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Exam Details

AIPMT 2000

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Questions 187
Duration 180 mins
Package NEET - Previous Year Papers

Paper pattern & analysis

Filter this paper by subject, topic or subtopic. Every graph updates from the selected questions.

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Showing all 187 questions in this paper.

Subject distribution

Biology
91 Qs
Chemistry
49 Qs
Physics
47 Qs

Topic distribution

Botany
53 Qs
Zoology
38 Qs
Mechanics
23 Qs
Physical Chemistry
22 Qs
Organic Chemistry
16 Qs
Modern Physics
11 Qs
Inorganic Chemistry
11 Qs
Electricity
9 Qs
Optics
4 Qs

Subtopic distribution

Atoms And Nuclei
6 Qs
Hydrocarbons
6 Qs
Molecular Basis Of Inheritance
6 Qs
Animal Kingdom
6 Qs
Evolution
6 Qs
Biomolecules
5 Qs
Principles Of Inheritance And Variation
5 Qs
Digestion And Absorption
4 Qs
Current Electricity
4 Qs
Geometrical Optics
4 Qs
Chemical Bonding And Molecular Structure
4 Qs
Aldehydes Ketones And Carboxylic Acids
4 Qs

Difficulty distribution

Not classified 187 100%

Question type distribution

Multiple Choices 187 100%

Syllabus

Full Syllabus

Sample questions from this paper

Questions are selected across the paper subjects wherever the paper contains that variety.

1
2000 · Physics · Mechanics · Waves
AIPMT 2000
Two stationary sources each emitting waves of wavelength \(\lambda\), an observer moves from one source to another with velovcity u. Then number of beats heard by him
A
\({{2u} \over \lambda }\)
B
\({u \over \lambda }\)
C
\(\sqrt {u\lambda }\)
D
\({u \over {2\lambda }}\)
2
2000 · Chemistry · Physical Chemistry · Gaseous State
AIPMT 2000
Which of the following expressions correctly represents the relationship between the average molar kinetic energy, KE, of CO and N2 molecules at the same temperature ?
A
KECO = KEN2
B
KECO > KEN2
C
KECO < KEN2
D
cannot be predicted unless volumes of the gases are given
3
2000 · Biology · Botany · Transport In Plants
AIPMT 2000
The movement of ions against the concentration gradient will be
A
active transport
B
osmosis
C
diffusion
D
all of the above.
4
2000 · Physics · Modern Physics · Atoms And Nuclei
AIPMT 2000
The relation between \(\lambda\) and T1/2 as (T1/2 \(\to\) half life)
A
T1/2 = \({{\ln 2} \over \lambda }\)
B
T1/2 ln2 = \(\lambda\)
C
T1/2 = \({1 \over \lambda }\)
D
(\(\lambda\) + T1/2) = ln2
5
2000 · Chemistry · Physical Chemistry · Solid State
AIPMT 2000
Cation and anion combines in a crystal to form following type of compound
A
ionic
B
metallic
C
covalent
D
dipole-dipole.
6
2000 · Biology · Botany · Mineral Nutrition
AIPMT 2000
Mg is a component of
A
chlorophyll
B
cytochrome
C
haemoglobin
D
haemocyanin