beta decay: increased atomic number

from Quasimodo
0.2 0.4 0.6 0.8 Plausible Typical Remarkable Salient

Related concepts

Parents process
Weight: 0.59
, decay
Weight: 0.57
, neutron
Weight: 0.48
, neutrino
Weight: 0.40
Siblings alpha decay
Weight: 0.34
, hydrolysis
Weight: 0.33
, fermentation
Weight: 0.33
, phagocytosis
Weight: 0.33
, oxidation
Weight: 0.32

Related properties

Property Similarity
increased atomic number 1.00
vary in atomic mass 0.87
increased number 0.83
be slowed down in nuclear reactor 0.80
be used in nuclear fission 0.79
be produced in nuclear reactor 0.79
be used in nuclear reactions 0.78
be effective for nuclear reactions 0.77
ideal particles for nuclear fission 0.77
use for nuclear bombardment 0.76

Priors about this statement

Cues

0.2 0.4 0.6 0.8 Joint Necessity Sufficiency Implication Entailment Contradiction Entropy

Evidence

0.2 0.4 0.6 0.8 Plausible Typical Remarkable Salient

Clauses

Plausibility inference from child typicality

0.54
Rule weight: 0.66
Evidence weight: 0.93
Similarity weight: 0.87
Evidence: 0.79
Plausible(neutron, vary in atomic mass)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)
0.51
Rule weight: 0.66
Evidence weight: 0.95
Similarity weight: 0.80
Evidence: 0.85
Plausible(neutron, be slowed down in nuclear reactor)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)
0.48
Rule weight: 0.66
Evidence weight: 0.92
Similarity weight: 0.79
Evidence: 0.76
Plausible(neutron, be produced in nuclear reactor)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)
0.48
Rule weight: 0.66
Evidence weight: 0.94
Similarity weight: 0.77
Evidence: 0.83
Plausible(neutron, ideal particles for nuclear fission)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)
0.40
Rule weight: 0.66
Evidence weight: 0.77
Similarity weight: 0.77
Evidence: 0.29
Plausible(neutron, be effective for nuclear reactions)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)
0.38
Rule weight: 0.66
Evidence weight: 0.73
Similarity weight: 0.78
Evidence: 0.18
Plausible(neutron, be used in nuclear reactions)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)

Plausibility inheritance from parent to child

0.06
Rule weight: 0.09
Evidence weight: 0.84
Similarity weight: 0.78
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.18
¬ Plausible(neutron, be used in nuclear reactions)
0.05
Rule weight: 0.09
Evidence weight: 0.74
Similarity weight: 0.77
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.29
¬ Plausible(neutron, be effective for nuclear reactions)
0.02
Rule weight: 0.09
Evidence weight: 0.29
Similarity weight: 0.87
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.79
¬ Plausible(neutron, vary in atomic mass)
0.02
Rule weight: 0.09
Evidence weight: 0.32
Similarity weight: 0.79
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.76
¬ Plausible(neutron, be produced in nuclear reactor)
0.02
Rule weight: 0.09
Evidence weight: 0.26
Similarity weight: 0.77
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.83
¬ Plausible(neutron, ideal particles for nuclear fission)
0.02
Rule weight: 0.09
Evidence weight: 0.24
Similarity weight: 0.80
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.85
¬ Plausible(neutron, be slowed down in nuclear reactor)

Remarkability exclusitivity betweem a parent and a child

0.45
Rule weight: 0.58
Evidence weight: 0.90
Similarity weight: 0.87
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.84
¬ Remarkable(neutron, vary in atomic mass)
0.45
Rule weight: 0.58
Evidence weight: 0.96
Similarity weight: 0.80
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.29
¬ Remarkable(neutron, be slowed down in nuclear reactor)
0.44
Rule weight: 0.58
Evidence weight: 0.97
Similarity weight: 0.79
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.29
¬ Remarkable(neutron, be produced in nuclear reactor)
0.43
Rule weight: 0.58
Evidence weight: 0.97
Similarity weight: 0.77
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.26
¬ Remarkable(neutron, ideal particles for nuclear fission)
0.42
Rule weight: 0.58
Evidence weight: 0.95
Similarity weight: 0.77
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.43
¬ Remarkable(neutron, be effective for nuclear reactions)
0.41
Rule weight: 0.58
Evidence weight: 0.90
Similarity weight: 0.78
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.82
¬ Remarkable(neutron, be used in nuclear reactions)

Remarkability from parent implausibility

0.36
Rule weight: 0.42
Evidence weight: 0.98
Similarity weight: 0.87
Evidence: 0.79
Plausible(neutron, vary in atomic mass)
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.11
¬ Plausible(beta decay, increased atomic number)
0.33
Rule weight: 0.42
Evidence weight: 0.99
Similarity weight: 0.80
Evidence: 0.85
Plausible(neutron, be slowed down in nuclear reactor)
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.11
¬ Plausible(beta decay, increased atomic number)
0.32
Rule weight: 0.42
Evidence weight: 0.98
Similarity weight: 0.79
Evidence: 0.76
Plausible(neutron, be produced in nuclear reactor)
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.11
¬ Plausible(beta decay, increased atomic number)
0.32
Rule weight: 0.42
Evidence weight: 0.98
Similarity weight: 0.77
Evidence: 0.83
Plausible(neutron, ideal particles for nuclear fission)
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.11
¬ Plausible(beta decay, increased atomic number)
0.30
Rule weight: 0.42
Evidence weight: 0.93
Similarity weight: 0.77
Evidence: 0.29
Plausible(neutron, be effective for nuclear reactions)
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.11
¬ Plausible(beta decay, increased atomic number)
0.30
Rule weight: 0.42
Evidence weight: 0.92
Similarity weight: 0.78
Evidence: 0.18
Plausible(neutron, be used in nuclear reactions)
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.11
¬ Plausible(beta decay, increased atomic number)

Salient implies Plausible

0.25
Rule weight: 0.28
Evidence weight: 0.90
Similarity weight: 1.00
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.12
¬ Salient(beta decay, increased atomic number)

Similarity expansion

0.49
Rule weight: 0.85
Evidence weight: 0.70
Similarity weight: 0.83
Evidence: 0.12
Salient(beta decay, increased atomic number)
Evidence: 0.34
¬ Salient(beta decay, increased number)
0.48
Rule weight: 0.85
Evidence weight: 0.67
Similarity weight: 0.83
Evidence: 0.12
Remarkable(beta decay, increased atomic number)
Evidence: 0.37
¬ Remarkable(beta decay, increased number)
0.47
Rule weight: 0.85
Evidence weight: 0.67
Similarity weight: 0.83
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.49
¬ Typical(beta decay, increased number)
0.46
Rule weight: 0.85
Evidence weight: 0.65
Similarity weight: 0.83
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.39
¬ Plausible(beta decay, increased number)

Typical and Remarkable implies Salient

0.13
Rule weight: 0.14
Evidence weight: 0.97
Similarity weight: 1.00
Evidence: 0.12
Salient(beta decay, increased atomic number)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)

Typical implies Plausible

0.34
Rule weight: 0.48
Evidence weight: 0.71
Similarity weight: 1.00
Evidence: 0.11
Plausible(beta decay, increased atomic number)
Evidence: 0.33
¬ Typical(beta decay, increased atomic number)

Typicality and Rermarkability incompatibility between a parent and a child

0.44
Rule weight: 0.51
Evidence weight: 0.98
Similarity weight: 0.87
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.19
¬ Typical(neutron, vary in atomic mass)
0.40
Rule weight: 0.51
Evidence weight: 0.99
Similarity weight: 0.78
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.07
¬ Typical(neutron, be used in nuclear reactions)
0.38
Rule weight: 0.51
Evidence weight: 0.93
Similarity weight: 0.80
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.57
¬ Typical(neutron, be slowed down in nuclear reactor)
0.38
Rule weight: 0.51
Evidence weight: 0.95
Similarity weight: 0.79
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.46
¬ Typical(neutron, be produced in nuclear reactor)
0.38
Rule weight: 0.51
Evidence weight: 0.96
Similarity weight: 0.77
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.33
¬ Typical(neutron, be effective for nuclear reactions)
0.36
Rule weight: 0.51
Evidence weight: 0.93
Similarity weight: 0.77
Evidence: 0.12
¬ Remarkable(beta decay, increased atomic number)
Evidence: 0.57
¬ Typical(neutron, ideal particles for nuclear fission)

Typicality inheritance from parent to child

0.37
Rule weight: 0.48
Evidence weight: 0.87
Similarity weight: 0.87
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.19
¬ Typical(neutron, vary in atomic mass)
0.36
Rule weight: 0.48
Evidence weight: 0.96
Similarity weight: 0.78
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.07
¬ Typical(neutron, be used in nuclear reactions)
0.29
Rule weight: 0.48
Evidence weight: 0.78
Similarity weight: 0.77
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.33
¬ Typical(neutron, be effective for nuclear reactions)
0.27
Rule weight: 0.48
Evidence weight: 0.69
Similarity weight: 0.79
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.46
¬ Typical(neutron, be produced in nuclear reactor)
0.24
Rule weight: 0.48
Evidence weight: 0.61
Similarity weight: 0.80
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.57
¬ Typical(neutron, be slowed down in nuclear reactor)
0.23
Rule weight: 0.48
Evidence weight: 0.62
Similarity weight: 0.77
Evidence: 0.33
Typical(beta decay, increased atomic number)
Evidence: 0.57
¬ Typical(neutron, ideal particles for nuclear fission)