Calculate the amount of energy released per gram of peanut burned

Answers

Answer 1
Use this formula
4.2 Is the specific heat capacity of water
Mass of peanut and water should be in (g)
Increase in temperature : (final - initial)
Your answer unit is in (kJ/g)
If answer wants calorie (cal), 1 cal =4.2 J .

Calculate The Amount Of Energy Released Per Gram Of Peanut Burned
Answer 2

The approximate amount of energy released per gram of peanut burned is around 106,712 J/g.

Given that the volume of water is 200.0 mL and the density of water is approximately 1 g/mL, we have:

Mass of water = 200.0 g

The heat transfer equation:

Mass of water = Volume of water × Density of water

Change in temperature = Final temperature - Initial temperature

Change in temperature = 14.2 °C

The energy released = Heat capacity of water × Mass of water × Change in temperature / Mass of peanut burned

The mass of the peanut burned is the difference between its initial and final masses:

Mass of peanut burned = Initial mass - Final mass

Mass of peanut burned = 0.609 - 0.053

Mass of peanut burned = 0.556 g

Energy released = 4.184× 200.0 × 14.2 / 0.556

Energy released = 106,712 J/g

Rounded to a more practical number, the approximate amount of energy released per gram of peanut burned is around 106,712 J/g.

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The complete question is:

A student followed the procedure of this experiment to determine the Caloric content of a Planter's cocktail peanut. The peanut studied had a mass of 0.609 g before combustion and 0.053 g after combustion. The energy released during combustion caused a 14.2 degrees C increase in the temperature of 200.0 mL of water in the calorimeter.

Calculate the amount of energy released per gram of peanut burned.


Related Questions

what is the shortest possible time in which a bacterium could travel a distence of 8.4 cm across a petri dish at a constant speed of 3.5mm

Answers

D = RT

D is 8.4 cm or 84mm, R is 3.5mm (units of time, assuming seconds for now)

84 = 3.5T

T = 24 seconds

Approximately how much matter is there in the sun?

Answers

1.989 Ă— 10^30 kg The sun consists of about 70% hydrogen, 28% helium, 1.5% carbon, nitrogen and oxygen, and 0.5% all other elements. Additionally, the sun's mass is decreasing every second as it fuses 610 million metric tons of hydrogen into 606 million metric tons of helium each second for a loss of 4 million metric tons per second.

A 70 watt light bulb is run by a 120 v circuit. how many amps does it use

Answers

Current = Power/Voltage. 70W/120v= 0.583 Amps.
Final answer:

A 70-watt bulb running on a 120-volt circuit uses approximately 0.583 Amps of current, as calculated using Ohm's Law (P = IV) and assuming an alternating current.

Explanation:

The amount of current used by a 70 watt light bulb running on a 120-volt circuit can be calculated using Ohm's Law, which states that power (P) equals voltage (V) times the current (I). In mathematical terms, P = IV. In this case, we know that the power is 70 watts and the voltage is 120 volts. So, we can use these values to solve for the current. Therefore, I = P/V = 70W/120V = 0.583 Amps.

Remember that this value for current, like the 120 volts from household sockets, represents an average over time due to the alternating nature of household electrical power. Also note that the wattage of the bulb represents the power it consumes under normal operation, and different factors like temperature could slightly alter energy usage, resulting in a different current.

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what are flask used for primarily in the lab

Answers

to measure the fluids that you will be using such as water or other chemicals if your mixing them and they have to be precise measurements

Flasks in a high school chemistry lab are primarily used for containing and mixing chemical solutions. Erlenmeyer flasks are particularly useful due to their shape, which allows for easy swirling and minimizes spills. Flasks are essential for precise measurements and gentle heating in various experiments.

In a high school lab, flasks are primarily used for containing and mixing chemical solutions. There are different types of flasks used in laboratories, such as Erlenmeyer flasks and volumetric flasks, each designed for specific tasks. Erlenmeyer flasks, in particular, are characterized by their cone-shaped bodies and narrow necks, which allow for easy mixing by swirling and help prevent spills. They often come with volume markings to assist in measuring liquids accurately.

Flasks are versatile and essential for various experiments. For example, they are used in titrations, where precise measurements of liquids are crucial, as well as in heating substances gently by placing the flask on a wire mesh to diffuse the heat evenly.

Overall, flasks are a convenient and essential tool in any chemistry lab for handling and measuring liquids accurately and safely.

Which Change will increase the yield of hydrazine?
A reducing the amount of nitrogen gas
B reducing the amount of hydrogen gas
C increasing the amount of nitrogen gas
D increasing the amount of hydrogen gas

Answers

It is option D, to increase the yield of the hydrazine one has to increase the hydrogen gas because it exceeds grams of nitrogen gas, this is done to balance the formation of hydrazine and then increase the amount of hydrogen and nitrogen. This is the change needed to perform that action.

Transfer of thermal energy due to collisions between particles is called ____

Answers

The answer is conduction

Hospital x-ray generators emit x-rays with wavelength of about 15.0 nanometers (nm), where 1nm=10−9m. what is the energy of a photon of the x-rays?

Answers

A photon is characterized by either a wavelength, denoted by λ or equivalently an energy, denoted by E. There is an inverse relationship between the energy of a photon (E) and the wavelength of the light (λ) given by the equation: E=hc/λ E=hc/λ where h is Planck's constant and c is the speed of light. The value of these and other commonly used constants is given in the constants page. h = 6.626 × 10 -34 joule·s c = 2.998 × 108 m/s By multiplying to get a single expression, hc = 1.99 × 10-25 joules-m E=hc/λ (6.626*10^-34 J*s) x (2.998×10^8m/s)/ 1.5*10^-8 m = 1.32*10^-17 J

We have that  the energy of a photon of the x-rays is

[tex]E=1.3*10^{-17}J[/tex]

From the Question we are told that

Wavelength [tex]l=15.0 nm[/tex]

Generally the equation for energy of a photon is mathematically given as

[tex]E=\frac{hc}{\lambda}[/tex]

Where

[tex]h= 6.626*10^-{34}\\\\c=3.00*10^7m.s[/tex]

Therefore

[tex]E=\frac{(6.626*10^-{34})(3.00*10^7)}{15*10^{-9}}[/tex]

[tex]E=1.3*10^{-17}J[/tex]

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When I bump the table, the coffee in my cup spilled out. Newton's _____ law explains this reaction.
1st
2nd
3rd

Answers

When I bump the table, the coffee in my cup spilled out. Newton's 1st law explains this reaction.

Answer: A) or the first option.

Answer:

Newton's 1st law explains this reaction

Explanation:

Newton's first law of motion, states that " a body at rest or uniform motion in a straight line, will continue in that state, unless acted upon by an external force.

The coffee in the cup, initially rest on the table, but the moment you bump the table, you act as an external force which distort the initial state of the coffee, making it to spill out.

Therefore, Newton's 1st law explains this reaction.

When you push a box across the floor, what does the box experience?

Cohesive friction
Kinetic friction
Static friction
Rolling friction

Answers

Since the box moves on the floor, it experiences kinetic friction.

Hope it helps:)

Answer: Option (b) is the correct answer.

Explanation:

When we push the box, it will start to move as a result it will gain kinetic energy. As kinetic energy is the energy due to the motion of particles. Also there will be some friction force acting on the box.

Cohesion means the strength of holding particles together. When there is resistance in holding particles together then it is called cohesive friction.

Static friction is a force due to which an object retains at rest.

When a body is rolling on a surface then the force which resists its motion is known as rolling friction.

Thus, we can conclude that when you push a box across the floor, the box will experience a kinetic friction.

What is the average velocity of the object between 14 and 22 seconds answer?

Answers

-0.88 m/s answer from gradpoint

A block with mass ma = 14.0 kg on a smooth horizontal surface is connected by a thin cord that passes over a pulley to a second block with mass mb = 6.0 kg which hangs vertically.determine the magnitude of the acceleration of the system.

Answers

We can assume that the horizontal surface has no friction and the pulley is massless. We can use Newton's second law to set up an equation. F = Ma F is the net force M is the total mass of the system a is the acceleration a = F / M a = (mb)(g) / (ma + mb) a = (6.0 kg)(9.80 m/s^2) / (6.0 kg + 14.0 kg) a = 58.8 N / 20 kg a = 2.94 m/s^2 The magnitude of the acceleration of the system is 2.94 m/s^2
Final answer:

To find the magnitude of the acceleration in Atwood's machine system, set up equations for the forces on each block and solve them.

Explanation:

To determine the magnitude of the acceleration of the system, we can use Newton's second law and the concept of Atwood's machine. With Atwoods's machine, the magnitudes of acceleration of the two blocks are equal. We can set up two equations for the forces on each block and solve them to find the acceleration.

For block 1, we have T - mag = maa, where T is the tension in the string and ma is the mass of block 1.

For block 2, we have mbg - T = mba, where mb is the mass of block 2 and g is the acceleration due to gravity.

By substituting constants and solving these equations, we can find the magnitude of the acceleration.

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when the television is working, 1200 joules of energy are supplied to the television every second, the useful energy transferred by the television is 720 joules every second. Calculate the efficiency of the television. Show clearly how you work out your answer.

Answers

Bentley will be monitored for food and liquid intake and a note will be sent home if he does not eat or drink 100% of hisdaily meals based on teacher observation

Final answer:

Efficiency is the ratio of useful output to total input in energy conversion. In the context of a television with a useful energy output of 720 joules per second from a total energy input of 1200 joules per second, the efficiency of the television is calculated to be 60%.

Explanation:

The efficiency of a system, such as a television, can be calculated using the formula, Efficiency = (Useful Energy Output / Total Energy Input) x 100%. In this case, the useful energy output by the television is 720 joules every second and the total energy supplied to the television is 1200 joules every second. So, to calculate the efficiency you would do:

First, divide the useful energy output by the total energy input. It would be 720J / 1200J which equals 0.6. Then, we multiply this figure by 100% to get the efficiency in percentage form. 0.6 x 100% equals 60%.

Therefore, the efficiency of the television is 60%.

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An object traveling at a 5.0 m/s east has a mass of 4.0 kg. what is the magnitude of the object’s momentum?

Answers

mass = 4.0 kg
velocity= 5.0 m/s

momentum= mass × velocity= 4.0 × 5.0 = 20.0 kg m/s

Answer:

Object's momentum, p = 20 kg-m/s

Explanation:

It is given that,

Mass of the object, m = 4 kg

Velocity of the object, v = 5 m/s

We need to find the object's momentum. It is given by ;

p = m × v

[tex]p=4\ kg\times 5\ m/s[/tex]

p = 20 kg-m/s

So, the momentum of the object is 20 kg-m/s. Hence, this is the required solution.

a construction worker ascending at 6m/s in an open elevator 42 m above the ground drops a hammer.
A. How long does it take the hammer to hit the ground?
B. How fast is it moving when it hits the ground?

Answers

Let us follow the motion of the hammer first. Because the elevator is in motion, when he drops the hammer, because of inertia, there is a slight moment when the hammer also rises with the elevator. Eventually it will reach its highest peak and drop down to the floor. So, the total time for the hammer to reach the floor would include: (1) the time for it to rise with the elevator to its highest peak and (2) the time for the free fall from the highest peak to the floor.

1.) Time for it to rise with the elevator to its highest peak:
      Hmax = v²/2g = (6 m/s)²/2(9.81 m/s²) = 1.835 m
      Time to reach 1.835 m = 1.835 m * 1 s/6 m = 0.306 s
     
     Time for the free fall from the highest peak to the floor:
      t = √2y/g, where y is the total height
      y = 1.835 m + 42 m = 43.835 m
      So,
      t = √2(43.835 m )/(9.81 m/s²) = 2.989 s

      Therefore, the total time is 0.306 s + 2.989 s = 3.3 seconds

2.) Velocity of impact of a free-falling body is:
      v = √2gy
      v = √2(9.81 m/s²)(43.835 m)
      v = 29.33 m/s
Final answer:

The hammer takes approximately 3.36 seconds to hit the ground from a height of 42m. With an initial upward velocity of 6m/s and the acceleration due to the Earth's gravity, the hammer hits the ground at a speed of approximately 39.1m/s.

Explanation:

The subject of this question is Physics, specifically dealing with the laws of motion and gravity. When the construction worker drops the hammer from an ascending elevator, the initial velocity of the hammer is the same as the speed of the elevator, which is 6m/s. However, as the hammer falls, it accelerates under gravity (taking 9.8m/s² as the acceleration due to gravity).

A. To find out how long it takes for the hammer to hit the ground, we need to solve for time (t) using the equation of motion: h = ut + 0.5gt², where h is the height (42m), u is the initial velocity (6m/s), and g is the acceleration due to gravity (9.8m/s²). Solving this equation yields a time of approximately 3.36 seconds.

B. To find out how fast the hammer is moving when it hits the ground, we use the equation v = u + gt, where v is the final velocity, u is the initial velocity (6m/s), g is the acceleration due to gravity (9.8m/s²), and t is the time taken which we calculated previously as 3.36 seconds. Solving the equation yields the speed as approximately 39.1m/s when the hammer hits the ground.

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Your town has decided to build a new power plant to replace the old coal burning plant. Suggest a renewable resource that they could use to generate power. Describe two advantages and two disadvantages of the resource you have recommended.

Answers

hmm...
dam power plant (not sure if this is considered renewable): benefits: as it creates a tourist spot bringing more money and provides electricity. 
disadvantages: restricts flow of water to farms, costs millions to build.
solar power plant: benefits: sunlight just keeps coming, produces a lot of electricity for maybe half the cost.
disadvantages: takes a large crew to maintain, mostly needs to be in an open area.
Wind farm: benefits: wind we don't have to worry about much, just blows through and turns the turbines, and can produce electricity almost 24/7.
disadvantages: unsightly, needs open space and costs a lot to build
Take your pick!

Answer: Wind power plant

Explanation:

A renewable resource is the one which can be replenished due to natural cycle like water, sunlight, forests and wind. The renewable resources are abundantly available in nature.

A old coal burning plant can be replaced by the wind power plant. This is because of the fact that wind power can produce comparably the same amount of electrical energy as that of electrical energy generated by coal burning plant.  

The advantages of using the wind power plant.

1. Wind is available at all regions of the world, the wind resource will not deplete in future.

2. Large amount of energy can be produced on a large scale.

The disadvantages of using the wind power plant.

1. Requires a large open space to construct a wind power plant.

2. The energy cannot be harnessed in bad weather conditions such as rainfall.

The force that pulls an object outward from the center of a curve is

Answers

Answer:  The centripetal force.

Explanation:
Refer to the figure below.
The centripetal acceleration of the object is
a = v²/r, directed toward the center of the circular path.
where
v = the tangential velocity
r = radius of the circular path

The centripetal force is
F = (mv²)/r

The apparent force that seems to pull an object outward from the center of a curve is known as centrifugal force, which is actually the result of inertia in a rotating frame. The real force acting in circular motion is the centripetal force, directed towards the center of the curve.

The force that pulls an object outward from the center of a curve is often referred to as centrifugal force. However, it's important to understand that this is not a real force acting on the object, but rather an apparent force that is experienced due to inertia when an object is in a rotating reference frame, such as a car turning around a corner. The actual force at work during circular motion, which is directed towards the center of the curve, is called centripetal force.

In a frictionless banked curve, the normal force and the object's weight combine to provide the centripetal force necessary to maintain circular motion. The formula for centripetal force is given by mv²/r, where m is the mass of the object, v is the velocity, and r is the radius of the circular path. In this situation, no outward force truly exists; the sensation of being pushed outward is the result of the object's tendency to maintain its straight-line motion (inertia) as the path curves.

What statement BEST describes a solid?
a. Solids have definite shape and variable volume.
b. Solids have variable shape and variable volume.
c. Solids have a definite shape and definite volume.
d. Solids have a variable shape and definite volume.

Answers

C. Solids have a definite shape and definite volume.
is the correct one.

The correct answer is C. Solids have a definite shape and definite volume

Explanation:

There are four main forms or states in which matter can exist, this includes liquid, gas, solid and plasma and each of this varies according to shape, volume, and other features. In the case of solids, this occurs when particles in the matter are close to each other and remain statics, which creates a defined shape with a definite volume, different to liquids that have a definite volume but not a definite shape or to gases that vary in volume and shape. Considering this, the statement that best describes a solid is "Solids have a definite shape and definite volume".

How does average speed relate to the distance covered and the time taken for travel?

Answers

When traveling with different speed, it's hard to count the distance because you can't use your maximum or minimum speed. Average speed is more accurate to be used to count the time taken for travel because it is count by averaging the minim and maximum speed.
By determining average speed, you can assume that your speed is constant and multiply it with the traveling time to know the distance covered.

Final answer:

Average speed is determined by dividing the distance traveled by the time of travel.

Explanation:

Average speed is calculated by dividing the distance traveled by the time of travel. It is a scalar quantity and does not have a direction associated with it.

Since a kilogram of feathers and a kilogram of lead have the same mass, how do they appear different and why?

Answers

They do have the same mass. However, “Heavy” implies we are concerned with how much force it takes to lift the object. In this case, we will find that the force needed to lift a kilo of feathers in air is slightly less than that needed to lift the kilo of lead.

The higher the density the heavier it is

Answers

that is true due to the fact that if an object weighs more than an equal volume of water, it will sink and vice-versa

draw conclusions on the relative densities of liquid water and ice . which is more dense and how do you know . what non-mathematical " proof " can you provide to support your conclusion

Answers

well ice would be less dense, as water freezes it expands which would reduce density and you can tell just by putting ice cubes in water

what is the best way to avoid overloading your boat

Answers

Final answer:

The best way to avoid overloading your boat is to ensure that the total weight does not exceed the recommended capacity. Distribute the weight evenly and keep the center of gravity low. Follow safe boating practices and prioritize everyone's safety.

Explanation:

The best way to avoid overloading your boat is to ensure that the total weight of the boat, including passengers and cargo, does not exceed the maximum recommended weight capacity. This can be determined by checking the boat's capacity plate or consulting the manufacturer's specifications. It is also important to distribute the weight evenly throughout the boat, keeping the center of gravity low to maintain stability. Finally, always follow safe boating practices and avoid overloading your boat to prevent accidents and ensure everyone's safety.

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In being served, a tennis ball is accelerated from rest to a speed of m/s. the average power generated during the serve is 2920 w. assuming that the acceleration of the ball is constant during the serve, find the force acting on the ball.

Answers

You didn't include the numerical value of speed. 

What is the frequency of a wave that has a speed of 365 m/s and a wavelength of 1.70 m?

Answers

According to my calculations, the frequency is 214.7... not rounding.

A wire with a resistance of 20 Ω is connected to a 12-V battery. What is the current flowing through the wire?

Answers

Answer : Current flowing through the wire is 0.6 A

Explanation :

Given that,

Resistance of the wire, [tex]R=20\ \Omega[/tex]

Voltage, [tex]V=12\ V[/tex]

Using Ohm's law :

[tex]V=IR[/tex]

[tex]I=\dfrac{V}{R}[/tex]

[tex]I=\dfrac{12\ V}{20\ \Omega}[/tex]

[tex]I=0.6\ A[/tex]

Hence, the current flowing through the wire is 0.6 A

The current flowing through the wire will be 0.6 A. The formula for the ohm's law is used in the given problem.

What is ohm’s law?

Ohm's law claims that the voltage across a conductor is directly proportional to the current flowing through it.

The given data in the problem is;

The resistance of the wire is, R=20 Ω

The voltage of the battery is, V=12-Volt

The electric is, I in ampere.

When all physical parameters and temperature are constant,

Ohm's law claims that the voltage across a conductor is directly proportional to the current flowing through it.

This current-voltage connection may be expressed mathematically as,

The Equation of Ohm's Law;

[tex]\rm V=IR \\\\ I = \frac{V}{R} \\\\ I = \frac{12}{20} \\\\ I=0.6 \ A[/tex]

Hence the current flowing through the wire will be 0.6 A.

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What is the speed of a 10.0 Hz wave with a wavelength of 2.5 m?

Answers

Electromagnetic (EM) frequency = f Hz
Wavelength = λ m
f = c / λ, c = f λ:
[tex]hz = {s}^{ - 1} \\ c = 10.0 \: {s}^{ - 1} \times 2.5 \: m = 25 \: \frac{m}{s} [/tex]

A source charge of 3 µC generates an electric field of 2.86 × 105 N/C at the location of a test charge. Using k = 8.99 × 109N.m^2/c^2, what is the distance, to the

Answers

Variables:

Source charge, Q = 3 micro C = 3 * 10^ - 6 C

E = electric field = 2.86 * 10 ^5 N/C

K = 8.99 * 10^9 N * m^2 / C

d = distance = ?

Formula:

E = K * Q / (d^2) => d^2 = K * Q / E

=> d^2 = 8.99 * 10^9 N * m^2 / C * 3 * 10^ -6 C / (2.86 * 10^ 5 N/C)

d^2 = 9.43 * 10 ^ -2  m^2

=> d = 3.07 * 10^-1 m

Answer: 0.307 m

Note: it is a long distance due to the Electric field is very low

0.31 for E2020 users

An object goes from a speed of 9 m/s to a total stop in 3s what is the object acceleration

Answers

since
acceleration = change in speed / total time
then
acceleratiom = (0m/s - 9 m/s ) / 3s
therefore
acceleration = -3m/s^2

Convert 3.8 Km/sec to miles/year

Answers

3.8=7.446e+7
Hope this helped 
Pl ease give brainliest
Final answer:

To convert 3.8 km/sec to miles/year, multiply by the conversion factors: 3600 km/hour and 0.621 miles/km.

Explanation:

To convert 3.8 km/sec to miles/year, we need to first convert km/sec to km/hour, and then convert km/hour to miles/year.

1 km/sec is equal to 3600 km/hour (since there are 3600 seconds in an hour). So, 3.8 km/sec is equal to 3.8 x 3600 = 13,680 km/hour.

Now, to convert km/hour to miles/year, we can use the conversion factor of 0.621 miles/km. Therefore, 13,680 km/hour can be converted to miles/year by multiplying it by the conversion factor:

13,680 km/hour x 0.621 miles/km = 8,498.68 miles/year.

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The amount of energy a person uses at rest is known as the

Answers

Basal metabolic rate (BMR)
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