3.4 Food as Fuel Flashcards

1
Q

Carbon- Hydrogen bonds hold a large amount of

A

Potential Energy

Ex. Glucose and gasoline

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2
Q

The farther away an
electron is from the
nucleus of an atom the
MORE

A

POTENTIAL ENERGY
it has

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3
Q

Energy is RELEASED as

A

Electrons move closer to the nucleus

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4
Q

Energy is ABSORBED as

A

Electrons mover further from the nucleus

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5
Q

The size of the nucleus affects the

A

Potential energy of the electron

Big nucleus = strong attraction to electrons

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6
Q

Oxidation occurs when an atom or molecule
LOSES ELECTRONS to another atom

A

an atom or molecule
LOSES ELECTRONS to another atom

b/c O2is very electronegative, it is an ideal electron acceptor in cellular respiration

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7
Q

Reduction occurs when

A

an atom or molecule
GAINS ELECTRONS from another atom

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8
Q

Oxidizing Agent

A

Atom or molecule that gains e-

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9
Q

Reducing Agent

A

Atom or molecule that loses e-

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10
Q

Redox rxns often involve
the mvmt of e- associated
with H and O atoms

A

Removal of H from, or the
addition of O to, a molecule
or atom is also called
oxidation

Addition of H to, or removal
of O from, a molecule or
atom is called reduction

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11
Q

Rapid combustion is disastrous for

A

Living organisms

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12
Q

Reactions within the body
need to be

A

controlled

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13
Q

The body can STORE
ENERGY at each step and

A

increase the efficiency of
the reaction

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14
Q

Most important Redox rxns occur when glucose
is oxidized by

A

by O2 to form CO2 and H2O

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15
Q

Oxidation of food molecules uses enzymes

A

called dehydrogenases

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16
Q

Dehydrogenasesfacilitate the transfer of

A

high-energy electrons from
food to molecules that act as energy carries

17
Q

NAD+

A

Nicotinamide Adenine Dinucleotide (NAD+)

18
Q

Which molecule is a

Common energy carrier molecule

Positively charged coenzyme

A

Nicotinamide Adenine Dinucleotide (NAD+)

19
Q

During cellular respiration, dehydrogenases
remove 2 H atoms from the substrate, transferring the 2 high-energy electrons and only
1 of the protons (H+) to NAD+, the other H+ is released into the cytosol

A

NAD+ is reduced to NADH, which can be used to power ATP synthesis

20
Q

Reduction of NAD+

A

NAD+ + 2 e- + H+ —–> NADH