface that an object encounters is known as the normal force. In this context, normal refers to perpendicular in a geometric sense rather than "usual" or "expected" as it does in everyday parlance. Gravity acts on a person standing stationary on a platform. If there weren't a countervailing force from the resistance of the platform's molecules, known as the "normal force," gravity would draw the person down toward the Earth's core.

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A light plane must reach a speed of 39 m/sm/s for takeoff. part a how long a runway is needed if the (constant) acceleration is 3.0 m/s2m/s2 ?

Answers

The runway should be 253.5m for a light plane that needs to reach a speed of 39 m/s for takeoff.

Concept of acceleration

The rate at which the speed and direction of a moving object vary over time is called as acceleration. A point or object going straight ahead is accelerated when it accelerates or decelerates.

Even if the speed is constant, motion on a circle accelerates because the direction is always shifting.

What is acceleration?

In physics, acceleration is the rate at which the velocity of an object changes in relation to time.

According to Newton’s Second Law, the sum of all forces acting on an item results in its acceleration.

Meter per second squared (m s2) is the unit of acceleration used in the SI system.

Calculation

We know from the equation,

V^2 = u^2 + 2as → 1

Here a = acceleration of the light plane

v = final velocity of the light plane

u = initial velocity of the light plane

s = length of the runway

Then we also know that

s = (v^2 - u^2) / 2a → 2

v = 39m/s

u = 0m/s

a = 3 m/s^2

Then substituting these values in equation 2,

s = (39^2 - 0) / (2x3)

s = 1521/6

s = 253.5 m

The runway needed is 253.5m long.

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If a space probe is sent into an orbit around the sun that brings it as close as 0.3 au and as far away as 5.4 au, is the orbit a circle or an ellipse?

Answers

The orbit is an ellipse for the space probe that is sent into the orbit around the sun that brings it as close as 0.3 au and as far away as 5.4 au.

Description

Kepler’s 3rd law

According to Kepler’s Third Law, the cubes of the semi-major axes of the orbits of the planets are directly proportional to the squares of the planets’ orbital periods. As an orbiting planet’s radius increases, so does the time of its orbit around the Sun.

What is the Kepler’s law equation?

T = 2πr3GME Remember that the semi-major axis of an ellipse is equal to the product of the perihelion and the aphelion divided by two. The semi-major axis (a) for a circular orbit is equal to the orbital radius.

What is the formula for Kepler’s third law?

P2 = a3, which means that the period of an orbit (P) squared is equal to Kepler’s Third Law.

Calculation

As per Kepler's law and his explanation of eccentricity,

Eccentricity = Distance to the focus/ Distance to the directrix.

According to Kepler, an elliptical orbit is a Kepler orbit with an eccentricity of less than 1 and for a circular orbit, it is exactly 0 eccentricity.

So here Eccentricity = 0.3/5.4

= 0.055

So according to this, the space probe is moving in an ellipse orbit.

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A ball is given a brief push and then is allowed to roll up a ramp. It travels 53.1 cm up the ramp before stopping and rolling back down. It takes a total of 1.34 s to roll up and back down to its initial position. What is the magnitude of the acceleration of the ball while it is on the ramp?

Answers

The magnitude of the acceleration of the ball while it is on the ramp is 2.4 m/s² approximately

What is Acceleration ?

Acceleration is the rate at which velocity changes. It is a vector quantity.

Given that a ball is given a brief push and then is allowed to roll up a ramp. It travels 53.1 cm up the ramp before stopping and rolling back down. It takes a total of 1.34 s to roll up and back down to its initial position.

Let us take the account of rolling down.

Distance s = 53.1 cm = 0.531 mTime t = 1.34/2 = 0.67 sinitial velocity u = 0

The magnitude of the acceleration of the ball while it is on the ramp can be calculated by using the below formula

s = ut + 1/2at²

Substitute all the parameters into the formula

0.531 = 0 + 1/2 × a × 0.67²

0.531 = 0.22445a

a = 0.531/0.22445

a = 2.365 m/s²

Therefore, the magnitude of the acceleration of the ball while it is on the ramp is 2.4 m/s² approximately

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A gas contracts as it cools. if it has 200 j of work done on it and it loses 106 j of heat to the surroundings, what is its internal energy change in joules? question 9 options:
a. 306
b. -106
c. 94
d. -94
e. -306

Answers

The change in internal energy of a gas as it cools is 94 J.

According to the First Law of Thermodynamics,

ΔU = q + w

Here  ΔU represents the change in internal energy

Q represents the heat added to the system

W represents the work done on the system

In the given case, work is done on the system, and heat is removed from the system.

Hence, W = 200 J AND Q= -106 J.

Putting the above values in the standard equation

ΔU = 200 - 106

ΔU = 94 J.

Hence, the change in internal energy is 94 J.

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Differentiate uniform motion and non-uniform motion with examples

Answers

Explanation:

interesting let's see it is very confusing

Answer:

See below

Explanation:

Motion as the change of position of an object with respect to time.

Uniform motion covers equal distance at an equal time interval. The velocity is constant. For example, a car traveling at 55 mph constant speed for 2 hours has uniform motion

Non-uniform motion covers unequal distance at equal time intervals. For example, in heavy traffic, a car may travel at 20mph for the first 10 minutes, then 10mph for the next 10 minutes etc. Thus velocity changes over equal time periods

A 40.80 kg keg of beer slides upright down a 2.90 m long plank leading from the back of a truck 1.20 m high to the ground. determine the amount of work done on the keg by gravity.

Answers

18 Mg/ L is the amount of work done.

It should be converted to energy in order to move an object. Energy can be transferred by the use of force. Work done refers to the amount of energy used by a force to move an object. A force must be applied in order for work to be completed, and there must also be motion or displacement in the force's direction. The amount of force multiplied by the distance moved in the force's direction is known as the work done by a force acting on an item.

Assume that the element's length at distance x from the table is dx.

Let's assume that W= M/L* dx*g(x) and that the entire work completed will take up 1/3 of the table.

W=M/L g(x)dx W=M/L g(x)dx

W= 18 MgL

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The input voltage to a transformer is 120v rms ac to the primary coil of 1000 turns. what are the number of turns in the secondary needed to produce an output voltage of 10v rms ac?

Answers

The transformer secondary turns should be 83 turns.

We need to know about the transformer to solve this problem. Transformer is a device that can increase or reduce the voltage. The changed voltage depends on the current and number of coil turns. It can be written as

Vi / Vs = Ni / Ns = Is / Ii

where Vi is input voltage, Vs is output voltage, Ni is primary turn, Ns is secondary turn, Is i output current and Ii is input current.

From the question above, we know that

Vi = 120 V

Ni = 1000 turns

Vs = 10V

By substituting the following parameters, we can calculate the secondary turns

Vi / Vs = Ni / Ns

120 / 10 = 1000 / Ns

Ns = 1000 / 12

Ns = 83 turns

Hence, the transformer secondary turns should be 83 turns.

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Suppose a rock is dropped into a well 49 meters deep. determine the amount of time t it takes for the rock to hit the bottom of the well.

Answers

It takes 3.16s to hit the bottom of the well.

Calculation

g = 9.8 m/[tex]s^{2}[/tex]

y = 9.8t m/[tex]s^{2}[/tex]

y = [tex]\frac{9.8 t^2}{2}[/tex] = 4.9[tex]t^{2}[/tex] m

When y =49, we have to find t

49 = 4.9[tex]t^{2}[/tex]

10 = [tex]t^{2}[/tex]

t = [tex]\sqrt{10}[/tex] = 3.16 s

Motion under gravity

Gravity causes a body to descend faster, and as it does, the air resistance that slows it down rises.

This keeps happening until the weight of the object and the force of air resistance are equal. The terminal velocity is the pace at which the item now falls instead of accelerating any longer.

What do you mean by motion in a gravitational field?

When an object moves, it is said to be in motion under gravity since gravity has an impact on the object’s motion.

GRAVITY is the force that pulls things downward. In actuality, gravity pulls objects toward the Earth’s center.

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Consider an incandescent lightbulb. If you wanted to turn a 10-w lightbulb into a 100-w lightbulb, how would you change the temperature of the filament inside the bulb?.

Answers

By using the blackbody radiation formula, the temperature of the filament inside the bulb is changed by a factor of 10⁰'²⁵.

We need to know about black body radiation to solve this problem. The energy radiated by a black body object is proportional to the area and the fourth power of temperature. It can be determined as

P = A . e . σ . T⁴

where P is power, A is surface area, e is emissivity, σ is Stefan Boltzmann's constant ( 5.67 x 10¯⁸ W/m²K⁴) and T is temperature.

From the question above, we know that

P1 = 10 watt

P2 = 100 watt

T1 = T1

By using the black body radiation formula, the ratio of temperature is

T1⁴ / T2⁴ = P1 / P2

Hence,

T1⁴ / T2⁴ = P1 / P2

T1⁴ / T2⁴ = 10 / 100

T1⁴ / T2⁴ = 1 / 10

T2⁴ = 10T1⁴

T2 = ⁴√(10T1⁴)

T2 = T1 x 10⁰'²⁵

Thus, the temperature of the filament inside the bulb is changed by a factor of 10⁰'²⁵.

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